Tag: UC Agriculture and Natural Resources

  • UC Explores Tea’s Potential as ‘Champion Crop’

    After 60 years of growing oranges, pistachios and grapes in Fresno County, Stan Ishii has seemingly seen it all.

    But growing tea in the sun-drenched Central Valley? Now that was something different.

    Curiosity inspired the farmer and his wife Karen to join about 100 other attendees at Tea Day on March 19 at the University of California Kearney Research and Extension Center in Parlier.

    “If they’re growing tea in this arid region, I was just wondering how that worked out,” said Ishii, who has been a regular green tea drinker since his youth. “I always assumed tea was grown in a more humid environment – like Southeast Asia and areas like that.”

    Every seat in the conference room was taken, as a diverse audience of growers, scientists, college and high school students and teachers, gardeners and other community members gathered to hear about the feasibility of tea production.

    Atef Swelam, director of Kearney REC and West Side REC (both operated by UC Agriculture and Natural Resources), acknowledged the brewing interest in tea in the San Joaquin Valley and across the state.

    “Tea could be one of the champion crops for the future of agriculture in California because it’s a high cash-value crop and a climate-resilient crop,” Swelam said. “We have found that tea is growing fantastically here under the Mediterranean climate of California.”

    He envisions tea as part of the solution for growers who must make more profit with less land under the Sustainable Groundwater Management Act. The landmark law will be implemented in 2040, and an estimated 1 million acres of farmland (mostly in the Central Valley) will be retired. Growing tea – especially premium teas – could help keep farms afloat.

    “According to some statistics in the literature, tea can produce revenue, on the same acreage, five times to 15 times that of traditional crops,” said Swelam. For almonds the difference is even greater; just five acres of tea could generate revenue equivalent to a 100-acre almond orchard.

    Tea Day attendees also heard about the immense market for tea, the second-most popular beverage in the world behind water.

    “In the U.S., about 160 million people drink tea – almost half of the population – so that means it has huge potential here,” Swelam said. “And yet it’s not grown domestically; the United States imports about $6 billion worth of tea annually.”

    Central Valley Conditions Well-Suited for Tea Cultivation?

    At Tea Day, attendees first heard from Parlier Mayor Alma Beltran and UC Davis Global Tea InstituteDirector Katharine Burnett. Then UC Davis researcher Jacquelyn Gervay-Hague introduced the history of tea at Kearney REC.

    In the 1960s, tea giant Lipton funded a research project overseen by UC Davis professor Karl Ingebretsen. He identified several cultivars that could thrive in the Central Valley environment.

    “There’s no question, from the varieties that were selected, that tea can grow quite well here in California,” said Gervay-Hague, professor emerita in the Department of Chemistry.

    The Lipton study ended in 1980, but tea research was rekindled in 2017 when Gervay-Hague planted clonal cuttings to study chemical changes in tea plants. By growing tea at Kearney with the latest technologies and techniques, she identified standout cultivars among 21 tested varieties. She also developed some best practices, which she shared with the Tea Day audience.

    Whereas scientists in the 1960s thought they needed to create humid conditions for tea plants by applying large quantities of water, Gervay-Hague said that tea can thrive just with drip irrigation. And, surprisingly, California’s consistently dry conditions are actually conducive to growing and harvesting tea.

    “In other parts of the world, too much rain can really destroy the tea plants; you also have to pick the tea at a time when leaves are not too damp,” Gervay-Hague explained. “So the fact that we live in a dry climate, we have plants that prosper here.”

    More proof can be found at Redwood Tea Estate, arguably the most successful commercial tea-growing operation in California. During an interview at his Stockton area tea farm, owner Patrick Sunbury said the arid conditions offer another advantage.

    “We don’t have to use fungicides because of the dry climate, which is a great boost for us –a lot of tea growers in other parts of the world have to use large amounts of fungicide,” said Sunbury, who added that the caffeine in tea also serves as a natural pest deterrent.

