Tag: UC ANR

  • From Sharqia to Rome to Fresno: Renowned Irrigation Expert Comes to UC ANR

    In the fields around the Egyptian city of Minya Al-Qamh, “port of wheat” in Arabic, a boy rubbed his eyes wearily as he helped his father irrigate their crops at 2 a.m. – when they could access the scarce water that reached their farm, located at the tail end of the canal. The family, which had been farming the land around the village of Sharqia for many generations, barely had enough water to sustain their wheat and vegetables.

    Swatting in the darkness at the incessantly biting mosquitoes, a young Atef Swelam made a vow.

    “I said: ‘I will do my best to not let anyone suffer like I have suffered, like my father suffered – I will help to improve the lives of others,’” recalled Swelam, who went on to become an irrigation engineer improving water-use efficiency.

    During the World Food Forum (Oct. 16-20), Swelam was recognized by the United Nations’ Food and Agriculture Organization as a “Water and Food Hero” for developing irrigation techniques that save water and boost yields across the Nile Delta and beyond.

    Swelam started on Aug. 10 as director of both the KearneyAgricultural Research and Extension Center in Parlier and the West Side REC in Five Points. Both facilities are part of a network of centersoperated by University of California Agriculture and Natural Resources.

    Swelam was recently recognized by the United Nations’ Food and Agriculture Organization as a “Water and Food Hero.”

    “Our organization, and more importantly the communities we serve in the Central Valley and across California, are so fortunate that Atef has joined our team,” said Brent Hales, UC ANR associate vice president for research and Cooperative Extension. “He brings not only a record of truly impactful research and innovation but a genuine passion for learning the needs of people, working with them and developing collaborative, science-based solutions.”

    Making a difference in the lives of people

    After earning his master’s degree in land and water management from the Mediterranean Agronomic Institute of Bari in Italy, Swelam returned to Egypt for his Ph.D. in agricultural engineering at Zagazig University. There, he advanced to become a professor of irrigation and drainage engineering in 2019; he was also a senior scientist and research team leader with the International Center for Agricultural Research in the Dry Areas (CGIAR-ICARDA). Most recently, Swelam was the agricultural research officer of the U.N.-FAO’s Office of Innovation in Rome.

    Swelam explained that the mandate, function, mission and vision of UC ANR’s research and extension network – and its strong reputation for making an impact through co-creation with clientele – attracted him to this position in California.

    “I’m always looking to make a difference on the ground and in the lives of people,” he said. “If you look at the locations where all RECs are located, they are inside the communities themselves, and in the heart of the farming system.”

    Swelam conducted his research in the fields around his hometown of Sharqia in Egypt.

    Swinging between Kearney and West Side RECs, Swelam said he feels he works in an empowering environment, created and supported by the leadership as well as by the staff at both centers – “a dynamic is which hard to find elsewhere.”

    Darren Haver, recently named director of the statewide system of RECs, said he will work with Swelam to explore ways to secure the resources that the Kearney and West Side teams need.

    “Atef brings a wealth of experience in conducting research as well as working to elevate and amplify the research and outreach of others,” said Haver, formerly the director of South Coast REC in Irvine. “He clearly is committed to making a difference locally, nationally and globally and we are excited to support him as his vision for these two RECs evolves.”

    Being a farmer and a scientist, Swelam feels he is on the same wavelength with both of the RECs’ clientele groups – researchers and growers. In his first months on the job, Swelam said he will get to know the needs of the grower community and the researchers at the RECs.

    “What I like most about this job is that the REC system, with its research for development approach, supports the scientists, who are in turn supporting the farmers and communities that are on the front line in achieving food and nutrition security,” he explained.

    When tailoring solutions to meet local conditions, Swelam added that it’s essential that community members are involved so they feel a sense of ownership and are committed to sustaining its impact beyond the time limits of a research or extension project.

    This cost-effective machine enables farmers to grow crops on raised beds that improve water use efficiency.

    Innovative irrigation technique used worldwide

    A prominent example of Swelam’s community-based work is his long-term mechanized raised-bed (MRB) irrigation program, the technology for which he has garnered numerous international honors.

    While he was a researcher at the CGIAR-ICARDA, Swelam led several projects between 2010 and 2020 to study new soil and water practices at farm level. Through a project at his home village, he developed a cost-effective, small-scale machine to enable growing wheat on raised beds. This was in contrast to flat flooded land – the traditional, labor- and resource-intensive method that produced irrigation inefficiencies and caused shortages for downstream farmers like his father, Haj Ibrahim.

    With MRB, precisely placed trenches between the raised beds would hold exactly the amount of water the adjacent crops need and thus leave more water for all. And while the technique seemed promising, Swelam had to convince skeptical farmers to adopt the practices – including his neighbors and his own father.

    “He was very resistant to me in the beginning, because this was the first time ever in Egypt using raised beds for wheat cultivation…he even tried to convince people not to follow me,” Swelam said, with a chuckle.

    Haj Ibrahim (left), Swelam’s father, was initially resistant to the new raised-bed technique.

    So father and son divided their fields, with one half planted and irrigated using traditional methods, and the other using the raised-bed approach. Gradually, as MRB began to prove its worth, Haj Ibrahim warmed to the technology and became an active collaborator on the research – even helping the scientist when he was puzzled by experiment results.

