Category: Vegetable Industry

  • Mann Packing’s New Facility in Gonzales, CA to Now Include Fresh-Cut Fruit Products

    Mann Packing Co., Inc. (“Mann”), a subsidiary of Del Monte Fresh Produce N.A., Inc., and one of the largest suppliers of packaged vegetables in North America is excited to announce the addition of a fresh-cut fruit area to its new facility in Gonzales, California. This new section of the facility will allow Mann Packing to grow its fresh-cut fruit and organic fresh-cut fruit business and provide a new space to help the brand continue to meet consumer needs.

    Separate from the Value Added Vegetable part of the Gonzalez Plant, the Fresh-Cut Fruit area will allow for added retail convenience, as fruit will be cut to order. This will allow for the elimination of inventorying and for deliveries to be made directly from the Gonzalez plant. This new area of the plant is especially unique as it uses many vertically integrated products such as pineapples, melons and grapes.

    “As a trusted Fresh Del Monte brand, we are excited to now be processing our fresh-cut fruit in a brand new, state of the art plant,” said Parker Javid, Vice President of Sales at Mann Packing. “Our team is always working to find new and innovative solutions to meet the needs of our consumers and we are excited to offer our customers greater freshness and efficiencies by combining both fresh-cut fruit and vegetables on one truck and in a direct shipment from our plant.”

    In addition, the Gonzales facility has a state-of-the-art sanitation and cleaning protocols, allowing for a high focus on food safety for cut fruit. Beyond face masks, hair nets and constant hand sanitation, the new facility has separate processing and raw material areas. Additionally, the facility also boasts a 260-foot-tall wind turbine to help Mann Packing continue its mission of sustainable processing. Wash water from the facility will also be reclaimed into industrial waste systems for use on local golf courses and city landscaping. 

    The MANN brand has been a symbol of produce innovation during the last 80 years. Now, as a part of Del Monte Fresh Produce N.A., Inc., Mann Packing Co., Inc. will continue to delight shoppers with wholesome, innovative and delicious products.

    For more information on Mann Packing, including where to find its products, visit veggiesmadeeasy.com. For recipes and more, visit the company’s social media channels including, Facebook, Instagram, and Twitter.

     
    ABOUT MANN PACKING CO., INC.
    Founded in 1939 and headquartered in Gonzalez, CA, Mann Packing Co., Inc. is one of the largest suppliers of western vegetables, BROCCOLINI® baby broccoli and sugar snap peas in North America. In 2018, Mann Packing was acquired by Del Monte Fresh Produce N.A., Inc. Today, operating as the Fresh Del Monte vegetable division, Mann Packing continues to lead the way in product innovation. Mann Packing is consistently vigilant in food safety, employee wellness and quality assurance, making for one of the most trusted brands in the industry.
     
    ABOUT DEL MONTE FRESH PRODUCE N.A., INC.
    Del Monte Fresh Produce N.A., Inc. is one of North America’s leading marketers and distributors of high-quality fresh and fresh-cut fruit and vegetables.  Del Monte Fresh Produce N.A., Inc. markets its products in North America under the Del Monte® brand (as well as other brands) used under license from Del Monte Foods, Inc., a symbol of product innovation, quality, freshness and reliability for over 125 years. Del Monte Fresh N.A., Inc. is not affiliated with certain other Del Monte companies around the world, including Del Monte Foods, Inc., the U.S. subsidiary of Del Monte Pacific Limited, Del Monte Canada, or Del Monte Asia Pte. Ltd.
  • Will California Remain Leader in U.S. Ag Production?

    A new book shows how California has led the nation in farm sales since 1948 and explores future challenges

    “California Agriculture: Dimensions and Issues” by the Giannini Foundation of Agricultural Economics details the past, present and future of many of California’s major agricultural commodities, including grapes, tree fruits and nuts, vegetable crops, dairy, livestock, nursery and floral production, and cannabis. The new 18-chapter book, written by agricultural economists at UC Davis, UC Berkeley and UC Riverside, addresses issues such as labor, water, climate and trade that affect all of California agriculture.

    “California agriculture overcame many obstacles to become the nation’s number one farm state. Leading agricultural economists are generally optimistic that California agriculture will continue to thrive in the 21st century, despite continuing large challenges,” said Philip Martin, UC Davis emeritus professor of agricultural and resource economics, who is co-editor of the new publication.

    For over 70 years, California has led the nation in farm sales due to its specialization in high-value commodities such as fruits, nuts, vegetables and other horticultural crops. The book uses the most recent Census of Agriculture data to show that, of the $64 billion of these crops produced in the U.S. in 2017, California produced nearly half by value ($31 billion).

    In 1879, wheat and barley occupied over 75% of the state’s cropland. The types of crops grown in California have changed considerably over the years.