    Furthermore, the relentless sunshine and significant day-night temperature swings put beneficial “stress” on the tea, resulting in more distinctive aroma and flavor. That plant stress is why high-altitude environments across Asia produce some of the most prized teas in the world.

    Case Study of California Tea Suggests Profit Potential on Small Acreage

    The premium tea market is where Sunbury found his niche. A landscape architect by trade, Sunbury was diagnosed with a neurological condition that prevented him from working long hours on a computer. Instead, he sought a way to make a living by growing crops on a small half-acre plot of family land.

    He decided on tea – even though he never drank the beverage before becoming a tea grower. On Feb. 14, 2020, Sunbury planted his first plants, each only six to 12 inches tall, and strived to adhere to agroforestry practices incorporating native beneficial plants and insects that offset pest pressure.

    “The hard part is that there isn’t any guidance; if you want to plant grapes, you can go to a UC Cooperative Extension advisor and they can tell you which cultivars you want, how to arrange the field, what amendments to provide,” Sunbury said. “But this is something where there’s no infrastructure built up, and not really much of a knowledge base.”

    Through trial and error and close attention to his tea plants, Sunbury grew them to tabletop height and had his first harvests in 2024. He plucks only the young, tender tips – “two leaves and a bud” – every time they emerge, from first flush in April to the last in October.

    In the intervening years, Sunbury has identified the cultivars best suited for his specific terroir and established his own off-site processing facility where he can make white, green, oolong and black tea. The different types of tea – all from the same plant, Camillia sinensis – fall on a spectrum of oxidation, with green at zero percent oxidation, black tea at 100%, and white and oolong at percentages in between.

    Customers can sample that range of teas by becoming members of Sunbury’s tea club – similar to a wine club – through which he makes “a large proportion” of his sales (customers also can purchase tea directly from his website).

    “We are one of the few domestic tea farms to offer a club,” he said. “People on a quarterly basis will receive four 1-ounce bags of tea that we grow here on the farm. We meet other customers through festivals and events held throughout the year in California, such as the Terra Madre festival and San Francisco International Tea Festival.”

    As he continues to experiment with different cultivars and processing techniques, Sunbury is also expanding beyond his half-acre “mother plot” outside of Stockton. By the end of the year, he aims to have three more acres planted in the Lodi area. There, he will once again begin the cycle of adaptation and adjustment until those plants are established.

    “Tea can be a relatively finicky plant,” he suggested, when asked for advice to new tea growers. “Just go at it with a little bit of patience and perception; make sure that you are going to start on a smaller scale, and then expand gradually as you learn these lessons.”

    Demand for Tea Could Grow through Cultural, Generational Change

    On top of high initial setup costs, another challenge for making tea profitable at scale is the limited demand for high-end tea. While American coffee palates have become more sophisticated over the last few decades, mass market tastes in tea are still immature, according to Sunbury.

    “We’re still in the ‘Folger’s/Taster’s Choice/Yuban’ stage of tea drinking, where people are having very low-quality powderized teas,” he said, noting that all parts of a tea plant may be shredded and pulverized to fill those familiar tea bags. He added that using older leaves and harsh processing techniques are detrimental to flavor.

    Moving to premium looseleaf tea will be a major cultural shift. Back at Tea Day, Alex Ng – a lecturer in the College of Agriculture and Natural Resources of National Chung Hsing University in Taiwan – discussed the roots of tea culture and the evolution of the tea industry on the island. Ng said the domestic market in the U.S. would be well-served by deepening cultural appreciation for tea.

    “Tea brings people together; when you enjoy it, you always want to enjoy it with your friends and family,” Ng said. “In Taiwan, we believe that tea is more than a beverage – there is a lot of cultural significance in it: how do you incorporate tea into your social behavior, in your daily life? That’s very important.”

    A “certified tea artist,” Ng explained to Tea Day participants how to use all five senses to savor the drinking experience, and then the attendees sampled a variety of teas from Taiwan and California. One participant, Fresno City College student Eleni Deamant, appreciated both the flavor and health benefits of tea.