    “My father was my mobile library,” Swelam said. “He was illiterate – he had never been in a school – but his thinking and knowledge about the real agriculture and farming system were much better than those of a professor like me!”

    After the initial research trials produced successes in his village and the larger governorate (a political division within Egypt), the technique was replicated in other governorates across the country – which then attracted the attention of other nations and international organizations.

    Overall, Swelam said, the technology helped the growers reduce applied water by 25% and cut farming costs by 25%, while boosting fertilizer use efficiency by 30% and increasing yield by 25%.

    Today, MRB is applied by more than 2 million farmers in the Middle East and North Africa to a variety of crops and is recognized as a good agricultural practice by the U.N. Food and Agriculture Organization.

    “The biggest recognition and reward for me out of this impactful innovation is seeing the smiles on the faces of farmers,” Swelam said.

    Spreading best practices across San Joaquin Valley and beyond

    Swelam said he hopes to see similarly positive results for farmers here in California with a wide range of innovations. He and other researchers at Kearney and West Side RECs will continue to make sure that the science and knowledge generated at the centers reach farmers. He added that partnering with local growers to optimize their on-farm practices is crucial on a host of issues, from pest management to water conservation.

    After participating in the research and seeing the success of the trials, Haj Ibrahim became an avid supporter of the technology. Here, Ibrahim (in gray robe and white cap) meets with scientists and project leaders from across Africa to share how farmers have benefited from mechanized raised-bed irrigation.

    “Whatever we do to improve supply management at system level, if the water is not used efficiently at farm level, then we lose everything we had achieved at that macro level,” he explained.

    Swelam added that investing intensive time and effort in developing practical, cost-effective solutions will pay off in the long run as they become naturally adopted across the grower community.

    “Farmers are very clever and skilled with their farming systems,” he said. “When they see or get benefits from something, they promote it among themselves.”

    Swelam’s father was one example. After leading the resistance against mechanized raised beds initially, he eventually became its most vocal proponent.

    “He became the biggest promoter for this technology; he even promoted it on local and international TV and radio programs,” Swelam said. “I was proud of my father.”

    Haj Ibrahim died in 2017 and Swelam continues to pay tribute to his father through his life’s work on research and extension – inspired by their long struggles to bring water to their crops, and the shared triumph of their new techniques. — By Mike Hsu, UCANR

  • Farmers Save Money, Water by Adopting Climate-Smart Ag Practices

    A Hmong small-scale farmer in Merced County has saved about 14.4 acre-inches of water annually and reduced greenhouse gas emissions by 12.406 MTCO2e per year (equivalent to the greenhouse gas emissions produced from burning 1,396 gallons of gasoline) after upgrading her farm. Rosie Lee – who sells Asian greens, green beans, corn, strawberries and other produce at her farm stand and to Asian markets – is one of hundreds of growers benefiting from California Department of Food and Agriculture incentives and funds with the assistance of Climate Smart Agriculture community education specialists.

    “She is one grower who would not have access to those funds without my bringing my computer out to the field,” said Caddie Bergren, a Climate Smart Agriculture community education specialist who has been working with growers in Merced County since the program’s launch.

    To make it easier for farmers to adopt new practices, CDFA and UC Agriculture and Natural Resources partnered to create the Climate Smart Agriculture program.

    Drip irrigation has saved Lee about 14.4 acre-inches of water annually.

    “Since 2019, UC ANR’s Climate Smart Agriculture Team has provided in-depth technical assistance to more than 1,300 farmers and ranchers in 24 counties,” said Hope Zabronsky, academic coordinator for UC ANR’s Climate Smart Agriculture team. “Through their strong relationships with diverse farming communities, they support the implementation of soil health, water efficiency, and manure management practices that optimize climate benefits for all growers and Californians.”

    The program’s community educators work with farmers and ranchers in 24 California counties to get CDFA-funded grants and implement Climate Smart Agriculture projects. These efforts, which emphasize outreach to underserved farmers and ranchers, have resulted in a total of $36.5 million invested from the State Water Efficiency and Enhancement Program or SWEEP, the Healthy Soils Program, and the Alternative Manure Management Program.

    “Agriculture is an important part of the climate solution,” said CDFA Secretary Karen Ross. “This funding enables CDFA and UC ANR to partner with farmers and ranchers to scale up climate-smart agricultural practices. This is essential as we contend with our hotter, drier future.”

    Lee, the Hmong grower, had been growing 18 acres of vegetables by flood irrigating with groundwater. To save water and reduce pumping costs, she asked Bergren to help her apply for SWEEP funds to convert to drip irrigation and install solar panels. Bergren brought her laptop to the field to help Lee pull together the necessary information for the application. After Lee received funds for the project, Bergren assisted her with the technical logistics of installing the irrigation and solar equipment.

    “I called vendors and we were able to complete the project on time,” Bergren said.

    Through the Climate Smart Agriculture program, Lee, shown holding a soil moisture sensor, received help to apply for grants and complete the energy and water-saving project.

    CDFA and UC ANR have published an impact report highlighting the results of the multi-year partnership focused on increasing adoption of climate-smart agriculture practices to reduce water and energy use.

    The investments have funded more than 420 projects, so far. The projects are expected to save an estimated 8.3 billion gallons of water during their lifetime, enough to supply over 75,000 typical homes in California with water for a year. Additionally, there are projected reductions of more than 355,000 metric tons of carbon dioxide-equivalent, as much as would be achieved by removing 79,110 gas-powered vehicles from roads.