    More than 44 percent of California’s $50 billion in farm sales in 2017 were fruits and nuts, with 17 percent of sales from vegetables and melons, and 14 percent from nursery and other horticultural specialties crops. Many of these high-value specialty crops are also very labor-intensive and face challenges from increased cost and decreased availability of agricultural labor. The book discusses how California growers effectively responded to these labor challenges by adopting labor-saving mechanization. California remains competitive with producers elsewhere by relying on superior plant varieties, integrated pest management, and improved irrigation methods that increase both the quantity and quality of California agricultural commodities.

    Water, climate and trade pose challenges and opportunities for California agriculture. In the last decade, water scarcity and decreased water quality, along with regulations to address these issues like the Sustainable Groundwater Management Act, have prompted farmers to use scarce water to irrigate more valuable crops, as with the switch from cotton to almonds. Increased regulations and the increasing scarcity of water affect high-value specialty crops as well as the dairy and livestock industries that accounted for 24% of California farm sales in 2017.

    Climate variability, including drought and heat stress, affects farmworker welfare, crop yields and dairy productivity. Retaliatory tariffs resulting from the 2018 trade war reduced U.S. agricultural exports to China by close to $14.4 billion per year, as exports of dairy, livestock and specialty crops fell.

    California agriculture has a rich history of overcoming challenges by pursuing innovative research, adopting new technologies, and adapting to changing conditions. Learning how California agriculture has succeeded in the past suggests that the state can maintain its dominant role as an agricultural producer in the future.

    Learn more about several of the major California agricultural commodities and the issues and opportunities they face in this new, second edition of California Agriculture: Dimensions and Issues. Read the book for free online as part of the Giannini Foundation’s Information Series (20-01) at https://giannini.ucop.edu/publications/cal-ag-book/. A paperback copy of the 414-page book can be ordered for $55 at http://bit.ly/CalAgBook2ndEd– By Ria DeBiase, Communications Director, Giannini Foundation of Agricultural Economics

    The Giannini Foundation was founded in 1930 from a grant made by the Bancitaly Corporation (later renamed Bank of America) to the University of California. Its mission is to promote and support research and outreach activities in agricultural economics and rural development to benefit the agricultural industry, policymakers, and society at large. Giannini members include University of California faculty and Cooperative Extension Specialists in agricultural and resource economics. Learn more about the Giannini Foundation of Agricultural Economics at https://giannini.ucop.edu.

  • Protein Discovery Could Help Enable Eco-Friendly Fungicides

    New research reveals an essential step in scientists’ quest to create targeted, more eco-friendly fungicides that protect food crops.

    Scientists have known for decades that biological cells manufacture tiny, round structures called extracellular vesicles. However, their pivotal roles in communication between invading microorganisms and their hosts were recognized only recently.

    UC Riverside geneticist Hailing Jin and her team found plants use these vesicles to launch RNA molecules at fungal invaders, suppressing the genes that make the fungi dangerous.  

    ​Infection of an Arabidopsis plant by the fungus that causes white mold disease. (Anna Schroll/Max Planck Institute for Chemical Ecology)

    “These vesicles shuttle small RNAs between cells, like tiny Trojan horses with weapons hidden inside,” said Jin, a professor of genetics and the Cy Mouradick Chair in the Department of Plant Pathology and Microbiology. “They can silence pathogenic fungal gene expression.”

    Using extracellular vesicles and small RNAs has several advantages over conventional fungicides. They’re more eco-friendly because they are similar to naturally occurring products. Eventually, they degrade and do not leave toxic residues in the soil. Also, Jin explained, this method of fighting fungi is less likely to breed drug-resistant pathogens.

    A sticking point for scientists in creating these fungicides has been figuring out how to load their desired small RNAs into the vesicles.

    “We’ve wondered how these weaponized small RNAs get into the bubbles,” Jin said. “Now, we think we have an answer.”

    Her laboratory has identified several proteins that serve as binding agents, helping to select and load small RNAs into the vesicles. The lab’s research is detailed in a new Nature Plants journal article.

    The Jin laboratory has been working for several years on the development of gene-silencing RNA fungicides. Work toward this goal led to the team’s landmark discovery in 2013 that gene-silencing RNA messages can be sent from the fungal pathogen to the plant host to suppress host immunity. Later, the team learned small RNAs can move both ways — from plants into pathogenic invader cells as well. In 2018, the team worked out that extracellular vesicles were the major delivery system for these small RNAs. They observed that Arabidopsis plants secrete extracellular vesicles into Botrytis cinerea, a fungus that causes grey mold disease and destroys millions of crops every year.

    “This was the first example of a host using these vesicles to deliver small RNAs to another organism,” Jin said. “Previously we saw movement of RNA, but didn’t know how the small RNA are selected and transported.”