    Contemplating a career in nutrition, Deamant said she sees tea as the next stage of a broader generational shift in beverage preferences from sugary sodas to coffee and other alternatives.

    “I think tea is going to become popular in the new generation,” Deamant said. “Not only is bubble tea very popular, but now matcha has become trendy and absorbed into the younger generation’s vocabulary and tastes a little bit…and I hope to see white tea or oolong tea be more absorbed into the younger generation’s tea culture in the U.S.”

    Another Tea Day attendee, Sue Ruiz, said the health benefits of tea present a marketing opportunity to grow demand.

    “Didn’t they do that with the pomegranate and pistachios? Look how big those industries are – and it was coming from the health perspective,” Ruiz said. “So why can’t we do that with tea?”

    Labor a Potential Barrier to Growing Tea at Scale

    Tea Day participants also visited the greenhouse where potted tea plants are prepared for the field, as well as the quarter-acre plot where neat rows of 21 different cultivars are now well-established and ready for harvest. Ryan Puckett, Kearney REC staff research associate, showed the crowd a newly purchased handheld tea harvester, a hedge trimmer-like device that could save time for a grower.

    Intensive labor requirements represent a major cost in producing high-quality tea. In her experience, Gervay-Hague said the most time-consuming task is the harvest of the leaf, with a skilled worker taking an hour to collect a pound of prime leaf (which produces only a quarter pound of dry tea).

    “So you can just do the math and understand the economics,” she said. “That, to me, is one of the biggest challenges in terms of production of the tea plants.”

    Gervay-Hague sees the current lack of tea-production infrastructure in California to be an opportunity. Cutting-edge techniques can be applied to that relatively clean slate to make harvesting and processing as streamlined and profitable as possible.

    “We can start from scratch using technology from today,” she explained. “That’s what is going to be needed for us to really have a vibrant tea industry here.”

    Analyzing the costs and benefits of mechanization versus hand-picking will be key. Swelam said Anderson Safre, a UC Cooperative Extension specialist in agricultural technology and innovation at Kearney REC, will be studying how to incorporate the latest ag tech into tea production systems.

    In addition, Swelam said Ahmed Ayoub, a UCCE water resources advisor based at Kearney REC, will research the most efficient approaches to irrigation.

    Water requirements for tea production top research questions

    Water needs, of course, are a paramount concern in the Central Valley.

    “Because of our changing environmental conditions, we’re not getting the snow and rain like we used to,” said Ishii, the longtime grower.

    Ishii’s questions on irrigation requirements for tea were echoed by Sue Ruiz, a Fresno area resident who works on rural economic development issues. Ruiz said she was intrigued by the idea of tea as an “alternative crop” for Valley growers, especially small farmers.

    “We don’t have enough viable crops for them to grow that we know take less water,” Ruiz said. “And if they are priced out of this just because of water, then they can’t provide a life for themselves.”

    Ruiz was interested in how a blossoming tea industry could create jobs and other entrepreneurial opportunities.

    “Does it have the potential? It sounds like it does,” she said. “The bottom line is going to be the dollar – it’s going to be the dollar for the farmer, for the landowner, for the producer, and for the community people.”

    Just as Ruiz hopes the UC can provide economic analyses and practical insights on this new crop, Sunbury – the established grower – would like the university to focus more on tea research. Specifically, he is seeking insights on the chemical breakdown of California tea, as well as hardier cultivars that can withstand the state’s intense summer heat waves.

    “We had to do our own breeding program and testing to try to find cultivars that can survive our climate,” he said.

    Scientific and consumer interest tea continues to brew

    At Kearney REC, the 1,000 tea plants in the field and 3,000 in the greenhouses have done so well that Swelam is planning to plant another 1.5 acres with tea. He will work with UC ANR researchers to test a host of different variables to determine the optimal soil conditions, irrigation practices, disease and pest management strategies, and mechanization of tea cultivation.