    The report highlights the importance of providing tailored outreach, education and technical assistance to small-scale, non-English speaking, and otherwise underserved farmers and ranchers. — By Pam Kan-Rice and Josh Staab

    To find the full details of the report, please visit https://ucanr.edu/climatesmartag2023.

    UC Agriculture and Natural Resources brings the power of UC to all 58 California counties. Through research and Cooperative Extension in agriculture, natural resources, nutrition, economic and youth development, our mission is to improve the lives of all Californians. Learn more at ucanr.edu and support our work at donate.ucanr.edu.

  • UC Awards Brodt $2M to Advance Soil Health, Climate-Smart Farming Practices

    To accelerate adoption of climate-smart farming practices, the University of California Office of the President has awarded nearly $2 million to a team of UC Cooperative Extension scientists and community partners working on a network of farm demonstration sites. The project will be led by Sonja Brodt, coordinator for agriculture and environment at the UC Sustainable Agriculture Research & Education Program. This UC Agriculture and Natural Resources project is one of 38 funded with $83.1 million allocated to UC by the State of California for climate action research and innovation.

    Scaling up soil health and other climate-smart agricultural practices to sequester carbon, increase water and nutrient use efficiency, and improve the resilience of farms to climate-related threats like drought and floods is a core pillar identified in California’s Natural and Working Lands Climate Smart Strategy.

    Climate-smart agriculture is a systems-based approach that requires localized adaptation across the diverse soils, cropping systems, socioeconomic and cultural contexts throughout California.

    Sonja Brodt

    “Our project will strengthen the nascent California Farm Demonstration Network for on-the-ground, regionally specific demonstration of a range of climate-smart practices,” said Brodt. “Regional farms will demonstrate practices such as cover cropping, reduced tillage, compost and mulch use, hedgerow planting, irrigation system optimization and more.”

    The $1,999,524 project will pilot a participatory partnership extension model that allows farmers to learn from their peers to reduce adoption risks and adapt knowledge to an ever-changing environment, increasing the likelihood of farmer success and accelerating long-term uptake of complex, place-specific practices.

    Building on the capacity of local trusted organizations, project collaborators will be organized in a hub-and-spoke network with three regional Farm Demonstration Hubs (Sacramento Valley, North Coast and Central Coast), a pilot Hmong/Mien Demonstration Hub, and a statewide Organic Demonstration Hub.

    Collaborators at each hub will be responsible for identifying and nurturing farm demonstration sites, and conducting demonstration trials and farmer-to-farmer outreach activities. Centralized organization and capacity building will be provided by UC SAREP, UC Organic Agriculture Institute, the California Association of Resource Conservation Districts, the Community Alliance with Family Farmers, and the California Farm Demonstration Network Advisory Panel.

    In addition to several UC Cooperative Extension advisors and specialists across the state, partners include the UC Hansen Research and Extension Center and the Rodale Institute California Organic Center, both in Ventura County, and the UC Climate Smart Agriculture Program. Eight Resource Conservation Districts will also be involved in leading Farm Demonstration Hubs.

    Hope Zabronsky of the UC Climate Smart Agriculture Program shows the importance of soil structure at a cover cropping workshop.

    The project will also conduct soil health assessment activities to inform soil health and resilience monitoring protocols in future research and extension efforts. Since many existing soil health metrics were designed for agroecosystems in the Midwest and Eastern U.S., this project aims to lay the groundwork for research to adapt soil health metrics to the arid and Mediterranean climates of California.

    “By utilizing relationships built between demonstration hub managers and demonstration farms across different cropping systems, we will gather quantitative and qualitative soil health data, information about growers’ management practices as well as their own perspectives of what they really need to know about their soils in order to better manage for climate resilience and mitigation,” said Brodt.

    Ultimately, the project partners aim to establish an enduring on-farm extension and research system that will help thousands of farmers adopt climate-smart practices tailored to their farms.

    Three other projects involving UC ANR researchers received California Climate Action Seed Grants and Matching Grants subawards:

    • Development of a hydrogel that can work as a soil amendment to help small-scale vegetable farms conserve water led by UC San Diego associate professor Shengqiang Cai with Ruth Dahlquist-Willard, UC Cooperative Extension small farms advisor and interim director of UC SAREP; Mallika Nocco, UC Cooperative Extension specialist; and Matthew Gilbert, UC Davis professor of whole plant physiology. $297,979
    • Development of a tool for predicting climate-water variation led by UC Irvine professor Isabella Velicogna with Tapan Pathak, UC Cooperative Extension specialist. $199,531
    • A study of urban stream corridors led by UC Davis professor Gregory Pasternack with Igor Lacan, UC Cooperative Extension environmental horticulture and urban forestry advisor. $33,824

    UC Agriculture and Natural Resources brings the power of UC to all 58 California counties. Through research and Cooperative Extension in agriculture, natural resources, nutrition, economic and youth development, our mission is to improve the lives of all Californians. Learn more at ucanr.edu.