    Now, she and her colleagues have identified several RNA-binding proteins in Arabidopsis that bind to specific small RNA molecules and load them into extracellular vesicles. This suggests the proteins play an important role in loading and stabilizing small RNAs in the vesicles. The finding can help increase the payload of gene-silencing RNAs that make it into vesicles and enhance the efficiency of disease control.

    Some scientists have taken inspiration from the RNA communication in plant vesicles to design human therapies. For example, some are attempting to load anti-cancer RNAs and drugs into extracellular vesicles in fruits or vegetables, so people can eat or drink them. Jin is hopeful that her lab’s discovery can aid these efforts. — By Jules Bernstein, UC Riverside

  • How do Radishes Work as a Cover Crop?

    Farmers love tools. The prospect of a fully stocked tool shed ranges from badge of honor to true obsession.  Plants, too, can be used as tools. Integrating cover crops into a farmer’s toolbox can offer many benefits – and it’s a tool given to us by nature!

    Getting farmers to adopt cover crops as various tools can be hard. To do that, we need to better understand these different tools and their uses. Cover crops like clover add nitrogen to the soil, while reducing erosion and runoff. And, radishes, a tasty ingredient in salad, can be used to break up soil and other hard jobs.

    Breaking up soil with radishes

    Millennia ago, Greek philosophers presented the Doctrine of Signatures, stating that a plant’s appearance may resemble its practical use. For example, walnuts were linked to brain health and beans to kidneys. In thinking about the radish as a tool, the plant root could be similarly equated to the drill, a type of natural tilling.

    Thick radish roots are an ideal choice for natural drilling into the soil to reduce compaction. When the radish crops are terminated, the radish and roots leave large, open pores in the soil. This increases soil aeration and water infiltration. Along with this comes more earthworm and microbial activity. It’s clear that a tillage radish cover crop certainly lives up to that name. As it turns out, the simple radish can be quite the complex tool when properly utilized.

    Scavenging and cleanup

    There are many varieties of radish. From ‘Daikon’ to ‘Icicle’, knowing the specific cultivar is an important part of deciding if a radish belongs in your field or on your plate! When an agronomist recommends a radish variety for use as a cover crop, they have a job in mind to make use of these unique plant features.

    Farmers turn to “scavenging” to optimize chemical inputs and yield outputs by using cover crops. The cylindrical roots of the radish grow deep and capture soil nutrients that were intended for the preceding cash crop.

    Many varieties are uniquely suited for this task, having been bred specifically for deep taproots that extend several inches or even feet deeper than their thick quintessential core. By scavenging nutrients from soil layers that are the hardest for most crop roots to access, radishes can be used to target critical areas to keep nutrients from the groundwater table. Though picky eaters may leave behind a harvested radish on their plate, the radish itself helps ensure that as little as possible goes to waste in terms of subsoil nutrients.

    A Daikon radish cover crop emerges after being seeded into standing corn. Radishes help break up soil compaction and use up extra nutrients to reduce runoff. Credit: Ivan Dozier

    Biofumigation – natural chemical combatants

    In March 1990, Former President George HW Bush personified picky eaters everywhere when he issued the proclamation: “I’m not going to eat any more broccoli!” The president succeeded in banning the brassica from Air Force One and the White House.

    The same pungent flavor that the former President didn’t like is loved by many. And its special compounds called gluconsinolates that give them their flavor. These compounds contain sulfur (like some medicines) and can also act as natural pesticides in the soil, a method known as “biofumigation.” These compounds can be a powerful deterrent to insects and even some species of fungi.

    The choice depends on the job

    When choosing a radish and/or any other cover crop, the most important consideration is to select the right tool for the job! For example, planting a radish in a poorly drained clay soil can drastically restrict the root growth necessary for several of the benefits. Selecting the wrong cover crop is like trying to tighten a bolt with a hammer instead of a wrench, which may explain why some don’t see convincing results.

    When choosing a radish for cover cropping, agronomists recommend that farmers select the right tool (specie) for the right job. Shown, a selection of cover crop radishes with roots. Credit: T&T Seeds

    Successful cover croppers often strengthen their polyculture by adding the radish into a multi-species mix. For those looking for a natural multi-tool to alleviate compaction, scavenge subsoil nutrients, and ward away pests, I can assure you that radishes will not leave you with a bitter taste! — By Ivan A. Dozier, CCA, Product Manager for Agronomy & Analytics at IntelinAir (American Society of Agronomy and Crop Science Society of America)

  • CA Utilized Vegetable Production Value Shows Slight Decline

    The value of California’s 2020 utilized vegetable production dropped 0.9% to $7.68 billion compared to 2019’s value of $7.74 billion according to the USDA National Agricultural Statistics Service, Pacific Regional Field Office.