    Ng, the visiting scholar from Taiwan, said he is heartened that the UC is turning its focus to tea.

    “The UC system has a lot of experience in developing different kinds of agricultural products like wine, beer and coffee,” he said. “It just makes a lot of sense to use their resources to develop tea to meet the market in the U.S.”

    In that vein, Gervay-Hague highlighted the pioneering work of Jean-Xavier Guinard, a UC Davis sensory scientist in the Department of Food Science and Technology. Guinard developed a vocabulary for the spectrum of flavors and aromas for wine and coffee, and his research team is now working on a “flavor wheel” for tea.

    Sunbury has already seen firsthand the fervent enthusiasm of tea connoisseurs. Many of his tea club subscribers also visit the farm, where Sunbury offers educational tours to members and the general public. Even without any advertising, he said there has been “high demand” for those programs.

    “There are people who are lifetime tea drinkers and tea’s a really passionate part of their life…and unless they’re able to spend thousands of dollars and get a translator to go to Asia, they have no way to connect with a tea farmer and with tea in general,” Sunbury said. “So having our tea farm here, we’re able to welcome guests for tours and show them how tea is grown and they can learn more about the product.”

    Story Contributed by UC Ag and Natural Resources

  • Fertilization and Irrigation Strategies Tutorial Planned for Strawberry Growers

    UC Ag and Natural Resources is planning a Pre-Plant Fertilization and Establishment Irrigation Strategies for Strawberry Production

    Growers will gather May 21 at Crisalida Berry Farms in Oxnard to go over insights on establishing strawberries with drip tape versus micro sprinklers, irrigation choices and their influence on crop development, practical approaching to improving water and nutrient use efficiency, how to visualize treatments effects on plots and discuss events. Fertilizer strategies like banded, broadcast and no fertilizer will also be discussed.

    Spanish translation will be provided, along with refreshments. Participants including certified crop adivsers will receive two continuing education units.

  • UC ANR: April Showers Bring Ruined Berries

    The Salinas Watsonville growing region was beset by significant amounts of rain recently, so it was time to go out and have a look. According to UC Ag and Natural Resources, the fruit is being thrown away instead of being put into clamshells and boxes for shipping.

    Much of the damage in the pictures below has to do with “water soaking”, meaning the riper fruit has pulled water into itself via osmotic pressure and the extra water coming in so quick has subsequently burst the epidermis.  A general rule of thumb is that most varieties of strawberry can take up to 1/2 inch of water before they manifest “water soaking” damage, so the berries around here which were subjected to 1 1/2 inches of water didn’t stand a chance.

  • UC Seeks Consumers to Weigh in on New Method of Controlling Asian Citrus Psyllids

    To understand consumers’ attitudes toward a bioengineered pesticide for citrus crops, University of California Agriculture and Natural Resources researchers are asking for volunteers to participate in focus groups in Riverside, Oakland and Fresno.

    Bacillus thuringiensis, or Bt, is a naturally occurring bacterium being tested to control the spread of Asian citrus psyllid, the small insect that transmits the disease huanglongbing to citrus trees. Both the Asian citrus psyllid and huanglongbing have been found in Southern California backyard citrus trees and threaten to spread throughout the state.

    Huanglongbing, also known as citrus greening disease, is a bacterial infection that stunts citrus trees, reduces their fruit production, deforms and greens the fruit and eventually kills the tree. There is no known cure or effective control.

    The disease has already devastated Florida’s citrus industry, slashing the state’s orange production by 92% between 2005 and 2025, according to Karen Jetter, associate director and project economist at the UC ANR Policy Institute. By the time the magnitude of the problem was revealed, both Asian citrus psyllid, or ACP, and huanglongbing were widespread in Florida.

    “In California, we still have the opportunity to slow the spread of huanglongbing through ACP management,” Jetter said.  “This unique technology is designed to be part of a comprehensive ACP management program, not to replace it.”