  • Managing Toxic Plants in Grazing Fields

    Some plants thrive even in dry years, while others need wet years to really blossom. It’s no surprise, then, that this year the University of California Cooperative Extension (UCCE) Fresno office has received several inquiries about potentially toxic plants and how to deal with them. Even if these species have always been present in the seed bank or on neighboring land, this year was a good year for toxic plants to grow large where previously they grew very small – or didn’t grow at all.

    Common plants that can cause livestock poisoning include annuals such as cockleburs, hairy fleabane, and yellow starthistle, and perennials like curly dock, larkspurs, and milkweeds. Annuals especially tend to respond vigorously to available soil moisture as they need to germinate a new generation each year from seed. Depending on how rapidly these plants develop roots, they may be able to produce a second generation (or more) even in the summer season. Populations of toxic plants may expand this year due to the good growing conditions.

    Prevention

    Maintaining healthy, diverse stands of forage to compete with toxic plants and to provide ample non-toxic options is the best prevention of plant poisonings in livestock. Grazing moderately is an important practice to maintain a healthy, diverse community of forage plants. Grazing too heavily can reduce desired species and allow toxic plants to become more common. Many toxic plants are not palatable, so they are avoided when other, desirable forage is available. However, animals may not be able to avoid harmful plants if a pasture is dominated by them. In those cases, it may be best to remove animals from that pasture and/or provide them with an alternate feed source until the toxic plant is reduced.

    When managing fields for hay production, minimizing the population of toxic plants is critical. Animals can’t be selective around different plant parts in hay bales or flakes, and many toxic plants are harmful even in very small quantities.

    Risk and monitoring

    At this time in the summer, many common toxic plants in California are highly visible in contrast to dry, golden annual grasses. Monitoring could be as simple as driving or walking along fencelines and especially checking high-impact areas such as corrals, holding pens, water troughs, and mineral licks. Riparian areas are also important monitoring areas, such as the banks of creeks and streams. These can be key host sites for toxic plants, and animals like to spend time in those cooler areas during the summer. Animal exposure to toxic plants may be higher when the annual forages have dried up and lush green plants may be enticing.

    When monitoring key areas on your property, take photos and/or samples of unfamiliar plants. You can send pictures or bring samples to your local UCCE office (find yours here) for assistance in identifying the plants and any necessary management strategies. If you bring a sample, please be sure to bag the whole plant, including the roots if possible. If you take pictures, try to have a photo that shows the full plant, as well close-ups of the leaf shape, flowers or fruits/seeds, and any other unique features such as spines or hairs.

    Figure 2. Some examples of the photos that are helpful to successfully ID a plant: a picture of the whole plant, and close-ups of the leaves and flowers. This example is Asclepias cordifolia, heart-leaf or purple milkweed, photographed in eastern Fresno County.

    You can also use the online weed ID tool at the Weed RIC website to narrow down possible plants yourself. Be sure to change the Search Location to California!

    Management resources

    To learn more about plants that are toxic to livestock, you can download the UC ANR publication, Livestock-poisoning Plants of California, for free by clicking HERE. This resource includes useful photos of common harmful plants as well as detailed information about the health impacts of different plants on cattle, sheep, goats, and horses.

    Once you have a confirmed plant ID, you can find out what management practices can control the species you have. Weed reports from the UC ANR publication Weed Control in Natural Areas in the Western United States are one of the best resources that describe all possible control methods, and how well they can work. You can download specific weed reports here or purchase the full book from your local UCCE office, or online here.

    If you have livestock with signs of plant toxicity, contact your veterinarian for support. If livestock have died, you can contact the CAHFS lab nearest you to get an estimate for a necropsy or other toxicology tests. — By Rebecca Ozeran, UCCE Livestock & Natural Resources Advisor

  • Over 25 Farming Robots to be Featured at FIRA USA 2023 this Fall in Salinas

    Weeding, harvesting, picking, carrying,… Robots are today’s answer to many challenges facing agriculture. And they will show up this fall in Salinas for the second edition of FIRA USA. From September 19 to 21, the Salinas Sports Complex, home of the famous California Rodeo Salinas, will be the place to discover the autonomous farming solutions in action. During three days, expo, demos, pitch sessions and even a robot parade will take place in the Salad Bowl of the World. Please note that the traveling event through California FIRA USA not only focuses on vegetables: trees and vineyards are also at the heart of the environmental and labor issues that agriculture must address… just like FIRA USA!  For this reason, Malcolm Media is partnering with FIRA-USA, and California Ag Network, California Fruit & Vegetable, Pacific Nut Producer, and American Vineyard Magazines are among the proud sponsors of this special event, so be sure to come see us there.

    25+ robots for farming autonomously

    FIRA’s organizers, French association GOFAR, Western Growers and University of California ANR/The VINE announce that already 25 robots have signed up for FIRA USA 2023.

    “Even if FIRA USA 2022 in Fresno was already a success, this year marks a real turn: four months before the event, we already confirmed 25 robots – and it’s just the beginning!”notes Maialen Cazenave, co-director in charge of the partnerships at GOFAR. “Coming from California, other states in the US, and even from Europe, we expect another 10 to 20 robots to partner with us – and we have space to welcome them both on the exhibition area and on the demo zones (on vegetables, fruits, orchards, and vineyards)”.