    Despite the decrease in state’s overall total value of utilized production, crops showing an increase included broccoli, cantaloupe, lettuce of all types, sweet potatoes, and tomatoes. California fresh market and processing vegetable growers planted 939,700 acres of principal vegetable crops in 2020, down 3% from 2019. Utilized production totaled 433.8 million hundred weight up slightly from 2019’s 431.7 million hundred weight.

    California leads the nation in vegetable production, accounting for 39% of the U.S. vegetable acreage. USDA NASS recently posted the Vegetables 2020 Summary for vegetables grown during the 2020 crop year in California and across the U.S. The report includes survey data collected for acreage, production, marketing year price and value collected on an annual basis for 26 vegetable and melon crops in the U.S. Questionnaire content, survey timetables, and survey administration are state specific. Data are gathered by telephone interviews, mail-out/mail-back, faxed questionnaires, and personal interviews.
    Family favorites grown in California include artichokes, broccoli, carrots, garlic, tomatoes, and more. For a copy of the full report, visit Vegetables 2020 Summary. Just interested in California? Here are comments on 2020 crops where The Golden State is the largest producer. The data reflects U.S. numbers:

    Artichokes: Total production in 2020 totaled 812,000 cwt, down 15% from 2019. Planted area was estimated at 5,900 acres, down 11% from the previous year. Area harvested, at 5,800 acres, was down 12% from 2019. The value of the crop totaled $62.6 million, 16% below the previous season. Utilized production totaled 792,500 cwt, all of which was for the fresh market. In California, artichokes enjoyed a routine spring with strong supplies and steady demand. The March increase could be attributed to consumers pushing the demand for healthy vegetables. The pandemic temporarily impacted labor availability and elevated production costs, but generally favorable weather resulted in good quality and production.

    Broccoli: Total production in 2020 totaled 15.8 million cwt, down 5% from 2019. Planted area was estimated at 100,900 acres, down 4% from the previous year. Area harvested, at 100,300 acres, was also down 4% from 2019. The value of the crop totaled $875 million, 3% more than the previous year. Utilized production totaled 15.8 million cwt, of which 15.3 million cwt was for the fresh market and 25,060 tons for processing. In California, the pandemic caused a variety of changes in the marketplace. Most notably was the decreased demand from the food service industry for broccoli. Growers plowed under broccoli due to limited demand by the hospitality industry.

    Cabbage: Total production in 2020 totaled 23.7 million cwt, up 6% from 2019. Planted area was estimated at 60,600 acres, down 3% from the previous year. Area harvested, at 58,600 acres, was down 3% from 2019. The value of the crop totaled $428 million, 16% less than the previous season. Utilized production totaled 23.6 million cwt, of which 19.1 million cwt was for the fresh market and 224,241 tons for processing. In California, weather during the planting in the fall of 2019 and through head development in 2020 was favorable. No reports of pathogen impact were reported for the crop.

    Cantaloupes: Total production in 2020 totaled 11.3 million cwt, a slight increase from 2019. Planted areas was estimated at 41,000 acres, down 15% from the previous year. Area harvested, at 40,600 acres, down 15% from 2019. The value of the crop total was $296 million, an increase of 24% from previous year. The utilized production was 11.3 million cwt, all of which was for the fresh market. In California, lack of rainfall during the spring months and high temperatures during the summer months provided ideal growing conditions for cantaloupes compared to last year.

    Carrots: Total production in 2020 totaled 31.1 million cwt, down 6% from 2019. Planted area was estimated at 69,900 acres, down 4% from the previous year. Area harvested, at 69,700 acres, was down 3% from 2019. The value of the crop totaled $716 million, 7% less than the previous year. Utilized production totaled 31.1 million cwt, of which 22.3 million cwt was for the fresh market and 441,787 tons for processing. In California, the largest producing State, the carrot market was steady through the spring of the year. In the heavily farmed central portion of the Cuyama Valley, where a lot of California’s carrots are grown, the water table continued to drop in 2020.

    Cauliflower: Total production in 2020 totaled 9.0 million cwt, down 11% from 2019. Planted area was estimated at 42,500 acres, down 6% from the previous year. Area harvested, at 42,200 acres, was down 7% from 2019. The value of the crop totaled $346 million, 25% less than the previous season. Utilized production totaled 8.9 million cwt, of which 8.8 million cwt was for the fresh market and 2,724 tons for processing. In California, growers have seen dramatic movement of cauliflower during the pandemic. This year has seen generally shrinking volume from the beginning of February, and lower volume than the previous two year since the beginning of March. Pricing is below the prior two years and continues decreasing, although price has not stabilized, the rate of decrease has slowed.