    Jetter and Fiona Ogunkoya, survey researcher at the UC ANR Policy Institute, are conducting focus groups to assess consumer attitudes toward an engineered Bt pest control method that targets Asian citrus psyllids, the primary vector of the disease, to stop the spread of huanglongbing.

    The bioengineered pest control strategy, developed in Florida and shown to be effective, uses an engineered citrus tristeza virus to transmit an engineered Bacillus thuringiensis to citrus trees. The Asian citrus psyllid lays eggs on the tender new leaf growth of the trees. After the nymphs hatch, the immature insects consume the modified Bt-infected leaves, become sick and die.

    California citrus growers surveyed by Sandipa Gautam, UC Cooperative Extension integrated pest management citrus advisor, said they are interested in the approach. But they growers are concerned that consumers will not accept fruit grown with this new bioengineered insecticide.

    To find out what consumers think, the researchers will meet with three focus groups, with each session limited to six to eight people to allow all participants time to express their thoughts.

    The 90-minute focus group meetings will be held at UC Cooperative Extension offices in Riverside on March 30 at 6 p.m., in Oakland on April 6 at 2 p.m. and in Fresno on April 8 at 2 p.m. Pizza will be served.

    To participate in a focus group, register for a session at https://forms.gle/QPyUd7QazTLfNdATA. To be eligible, participants must be 18 years of age or older and able to attend the focus group in person. — By UC Agriculture and Natural Resources

  • Spider Mite Management Methods

    Spider mites can be a difficult pest for date growers, especially with how high up in the trees the fruit is. However, new methods of spider mite management are being studied at UC Riverside, including the use of predatory mites. Entomology specialist Bodil Cass spoke with Matthew Malcolm from Malcolm Media Ag Publishing at the World Ag Expo to discuss their findings. Watch this quick video and read more in California Fruit & Vegetable Magazine.

    Please thank this video’s sponsor Simplot for their industry support.

  • UC ANR Offers Microirrigation School

    In a time of increasing water scarcity and regulatory complexity, enhancing irrigation efficiency and improving on-farm water management practices are critical for California agriculture. Microirrigation – using highly efficient, low-flow and low-pressure systems that deliver water and nutrients close to plants’ roots – is one key solution.

    “Microirrigation is no longer optional in many agricultural production regions worldwide,” said Daniele Zaccaria, professor of agricultural water management for Cooperative Extension at University of California, Davis. “It is essential for producing more food per unit of water and for achieving higher fertilizer use efficiency, relying on greater application precision and pursuing improved environmental stewardship.”

    Zaccaria is organizing the 2026 Advanced School on Microirrigation for Crop Production, offered in California for the first time, from March 30 to April 3 (register by March 25).

    This comprehensive program combines three days of classroom instruction at UC Davis with two days of field visits, including fruit and nut production systems in the San Joaquin Valley and vegetable, berry and wine-grape systems along the Central Coast. There is also an online option for the first three days of the program.

    The school is designed for a broad audience, including farmers and ranch managers, crop consultants, water resource planners and irrigation practitioners, as well as scientists, educators, students, and personnel from a variety of agencies and sectors.

    “This offers a unique, hands-on opportunity to learn directly from global leaders in the field, combining cutting-edge science, real-world applications and field experience,” Zaccaria said. “It’s an excellent investment of time for anyone committed to the future of crop production in semi-arid and arid environments.”

    The educational event is co‑organized by the UC Davis College of Agricultural and Environmental Sciences, UC Agriculture and Natural Resources, the Chilean Water Technology Consortium and the California Irrigation Institute.

    Lectures – presented by prominent experts from UC Davis, UC Cooperative Extension and other academic, agency and private partners – will draw on the latest research, technologies and practical applications.