    From weed control to fruits picking, robots main functions at FIRA USA

    Here is the list of the 25 robots from the companies that already confirmed their participation in FIRA USA 2023:

    • ●  Bluewhite (USA – California): Bluewhite’s Pathfinder transforms any brand of existing orchard or vineyard tractor into a fully autonomous fleet, capable of executing multiple tasks, such as spraying, herbicide, discing, mowing, or harvesting, with high precision and operating efficiency.
    • ●  Naïo Technologies (France and USA – California): Oz, Ted, Orio and Jo: light electric and autonomous ag. robots to offer a sustainable alternative to the use of herbicides that can interface with smart implements to offer a high precision weeding, seeding, mowing and a very precise guidance of the implements.
    • ●  Carbon Robotics (USA – California): high-precision LaserWeederTM leverages sophisticated AI deep learning technology, computer vision, robotics, and lasers.
    • ●  Stout Industrials (USA – California): the Stout Smart Cultivator is a software-defined, tractor-drawn implement that uses machine vision and artificial intelligence to cultivate and weed fields using mechanical blades.
    • ●  Agtonomy (USA): A fully electric, reference tractor that executes labor-intensive field missions such as mowing, spraying, transport, and weeding, in the toughest terrain.
    • ●  Ecorobotix (Switzerland): ARA is a high-precision sprayer developed by Ecorobotix, which enables the ultra-targeted application of herbicides, fungicides, insecticides or fertilizers, reducing the use of them up to 95%.
    • ●  Solinftec (Brazil): scouting robot that scans the crops and record their growth rates, plant health the prevalence of any weeds, suited for farms around 500 acres and works with several types of row crops including corn, soybeans, cotton, wheat, canola and many others.
    • ●  Nexus Robotics (Canada): weeding and scouting robot that provides farmers with real-time information about the size and health of their crops.
    • ●  Verdant Robotics (USA – California): multi-action, autonomous farm robot capable of millimeter-accurate spraying, laser weeding, and AI-based digital crop modeling.
    • ●  GUSS Automation (USA – California): GUSS autonomous sprayers provide a solution to labor challenges while increasing efficiency, precision and safety in orchards, vineyards, and high-density orchards.
    • ●  SeedSpider (USA – California): the WeedSpider can be configured to efficiently and accurately mechanically weed, mechanically thin, or precision spray commercial vegetable crops.
    • ●  Farm-ng (USA – California): Amiga is a modular, all-electric micro-tractor that can turn-in-place, haul, lift, carry tools, cultivate, and is easy to adapt to any farm’s cropping systems and cultural practices.
    • ●  Monarch Tractor (USA – California): fully electric, driver-optimal, smart Tractor platform built to empower farmers by enabling profitable implementation of sustainable and organic practices.●  Mantis Ag Technologies (USA – California): from thinners to sprayers and cultivators, the line of products turns intelligence, automation and data into smart, practical solutions for growers.●  Burro (USA – California): Burros use computer vision, high precision GPS, and AI to follow people to navigate autonomously from A to B while carrying various payloads.●  Robotics Plus (New Zealand): modular platform, designed to accommodate swappable attachments for spraying – mowing, trimming and weed control under development.

      ●  Aigen (USA – Washington) : robotics platform powered by the sun, directly. Like a plant! We aim for affordability and scale, while others aim for high profit margins. We start with the farmer first, and build our platform from there.

      ●  EDETE (Israel): end-to-end artificial pollination service comprising 2 steps that mimics the natural pollination process: 1. collecting and 2. distributing pollen.

      ●  K.U.L.T. (Germany): agricultural machines for soil cultivation and weeding solutions for vegetable production, field crops, ornamental production, herbs, grassland, vineyards, orchards,

      ●  Sabanto (USA – Iowa): aftermarket autonomy system installed on tractors.

      The US largest in-field demo zone for robots

      FIRA USA will host the largest demo zone of farming robots.

      Managed by Triangle Farms, Pacific Ag Rentals and the University of California, the crops will be available for the robots to show their functions on vegetables, fruits, orchards and vineyards.

      To exhibit and/or make a robot demos, manufacturers can contact Maialen Cazenave:

      fira.usa@fira-agtech.com

      Registrations to FIRA USA 2023 are open, please visit: www.fira-usa.com

      About GOFAR

      The GOFAR non-profit organization undertakes to promote and develop the agricultural robotics sector at international level. Like RobAgri, whose objective is to facilitate the technical development of agricultural robots, GOFAR meets the increasing need for visibility and networking of the agricultural robotics sector.

      About Western Growers

      Founded in 1926, Western Growers represents local and regional family farmers growing fresh produce in Arizona, California, Colorado and New Mexico. Our members and their workers provide over half the nation’s fresh fruits, vegetables and tree nuts, including nearly half of America’s fresh organic produce. Some members also farm throughout the U.S. and in other countries so people have year-round access to nutritious food. For generations, we have provided variety and healthy choices to consumers.

      About The Vine, UC ANR

      The VINE, an initiative of University of California, Agriculture and Natural Resources, is California’s agriculture, food, and biotech innovation network. Our mission is to harness the power of open innovation to help industries and entrepreneurs grow and scale globally while catalyzing technology innovation and commercialization for productive, sustainable, and equitable food systems.

      We connect entrepreneurs to a vast network of public and private sector resources, build collaborations that accelerate technology solutions to solve industry challenges, and grow regional capacity to support global innovation as an economic opportunity.