    Celery: Total production in 2020 totaled 16.1 million cwt, up 2% from 2019. Planted area was estimated at 29,200 acres, up 4% from the previous year. Area harvested, at 28,800 acres, increased 2% from the previous year. The value of the crop totaled $359 million, down 24% from previous year. Utilized production for 2020 totaled 16.1 million cwt, up 2% from 2019.
    In California, growers reported higher production but price dropped considerably.

    Garlic: Total production in 2020 totaled 3.46 million cwt, down 10% from 2019. Planted area was estimated at 24,700 acres, unchanged from the previous year. Area harvested, at 24,700 acres, was unchanged from 2019. The value of the crop totaled $264 million, 12% less than the previous season. Utilized production totaled 3.46 million cwt, of which 1.21 million cwt was for the fresh market and 112,385 tons for processing. In California, producers were tempered by soil borne pathogens that reduced yield in some areas, though overall the growing season experienced favorable weather.

    Honeydew: Total production in 2020 totaled 2.36 million cwt, down 9% from 2019. Planted area was estimated at 7,600 acres, down 25% from the previous year. Area harvested, at 7,600 acres, was also down 25% from 2019. The value of the crop totaled $49.2 million, down 11% from the previous season. Utilized production totaled 2.36 million cwt, all of which was for the fresh market. In California, lack of rainfall during the spring months and high temperatures during the summer months provided ample growing conditions for honeydew compared to last year.

    Head lettuce: Total production in 2020 totaled 40.7 million cwt, down 3% from 2019. Planted area was estimated at 114,000 acres, down 2% from the previous year. Area harvested, at 112,900 acres, was down 3% from 2019. The value of the crop totaled $1.25 billion, 12% less than the previous season. Utilized production totaled 40.7 million cwt, all of which was for the fresh market. In California, the largest producing State, higher than normal temperatures in the central valley resulted in substantial losses. In the coastal region, warm weather and wildfires affected supplies later in the year. Significant occurrences of crop disease also contributed to a tight market, prompting concerns of shortages in other parts of the country. Some producers in Arizona and California have allowed some head lettuce to die in the field or to be disced under, due to decreased sales to food service companies.

    Leaf lettuce: Total production in 2020 totaled 15.6 million cwt, up 25% from 2019. Planted area was estimated at 62,900 acres, up 9% from the previous year. Area harvested, at 61,700 acres, was also up 8% from 2019. The value of the crop totaled $800 million, 23% more than the previous season. Utilized production totaled 15.6 million cwt, all of which was for the fresh market. In California, some growers did not harvest their fields during the spring in response to market conditions, but demand improved as the year progressed. There was a small amount of heat damage to the crop, but yields were up significantly from the previous year. Quality was reported to be fair and demand was strong enough to keep prices up. However, some producers in Arizona and California have allowed some leaf lettuce to die in the field or to be disced under, due to decreased sales to food service companies.

    Romaine lettuce: Total production in 2020 totaled 30.3 million cwt, up 11% from the 2019 total. Planted area was estimated at 93,100 acres, up 4% from the previous year. Area harvested, at 91,500 acres, was up 4% from 2019. The value of the crop totaled $948 million, 8% more than the previous season. Utilized production totaled 30.3 million cwt, all of which was for the fresh market. In California, there were quality issues in the late summer crop as instances of Sclerotinia and Impatiens Necrotic Spot Virus were found in the Central Coast region. In November, there was a voluntary recall of Romaine lettuce due to a potential outbreak of E.coli. Overall, yields were up from a year ago. Some producers in Arizona and California have allowed Romaine lettuce to die in the field or to be disced under, due to decreased sales to food service companies.

    Onions: Total production in 2020 totaled 75.2 million cwt, up 8% from 2019. Planted area was estimated at 134,700 acres, up 2% from the previous year. Area harvested, at 132,800 acres, was up 3% from 2019. The value of the crop totaled $878 million, 12% less than the previous year. Utilized production totaled 73.5 million cwt, of which 49.5 million cwt was for the fresh market and 1.20 million tons were for processing. In California, the largest producing State, growers reported the summer being too hot too early. Later in the summer there wasn’t enough sun when wildfires blanketed the state in smoke for months.

    Bell peppers: Total production in 2020 totaled 11.7 million cwt, up 1% from 2019. Planted area was estimated at 38,100 acres, up 1% from the previous year. Area harvested, at 37,100 acres, was up 1% from 2019. The value of the crop totaled $479 million, 11% less than the previous year. Utilized production totaled 11.7 million cwt, of which 8.22 million cwt was for the fresh market and 171,808 tons for processing. In California, the summer turned very hot early, which quickly turned bad as fires ravaged through large portions of the state burning cropland and producing a thick layer of smoke blocking the sun for months. Some producers had to divert peppers intended for fresh market to processors as state lockdowns caused stoppages in the supply chain.