    Topics include:

    • Technical aspects of water delivery systems to allow for successful adoption and management of microirrigation systems
    • Soil-water movement and soil-plant-water relations with microirrigation
    • Microirrigation systems design, operation, maintenance, automation and performance evaluation
    • Methods and tools for microirrigation scheduling
    • Managing microirrigation for different crops (field and agronomic crops, vegetable crops, berry crops, fruit crops, nut crops, vineyards)
    • Chemigation and fertigation
    • Salinity management with microirrigation

    All participants will receive:

    • A UC Certificate of Completion
    • A copy of the book Microirrigation for Crop Production, recently published by Elsevier
    • Continuing Education Units (18.5 CEUs for lectures and 9.5 CEUs for field visits) from the American Society of Agronomy, as well as CEU credits from the Irrigation Association

    Register soon to secure your spot, as class size is limited to 100 participants to ensure an optimal learning environment.

    For the full program schedule, speaker lineup and a link to register, visit https://caii.org/international-micro-irrigation-school/.

    Registration for the online option is at: https://caii.org/product/micro-irrigation-school-lectures-remote-streaming-registration/.

    Zaccaria’s work in organizing the Microirrigation School is made possible by his Alexander and Elizabeth Swantz Endowed Specialist Position and related funds from the UC Davis College of Agricultural and Environmental Sciences.

    UC Agriculture and Natural Resources brings UC information and practices 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.

  • Ventura County Stands Out as Climate ‘Hot Spot’

    UC experts shared data, tips and tools for Ventura County growers to prepare for exceptional rates of warming in the region

    Ventura County is an agricultural hub renowned for premium produce, like strawberries and avocados. But, based on recent climate data, this coastal region is earning a new, unwelcome reputation.

    “Ventura County turns out to be one of the fastest warming counties in the entire United States,” said Daniel Swain, a climate scientist with University of California Agriculture and Natural Resources.

    Swain recently shared this news during a public workshop on climate change and agriculture hosted by UC ANR in Camarillo. His presentation, available in person and online, featured maps to help the audience visualize how parts of the globe are heating up at uneven rates. Even against the backdrop of a warming North America, Ventura stands out.

    “This is the most up-to-date global warming map you could possibly get… and it’s even more red and orange than it was last year, meaning the warming, of course, is even greater,” Swain said.

    The causes of global climate change are well-established by scientists – human activity, like burning fossil fuels, has led to an accumulation of greenhouse gases that trap heat in Earth’s atmosphere.

    But explaining Ventura’s exceptional rate of warming is more complicated and likely involves a variety of factors that amplify the effects of climate change. According to Swain, one factor may be the county’s relatively recent urban development over the last fifty years, compared with its older, previously built-out neighbors, like Los Angeles and Santa Barbara counties.

    When natural vegetation gets replaced with concrete and pavement, the land loses its built-in cooling system and absorbs more heat, leaving cities especially vulnerable to bake with global temperatures rising. This phenomenon, known as the “urban heat island effect,” may be a growing problem in Ventura.

    Swain also points to recent warming of the Pacific Ocean as another influence on local weather. (Yes, climate change is likely behind that trend as well). Taken together, these variables help explain why all of Ventura’s warmest years have occurred in the last decade, compared with the county’s milder climate in the early 20th century.

    With all this talk of hotter weather, it might seem like Ventura and the rest of California, “will perpetually shrivel up like a raisin in the sun,” Swain said. But that’s not necessarily correct.

    Climate models predict average rainfall to stay roughly the same, but all get dumped out in a few big storms, rather than sprinkled over an entire rainy season. Californians are witnessing that prediction come true in extensive flooding events this winter.

    “The water is still going to be there, but we’re just going to have to learn to manage it in increasingly inconvenient and ill-timed bursts,” Swain said.

    Shifting Winds on Ventura’s Farms

    The trends Daniel Swain highlighted in global climate data have not gone unnoticed by Ventura’s farmers, a population working in especially close contact with the land.

    Following presentations from Swain and other UC scientists, the event assembled a panel of farmers experienced in growing avocados, lemons, strawberries, coffee, lettuce, nursery stock and cattle.