  • Quinn-Davidson to Lead UC ANR Fire Network, Help Farmers Prepare

    Lenya Quinn-Davidson has been named director of the University of California Agriculture and Natural Resources’ Fire Network, effective April 1. UC ANR’s statewide Fire Network will build connections and capacity among UC ANR scientists, practitioners, land management and regulatory agencies, policymakers and communities to work toward fire resilience in California.

    Wildfire has become more frequent and intense in California with climate change. To meet the challenge of wildfire, UC ANR has hired several new UC Cooperative Extension fire advisors and staff to study issues related to wildfire and to assist Californians with their preparations. Quinn-Davidson and the Fire Network will provide critical coordination and connection across geographies and disciplines ranging from forestry to food safety to livestock to water.

    “Lenya has more than a decade of work in fire science and has carried out her work through partnerships and community engagement,” said Glenda Humiston, UC vice president of agriculture and natural resources. “Her experience and successful track record will enhance how we coordinate our many layers of research and education related to fire prevention, recovery, public policy and workforce development.”

    Quinn-Davidson has served as a UC Cooperative Extension fire advisor for the North Coast since 2016. During her three-year term as the Fire Network director, she will continue her research program and continue to build capacity among landowners, tribes and other communities to use prescribed fire throughout the state. Quinn-Davidson also leads the national/international WTREX program, focused on empowering women and other underrepresented people who work in fire.

    “I’m honored to take on this new role, and I can’t wait to further grow, connect and support our fire efforts within UC ANR,” Quinn-Davidson said.

    “There are currently dozens of UC ANR people working on fire issues throughout California, including four new UC Cooperative Extension fire advisors and a new academic coordinator who were hired in the last year,” Quinn-Davidson said. “We also have plans to hire more fire advisors and fire-focused staff in the coming year. This network of UC ANR fire leaders will be able to provide more resources, training and research to help Californians better live with fire.”

    UC ANR’s Fire Network will also enhance communication.

    “The network will increase the flow of information to improve how we conduct academic research, strengthen local efforts by sharing relevant data and ideas, create and build capacity for different management techniques and tools, and facilitate new research and programming related to diverse facets of fire in California,” said Deanne Meyer, UC ANR interim associate vice president.

    Before becoming a UCCE fire advisor, Quinn-Davidson worked on fire projects for five years as a UCCE staff research associate. Since 2009, she has served as director of the Northern California Prescribed Fire Council. Prior to joining UC Cooperative Extension, she was a research assistant in the Wildland Fire Laboratory at California State Polytechnic University, Humboldt and worked on stream restoration for Bioengineering Associates, Inc.

    She earned a master’s degree in social science, environment & community from Cal Poly Humboldt and a bachelor’s degree in conservation and resource studies from UC Berkeley.

    Quinn-Davidson, who has published more than 70 peer-reviewed and popular articles, will be based at the UC Cooperative Extension office in Humboldt County. Follow her on Twitter @lenyaqd.

    UC Agriculture and Natural Resources brings the power of UC to all 58 California counties. Through research and Cooperative Extension in agriculture, natural resources, nutrition, economic and youth development, our mission is to improve the lives of all Californians. Learn more at ucanr.edu and support our work at donate.ucanr.edu.

  • San Joaquin Valley Farm and Food Project Awarded $16 Million in Federal Funds

    Local food marketing, business and market support for small-scale farmers and food producers, new agricultural products and technology development are parts of a University of California Agriculture and Natural Resources project designed to boost jobs and farm resiliency in the San Joaquin Valley.

    The Fresno-Merced Future of Food Innovation Coalition, or F3, received a $65.1 million grant from the U.S. Department of Commerce’s $1 billion Build Back Better Regional Challenge. Of that award, about $16 million is designated for the Local Farm and Food Innovation initiative led by UC ANR. With the addition of matching share of cost contributions, the total budget for UC ANR’s project is over $20.5 million.

    “As a key part of the broader F3 project, this Local Farm and Food Innovation initiative is going to be transformative,” said Glenda Humiston, University of California vice president for agriculture and natural resources. “By strengthening the parts of the food system to better support each other and drive innovation across the region, it’s going to deliver many environmental and economic benefits to Californians.”

    Gabriel Youtsey is chief innovation officer for The VINE, a UC ANR initiative that helps new technology make it to market and businesses get off the ground by connecting entrepreneurs with mentors and resources, and aligning university and startup technology development with industry needs.

    “The Local Farm and Food Innovation initiative is a win for inclusive innovation in agriculture in the San Joaquin Valley and a critical part of the F3 project,” said Youtsey. “It provides a broad set of training and support resources and expertise to help farms, food producers and vendors of all sizes to grow their businesses profitably and sustainably, in alignment with the economic goals of the region.”

    To ensure technology solutions address the needs of small-scale farmers, food business owners and local communities, they will be invited to participate in directing the innovation activities, Youtsey said.

    “With our deep roots in the San Joaquin Valley, UC Cooperative Extension is uniquely positioned to draw expertise from other parts of UC and expand its efforts in helping farmers and food entrepreneurs realize enduring prosperity and community resilience,” Humiston said. “UC ANR experts are already helping immigrants and other underserved communities adapt to climate change, add flexibility to supply chains and grow grassroots innovations. We are excited the federal government is investing in making food systems more equitable and profitable, and the solutions more scalable.”