    Spinach: Total production in 2020 totaled 7.23 million cwt, down 24% from 2019. Planted area was estimated at 56,800 acres, down 14% from the previous year. Area harvested, at 56,200 acres, was also down 14% from 2019. The value of the crop totaled $439 million, 28% less than the previous season. Utilized production totaled 7.23 million cwt, of which 6.45 million cwt was for the fresh market and 39,204 tons for processing. In California, the largest producing State, the coastal regions experienced damaging cold temperatures in early spring, bringing yields down below last year. Acreage decreased after some growers responded to a drop in demand by plowing under their fields.

    Sweet potatoes: Total production in 2020 totaled 30.7 million cwt, down 4% from 2019. Planted area was estimated at 158,000 acres, up 7% from the previous year. Area harvested, at 156,800 acres, was up 7% from 2019. The value of the crop totaled $726 million, 10% more than the previous season. Utilized production totaled 30.6 million cwt, of which 23.9 million cwt was for the fresh market and 331,638 tons for processing.

    Tomatoes: Total production in 2020 totaled 241 million cwt, up 1% from 2019. Planted area was estimated at 280,000 acres, down 1% from the previous year. Area harvested, estimated at 272,900 acres, was down slightly from 2019. The value of the crop totaled $1.66 billion, 4% more than the previous season. Utilized production totaled 239 million cwt, of which 12.6 million cwt was for the fresh market and 11.3 million tons for processing. In California, there were no major issues during planting, but higher than average temperatures in late spring affected early crop yields. Inconsistent weather patterns throughout the growing season prompted short interruptions in the flow of ripe tomatoes. Wildfires that raged through the state in late summer and early fall slowed the processing tomato harvest. Crop quality varied by region and disease pressure was low. Due to a lack of rain, water availability continued to be a concern.

    For more agricultural statistics, visit www.nass.usda.gov.

  • Drink Your Peas, Please!

    USDA Agricultural Research Service (ARS) scientist and director of the Western Regional Research Center (Albany, CA), Tara McHugh and her team in the Healthy Processed Foods Research Unit are experts at solving food-manufacturing problems. Using cutting-edge processing technologies, they have helped numerous small businesses, such as Ripple Foods, turn ideas into products for the consumer.

    ARS is helping Ripple Foods optimize its current pea protein drying process to make it more efficient and to further improve its products. The company manufactures its own pea protein by processing yellow split peas into a liquid form and then isolating, purifying, and drying the protein. The pea protein is then made into non-dairy milks, protein shakes, half and half, ice cream, and other products.

    The drying step is necessary because producing this clean-tasting plant protein in a wet state comes with challenges: It’s difficult to transport, has a greater risk for microbial spoilage, and has handling issues, McHugh said.

    “It’s also expensive to ship all over the country, so we are working to optimize the drying process—looking at a way to dehydrate it so it can be rehydrated to save expenses,” she said. “The drying process also may even improve the quality and flavor of the final product.”

    Ripple Foods has a cooperative research and development agreement with ARS, which assists the company in data gathering and analysis on different aspects of its pea beverage. “Ripple’s mission is to make plant-based foods delicious,” said Aminah Johnston, a process engineer with the company. “We are always looking for ways to make our protein and products better. Our collaboration with ARS has been extremely helpful.”

    This kind of research not only supports small businesses and U.S. growers, but also reduces waste and increases consumption of healthy foods.—By Sandra Avant, formerly with USDA-ARS Office of Communications.

  • New Dry Beans from UC Davis Combine Qualities for Both Farmers & Consumers

    Beans in the UC Davis breeding program, whose varieties have been selected to combine excellent culinary with improved yields and resistance to bean common mosaic virus. Credit: Travis Parker

    Plant breeders are constantly working to develop new bean varieties to meet the needs and desires of the food industry. But not everyone wants the same thing.

    Many consumers desire heirloom-type beans, which have great culinary quality and are visually appealing. On the other hand, farmers desire beans with better disease resistance and higher yield potential.

    The bean varieties that farmers want to grow are sometimes different than the varieties consumers want to purchase. Until now.

    Travis Parker, a plant scientist at University of California, Davis, has worked with a team of researchers to release five new varieties of dry beans that combine the most desirable traits.

    The new varieties, UC SunriseUC Southwest RedUC Tiger’s EyeUC Rio Zape, and UC Southwest Gold, were recently highlighted in the Journal of Plant Registrations, a publication of the Crop Science Society of America.

    “Our new beans combine the best of both worlds for farmers and consumers,” says Parker. “They combine the better qualities of heirloom-type beans with the better qualities of commercial types.”

    Heirloom-type beans often represent older bean types that are known for culinary qualities and seed patterns. These are highly desired by consumers. Heirloom types often fetch a higher market value than other beans.