    The first question, posed by moderator Ben Faber, a UC Cooperative Extension advisor, asked the group to recount the most memorable natural disasters of their farming careers. Every grower had a story – they had weathered frosts, fires, floods, heat waves and wind storms.

    “Recently, we had a mudslide that just destroyed our irrigation system,” said Lisa Tate Soury, coffee, avocado and lemon grower and owner of Rancho Filoso, one of several farms run by her family in the Ventura area.

    Inspired by close-to-home climate disasters, her 12-year-old son, Tate Soury, delivered a written statement to the workshop audience listening, both in-person and online.

    “Damage isn’t happening once in a while anymore. It’s happening almost every year,” Soury said. “A few degrees hotter might not sound like much, but it really is… it slowly wears crops down over time.”

    Panelists shared tips for adapting to these new uncertainties, like investing in generators and satellite internet to keep systems running during power outages. Others touched on the silver linings of climatic shifts, like extended growing seasons. William Terry, a local grower, hasn’t faced a major frost in over a decade. That’s enabled him to grow crops like celery and cilantro over winter in historically colder pockets of the county.

    “We’re seeing success growing certain crops in areas that might have been riskier in my dad and grandfather’s time. From my own experience, that feels significant,” Terry said.

    UC Experts Offer Customized Climate Guidance

    Despite the disasters they’ve contended with, several panelists pointed to short term considerations about labor and economics as their top priorities, rather than long term problems related to climate change.

    Tapan Pathak, Cooperative Extension specialist in climate adaptation in agriculture at UC Merced, has heard that sentiment before and addressed growers’ concerns during a talk at the workshop. According to his research, climate change has documented economic consequences worth paying attention to, like increased pest pressure and heat-related damages.

    “How can we better integrate climate and weather information so that it’s more useful to growers?” Pathak asked. Based on focus groups he’s conducted, farmers have answered. “There is a clear need for crop-specific information rather than generic averages.”

    To meet that need, Pathak developed a free decision-making website called CalAgroClimate, which puts weather forecasts into a context farmers can use statewide. By filling in details about their location and crops, farmers receive tailored information about heat, frost, crop phenology, pests and agroclimate indicators to guide their business.

    A later presentation unveiled two online irrigation planning tools tailor made for Ventura County farmers. UC advisors Ben Faber and Andre Biscaro teamed up with IGIS program coordinator Andy Lyons to build programs that pull data from local weather stations to give growers individualized watering schedules. Following the app’s guidance will improve water use and plant health – valuable results as dry seasons drag on for longer.

    “We don’t want to put on more water than the crop needs… we want to apply just the right amount,” Faber said.

    One of the calculators serves avocado growers, while the other was designed for celery, strawberries, cabbage, broccoli and cauliflower.

    In addition to online tools, Ventura County farmers also have access to UC experts who can personally help them adopt new practices and obtain relief funding after a crisis. That includes UC Cooperative Extension advisor Lilian Thaoxaochay, who covers disaster resiliency, planning and policy. She introduced herself, provided an overview of support programs available to farmers and opened the door for future one-on-one conversations.

    “Part of my position is to walk through these resources with you,” Thoaxaochay said. “You don’t have to do these things alone.”

    Other speakers at the workshop included personnel from the Ventura County Agricultural Commission, Farm Bureau of Ventura County and the Farm Service Agency of the U.S. Department of Agriculture. Recordings of the presentations can be found on the Ventura UC Cooperative Extension’s YouTube channel. — By UC Ag & Natural Resources

  • UCCE Hosting Rice Production Workshop

    UC Cooperative Extension is offering a workshop covering the principles and practices of rice production in California. The workshop, which will take place on March 18-19 from 8:30 a.m. to 3:30 p.m. at Lundberg Family Farms in Richvale., will include rice growth and land formation, weed management, pest identification, water management, crop diseases and more.

    Registration is $200 per person and includes lunch for both days. The deadline is March 15. Those interested in participating can register here.