    To assist small-scale farmers in complying with new regulations and production challenges, adapting to climate change and finding new markets for their produce, UC ANR is convening the Small Farms Technology and Innovation Alliance. They are collaborating with the Community Alliance with Family Farmers and other nonprofit organizations to provide translation services, training and marketing assistance to farmers and food producers.

    Ruth Dahlquist-Willard, UC Cooperative Extension small farms advisor for Fresno and Tulare counties, and Houston Wilson, UC Organic Agriculture Institute director and UC Cooperative Extension tree crops entomology specialist based at UC Kearney Agricultural Research and Extension Center in Parlier, are leading outreach and engagement with small-scale and organic farmers.

    “While we certainly need to create new tools to address the unique challenges of organic agriculture, it is critical that farmers and other end-users be involved from start to finish,” said Wilson. “The development of appropriate technology requires communication across a wide range of stakeholders.”

    To make new technology more accessible for small farmers and food producers, UC ANR will create a new team to test and demonstrate technology that is developed as part of F3 and by startups around the world. To promote adoption, the team will create a tool lending library so farmers can borrow and try out equipment and get training to use it.

    “This project will expand on current efforts to support small-scale farmers with access to equipment, new markets and technical support,” said Dahlquist-Willard. “Our team is committed to meaningful engagement of farmers and San Joaquin Valley communities in the development of new tools and resources for the benefit of the region.”

    For local food entrepreneurs and vendors, UC ANR will launch the Cultiva La Salud Kitchen and Food Academy and the Saint Rest Food Entrepreneurship Program, which will provide a kitchen, equipment and training. These will create new jobs and, over time, provide a marketplace to sell those products. The Local Food Marketing Assistance Program will promote purchases of locally grown produce and food products.

    The Fresno-Merced project was one of 21 projects funded of the 529 proposed for the Build Back Better Regional Challenge intended to uplift underserved communities.

    UC Agriculture and Natural Resources brings the power of UC to all 58 California counties. Through research and Cooperative Extension in agriculture, natural resources, nutrition, economic and youth development, our mission is to improve the lives of all Californians. Learn more at ucanr.edu and support our work at donate.ucanr.edu.

  • UCCE Vegetable Crop Guru Burt Hoyle Passes

    Burton John Hoyle passed away in McKinleyville on Nov. 9, 2020, just weeks from reaching his 101st birthday.

    Burton (Burt) was born in Saranac Lake, NY, in 1919. He grew up in the Jamestown, New York, area. He graduated from high school in 1938 and spent several years pursuing odd jobs before starting college in 1941. He did not serve in WWII because of a childhood injury. In 1944, he graduated from the University of New Hampshire with a degree in horticulture.

    There was a war going on and jobs were scarce, so Burt applied to graduate schools. The University of California, Davis, wrote that classes were closed, but they did have a job opening in vegetable crops. After Burt got to Davis, classes soon resumed with the end of the war, and he graduated in 1946 with an M.S. in vegetable crops. That same year he also married True Dolson.

    As 1946 drew to a close, Burt took a job with the University of California Cooperative Extension system to pioneer the Agricultural Experimental Field Station in Tulelake, now known as the Intermountain Research and Extension Center (IREC). From 1947-1965 Burt’s research and work shaped many of the crops still grown in the Tulelake Basin today including potatoes, barley, peppermint and strawberries, according to a letter Rob Wilson, current Intermountain REC director, wrote to Burt for his 100th birthday.

    However, Burt’s big winner was the introduction of horseradish as a cash crop. In 1983, he was featured in an NBC nationally broadcast news show as the “Godfather of Horseradish.”

    Hoyle and wife True at Intermountain REC in 1947.

    In 1965, Burt relocated to Fresno where he worked as a vegetable crops specialist at the University of California’s West Side Station in Five Points. Two major publications from his many projects were A Guide to Commercial Vegetable Production (1970), Curley Top Identification Handbook (1977) [Curly top is a plant disease]. His work on “aggresizing” [a process for making the soil optimum for successful seed growth], for which he received a patent, led to widespread recognition in the agricultural research community.

    Burt and True were active in the First Presbyterian Church in Fresno. One of the ways they lived out their faith was by opening their home to many foreign students. Over a period of more than 10 years, they hosted a number of Chinese, African and Middle Eastern students. Their involvement with these students was a ministry as they helped them with practical matters, and also spent hours counseling them about their lives.

    Burt retired from UC ANR in 1983 and he and True relocated to Humboldt County. During the 1980s Burt enjoyed Rotary, his friends and taking pictures of beautiful Humboldt scenery. He traveled up and down the coast shooting pictures; then with his scanner and Adobe Photoshop, Burt explored the creative expressions of the visual, displaying some of his photos at local art shows. He and True were very involved with the Arcata Presbyterian Church and participated in many community activities. Burt and True also engaged in developing housing on land in Arcata, which True had inherited from her family.

    True Dolson Hoyle passed away in 2005, and Burt married MaryAlice Comstock in 2006. MaryAlice preceded Burt in death on Sept. 16, 2020. She was 91 years old.

    Burt was blessed by health, mental clarity and mobility throughout his life. He was known for his brilliant thinking and ever-present curiosity. During his final years, he was working on a book on statistical thinking and re-analyzing data from his field crop experiments he had collected more than 50 years ago. Even in his last days, his caretakers commented on his intellectual curiosity, his smile and sense of humor.