    Commercial dry beans often have higher yields, shorter maturity times, and improved disease resistance. While they possess qualities desirable to producers, they don’t command as high of a market price compared to their heirloom counterparts.

    A comparison of the heirloom variety “Tiger’s Eye” (left, with virus symptoms) and the newly released “UC Tiger’s Eye” (right, healthy leaves). These varieties have similar culinary qualities, but UC Tiger’s Eye is resistant to the common mosaic virus and has higher yields. Credit: Travis Parker

    “Our goal was to improve field characteristics of the heirloom beans without losing culinary characteristics,” said Parker. “We have an interest in higher-value varieties and want them to grow well.”

    Farmers growing the heirloom dry beans often sell the beans to health-conscious consumers or high-end restaurants. This sale often leads to a higher price point. However, these beans are prone to disease and don’t perform well in the field.

    “We know that existing heirloom beans don’t usually do well in terms of yield,” said Parker. “Breeding beans for high yields is a major improvement for farmers. The new varieties are high-yielding, heat-tolerant, and are also resistant to bean common mosaic virus.”

    Incorporating disease resistance was essential when developing the new bean varieties. Bean common mosaic virus is a well-known problem that is hard to control in the field.

    “The only really effective means to handle the virus is through genetic resistance,” explains Parker.

    The new varieties, such as UC Sunrise, satisfy the need for farmers to have a bean that is disease resistant while also yielding 50% more than heirloom types. In addition, the beans do not take as long to grow between planting and harvest.

    UC Sunrise seeds Photo Caption: A detailed view of UC Sunrise, one of the new varieties of the heirloom-like dry bean. The colorful pattern is desirable to consumers. Credit: Travis Parker

    Commercial and heirloom beans come from the same species, but they are in different market classes. The heirloom varieties are bred with intimate knowledge of what tastes good and what works well in the kitchen.

    “In recent decades, there has been less attention paid to consumer desires during the bean breeding process,” says Parker. “There are more layers between the breeder and the consumer. We are trying to make sure to keep consumers in mind while incorporating qualities that are beneficial to the farmer.”

    With consumer desires in mind, the research team used cross-pollination to breed plants with key characteristics they selected. As Parker and the team continued the breeding process, they performed taste tests to ensure the beans met the level of culinary quality expected of an heirloom-type bean, in terms of flavor and visual appeal.

    This research was supported by the Clif Bar Family Foundation, Lundberg Family Farms, the United States Department of Agriculture Organic Agriculture Research & Extension Initiative, and the United States Department of Agriculture Western Sustainable Agriculture Research and Education program.

    To learn more about the research behind these new dry bean varieties, watch this video from Travis Parker.

  • Using Satellites to Improve Sustainability, Yield

    Two of the nation’s great agricultural regions are the focus of new research that aims to head off emerging threats and improve sustainability.

    Scientists with the Agricultural Research Service (ARS) are joining colleagues to create and use artificial intelligence to help farmers in the Colorado River Basin and Salinas Valley, CA, improve their management of irrigation, fertilization, and pests. USDA’s National Institute of Food and Agriculture funded the University of California, Riverside-led project with a 5-year, $10 million grant.

    “This project will integrate multiple satellite and meteorological data sets to help farmers in the Southwestern United States,” said Ray Anderson, a research soil scientist with the ARS Agricultural Water Efficiency and Salinity Research Unit in Riverside. Anderson leads the ARS portion of the study, working with ARS scientists Todd Skaggs and Andrew French.

    ARS has three primary roles in the project: To calculate project area crop water use and anomalies with crop water use across the entire region; develop tools that help growers avoid salinity damage while minimizing the leaching of fertilizer; and to gather field data to validate satellite algorithms.

    Researchers will take advantage of advanced satellite technology to provide more frequent, detailed information to farmers than ever before. The plan is to integrate high-resolution commercial satellite data with established government satellite platforms and meteorological data.

    A major advance with this work will be the use of daily, high-resolution (12-foot) satellite imagery, Anderson said. Previously, data have only been available every 1-2 weeks at 60- to 100-foot resolution and were too infrequent or coarse to provide timely and actionable information to farmers.

    “By combining the new satellite data with artificial intelligence, we will be able to discover and create tools that will help farmers pinpoint areas that need better irrigation, nutrient, and pest management,” Anderson said.

    “One of the major advantages to this project is that the outputs – recommendations and highlights on a smartphone app – will be accessible to all farmers,” he said. “Previously, farmers had to pay for aircraft and specialized processing to get this level of imagery and detail. Soon, high resolution satellite imagery, machine learning, and cloud processing will be available to smaller producers in one easy-to-use tool. These algorithms will help farmers with their field scouting so that they can catch problems early, before significant yield reductions occur.”