    March 18

    8:30 Registration

    9:00 Rice Growth and Development — Bruce Linquist, UC Davis

    10:00 Land Formation— Sarah Marsh Janish, UCCE

    10:20 Break

    10:35 Varieties — Dustin Harrell, Rice Experiment Station

    11:35 Planting and Stand Establishment — Michelle Leinfelder-Miles, UCCE

    12:00 Lunch

    12:45 Water Management — Bruce Linquist, UC Davis, Whitney Brim-DeForest, UCCE

    1:45 Fertility— Bruce Linquist, UC Davis

    2:15 Questions Roundtable

    3:15 Adjourn

    March 19

    March 19

    8:30 Registration

    9:00 Weeds — Kassim Al-Khatib, UC Davis, Michelle Leinfelder-Miles, UCCE, Whitney Brim-DeForest, UCCE

    10:30 Break

    10:45 Arthropods — Ian Grettenberger, UC Davis

    11:45 Vertebrates— Ian Grettenberger, UC Davis

    12:00 Lunch

    12:45 Diseases — Luis Espino, UCCE

    1:45 Pest Identification Session

    2:45 Questions Roundtable

    3:15 Adjourn

    By UC Agricultural and Natural Resources

  • Using Predators to Counter Asian Citrus Psyllids

    The Asian citrus psyllid is an active threat for growers and the main vector for Huanglongbing disease. These invasive insects have wreaked havoc in Florida and spread to Southern California, but researchers at UC Riverside are finding ways to counter them. Matthew Malcolm from Malcolm Media Ag Publishing interviewed Bodil Cass at the World Ag Expo to discuss the use of predators against psyllids. Watch this quick video and read more in California Fruit & Vegetable Magazine.

    Please thank this video’s sponsor Simplot for their industry support.

  • UCCE Hosting South Sacramento Valley Prune Meeting

    UC Ag and Natural Resources will host its annual South Sacramento Valley Prune Metting in Yuba City. The event is an opportunity for prune growers to learn the latest updates in prune orchard systems and grower regulation updates. Growers will also be able to learn about disease management and Johnson grass management in tree crops, as well as how to control sunburn in crops and more.

    The event counts for 2.5 continuing education credits. Registration for the Prune Meeting begins at 8 a.m. at Yuba City Veterans Hall and it run until 12:30 p.m., followed by a hosted lunch. Pre-registration can be found HERE.

    Schedule:

    8:00 AM Registration & Coffee and Refreshments

    8:15 AM California Prune Board Update

    Donn Zea, Executive Director, Prune Board of California

    Kiaran Locy, Director of Brand and Industry Communications, Prune Board of California

    8:30 AM New developments in prune orchard systems

    • New prune rootstock trial plans and goals

    Jaime Ott, UCCE Orchard Systems Advisor; Tehama, Glenn, and Butte Counties

    • High density prune orchards

    Charles Brannon, Director of Agronomy, Agromillora CA

    • New prune rootstocks and new orchard opportunities

    Chuck Fleck, Director of Horticulture Research, Sierra Gold Nurseries

    9:30 AM What can growers learn from Dormex® rest breaking trials in prune?

    Franz Niederholzer, UCCE Orchards Advisor, Colusa/Sutter/Yuba Counties

    10:00 AM Break

    10:15 AM Prune grower regulatory update.

    Sean Nelson, Sutter Co Ag Comm Office; Matt Bozzo, Yuba Co Ag Comm Office

    10:45 AM Disease management in prune

    Jim Adaskaveg, Professor, Department of Plant Pathology, UC Riverside

    11:30 AM Developments in Johnson grass management in tree crops

    Ryan Hill, UCCE Agronomy and Weeds Advisor; Tehama, Shasta, and Glenn Counties

    12:00 PM A first look at sunburn control in prunes.

    Franz Niederholzer, UCCE Orchards Advisor, Colusa/Sutter/Yuba Counties

    12:30 PM Hosted lunch

    By UC Ag and Natural Resources