    He is survived by his three children, Joe and Glenn Hoyle and Pamela Lund, three grandchildren, Julie McGuffey, Karin Ballstadt and Dennis Hoyle, and 10 great-grandchildren.

    His three children remember the significant impact Burt had on their lives, but more importantly his love and concern for them, their families, and for the large number of people whom Burt influenced. — By Glenn C. Hoyle

    To read more about Hoyle’s work at IREC, see this 1964 California Agriculture article //ucanr.edu/sites/anrstaff/files/340045.pdf.

  • UCCE Tulare County Dried Plum Program Assists Efforts for Detection of Invasive Beetle

    Following a tip generated by citizen scientists in the Porterville/Tulare area, UC ANR researchers have installed traps to determine the potential for Velvet longhorned beetle, Trichoferus campestris (Coleoptera: Cerambycidae), introduction to the southern San Joaquin Valley. The beetle, also called Mulberry longhorn beetle, is native to Asia and Russia, but now has an extended geographic range across Europe and North America.  The pest is currently established in 4 counties in Utah, with cherries and peaches serving as hosts.

    The Velvet longhorned beetle is not a serious pest in Asia and has only had a low impact on European timber and orchard production.  The insect pest is of concern due to its potential to impact fruit yield and decrease tree longevity. It has been repeatedly intercepted at ports of entry in California; however, it is not known to be established in the state.  Because the pest has a wide host range, affecting over 40 genera of broadleaf and coniferous plants, and is tolerant of dry conditions, researchers and regulators have initiated monitoring efforts for the pest.  Locally, traps have been installed in dried plum and fresh prune orchards in Tulare County.

    The Velvet longhorned beetle may serve as a pest of forests and orchards, and it has been moved internationally on wood packing material and in furniture and home décor. The adult beetle is large (around 1-2 cm), brown, has long antennae, and is nocturnal. Its peak mating activity is in June/July in Utah.  Black Intercept Panel Traps were established in Tulare County in June and will be removed prior to prune harvest in September. — By Elizabeth Fichtner & Houston Wilson, UC Cooperative Extension

  • Houston Wilson Named Presidential Director for the Clif Bar Endowed Organic Agriculture Institute

    Houston Wilson has been named the Presidential Director for the University of California’s Organic Agriculture Institute, which was established in January 2020 with a $500,000 endowment by Clif Bar and a matching $500,000 endowment from UC President Janet Napolitano.

    Wilson, a UC Riverside agricultural entomologist based at the Kearney Agricultural Research and Extension Center, joined UC ANR as assistant Cooperative Extension specialist in 2017. He will launch the institute and chart a path for future growth while also focusing on immediate priorities such as a survey of organic production in California, multiple outreach and training opportunities for growers, publication of organic production guidelines, and developing research programs. Wilson’s long-term goal is to continue to grow the endowment and position the organization to successfully support the state’s growing organic farming economy.

    “Organic growers in California face an array of interconnected agronomic, economic and regulatory challenges,” said Wilson. “Tackling these issues simultaneously requires a multidisciplinary approach to develop solutions that work in all scales of production. The economic opportunities are there, and we want to help position California growers to reap these benefits, and in doing so increase the supply of affordable organic food for consumers.”

    Since 2007, Wilson has conducted research and extension in orchard and vineyard systems with a focus on integrated pest management strategies, many of which are readily applicable to organic agriculture. Key studies have included evaluating the use of mating disruption to control navel orangeworm in fig production, cover crops to increase biological control of vineyard leafhoppers, pheromone lures to improve monitoring of leaffooted bug in almonds, and more.

    “We are excited about Houston’s vision for establishing and growing California’s first organic institute,” said Glenda Humiston, UC vice president for agriculture and natural resources (UC ANR). “Continued research advancements will be critical to the future of organic farming in our state as well as the health of our environment.”

    “Clif Bar is thrilled to see Houston’s appointment. We’ve heard from orchardists in our supply chain who have worked with him in the past and are excited that he’ll have more resources to help serve the needs of organic producers,” said Matthew Dillon, senior director of agriculture for Clif Bar. “We look forward to working with Houston, UC ANR, and the organic agriculture community to continue to improve the sustainability and economic resiliency of California farmers.”

    Wilson earned his doctoral degree in environmental science, policy and management and also holds a bachelor’s degree in international area studies, both from UC Berkeley.

    About UC ANR

    UC Agriculture and Natural Resources brings the power of UC to all 58 California counties. Through research and Cooperative Extension in agriculture, natural resources, nutrition, economic and youth development, our mission is to improve the lives of all Californians. Learn more at ucanr.edu.

    About Clif Bar & Company

    Clif Bar & Company is a leading maker of nutritious and organic foods and drinks, including CLIF® Bar energy bar, LUNA®, The Whole Nutrition Bar for Women®; and CLIF Kid®, Nourishing Kids in Motion®. Focused on sports nutrition and snacks for adventure, the family and employee-owned company is committed to sustaining its people, brands, business, community and planet. For more information on Clif Bar & Company, please visit www.clifbar.com, check out our Facebook page at www.facebook.com/clifbar and follow us on Twitter at: www.twitter.com/clifbar.

    — By Pamela Kan-Rice, UC Cooperative Extension