    Agriculture in the Colorado River Basin and Salinas Valley employs more than 500,000 people and generates roughly $12 billion annually in revenue. Farmers in the regions grow fruits and vegetables that are shipped around the country all year round, particularly in winter.

    Water availability and use top the researchers’ priority list because prolonged drought has reduced agricultural water availability in the southwestern United States.

    “These valleys consume large amounts of irrigation water, but the amount and quality of irrigation water is decreasing,” Anderson said. “It is important to use existing supplies more efficiently and to protect water sources from nutrient and salinity contamination that can come from poor irrigation management.” — By Scott Elliott, USDA-ARS Office of Communications.

  • Western Growers Inaugurates Next Generation of Agricultural Leaders

    To identify and prepare the next generation of Western Growers (WG) members for positions of leadership within the Western fresh produce industry, WG has inaugurated the sixth class of the Future Volunteer Leaders Program (FVLP). This year, for the first time in program history, the FVLP welcomes a future leader from Colorado, which became the third membership state in the WG family in 2015.

    The following nine individuals have been selected to represent the next generation of industry leaders:
    •    Phillip Adam, Innovative Produce
    •    Mason Brady, Homegrown Organics Farms
    •    Kristen Smith Eshaya, JVSmith Companies
    •    Rocky Hampton, LIDCO
    •    Tracy Jones, Booth Ranches
    •    Colby Pereira, Braga Fresh Family
    •    Garret Powell, Peter Rabbit Farms
    •    Amber Strohauer, Strohauer Farms
    •    Grant Talley, Talley Farms

    “The increasing number of FVLP alumni serving on our board of directors is testament to the value of this leadership program,” stated Western Growers President and CEO Dave Puglia. ”This incoming class is a vibrant group and I look forward to their participation and future industry leadership.”

    Over the course of the next two years, the Future Volunteer Leaders will shadow current members of the WG Board of Directors during board meetings, learning about federal, state and local issues affecting the Western fresh produce industry. Additionally, during the second year of the program, Class 6 will travel to Florida to tour a host of agricultural operations as part of an exchange program with the Florida Fruit and Vegetable Association’s Emerging Leader Development Program. Future Volunteer Leaders will also participate in agtech initiatives through the Western Growers Center for Innovation & Technology, as well as engage in media relations and social media efforts.

    Since the program’s inception in 2011, seven FVLP alumni have graduated into a seat on the WG Board of Directors, including six who are on the current 2021-2022 board: 
    •    Alexander Muller, Pasquinelli Produce
    •    Brandon Grimm, Grimmway Farms
    •    Eric Reiter, Reiter Affiliated Companies
    •    J.P. LaBrucherie, LaBrucherie Produce
    •    Neill Callis, Turlock Fruit Company
    •    Stephen Martori, Martori Farms

    Click here to visit the FVLP website and learn more about the Class 6 participants.

    About Western Growers:

    Founded in 1926, Western Growers represents local and regional family farmers growing fresh produce in California, Arizona, Colorado and New Mexico. Western Growers’ members and their workers provide over half the nation’s fresh fruits, vegetables and tree nuts, including half of America’s fresh organic produce. Connect and learn more about Western Growers on Twitter and Facebook.

  • GSA Expands Farm Worker COVID-Prevention Training Program to Yuma

    Replicating another of its Salinas Valley programs, the Grower Shipper Association of Central California (GSA) has established a COVID-19 training prevention program for food facility and farm employees in the Yuma in cooperation with the Regional Center for Border Health clinic. The program brings health professionals directly to work sites to provide multi-lingual information on virus prevention practices while on the job and at home as well as answer any questions employees may have, including about the availability and safety of the new vaccines.

    “This program was very popular among both employers and employees throughout last spring and summer and we are fortunate to bring this to the Yuma growing region where many of our members have farms and operations during the winter months,” says Christopher Valadez, GSA President.

    In addition to the onsite prevention training, GSA also replicated its programs to establish a quarantined housing programas well as virus testing for farm workers in this region. GSA’s quarantined housing program became a model for California Governor Gavin Newsom’s “Housing for the Harvest” program. GSA’s housing provides daily deliveries of meals and necessities as well as health checks by nurses for those workers who have been exposed to the virus, tested positive or are symptomatic.

    “As we have learned over the last several months and while we await the availability of the vaccine, prevention training, adequate testing and effective contact tracing combined with isolation alternatives through quarantined housing are needed to target the spread of this virus” Valadez says. “Bringing these programs to the desert growing region was a priority for GSA members to protect the farm workers who are essential to our industry and provide a consistent supply of healthy foods to consumers.”

    Farmers who want more information on the prevention training, expedited testing for employees or housing should contact Christopher Valadez.