Category: Non-Video

  • Taking the Bite Out of Cattle Fever Tick Disease

    ARS researchers identified innovative ways to prevent the potential spread of the cattle fever tick, a known carrier of babesiosis, into the U.S. Babesiosis is a disease caused by a protozoan parasite that infects red blood cells. It was eradicated in the U.S. decades ago, but it continues to be a significant problem in Mexico, which raises concerns about its potential return to the U.S. The cattle fever tick is the most economically important pest of cattle worldwide. Pesticides have been shown to be effective in managing this tick, but pesticide resistance has become an emerging issue.

    ARS researchers in Edinburg, TX, in collaboration with university partners, evaluated the efficacy of different organic compounds for controlling this tick, including NootkaShield™, Stop the Bites®, and BioUD®. The results indicated that NootkaShield™, Stop the Bites®, and BioUD® led to significant mortality in cattle fever ticks when dosed at low concentrations. They also demonstrated strong repellent properties and a significant reduction in the tick’s fecundity (ability to produce an abundance of offspring). These compounds show promise for controlling cattle fever ticks, and scientists plan to further test them in the field.   

    Related links:

    Project: USDA ARS

    Cattle Fever Tick Research Unit: Kerrville, TX

    By USDA Ag Research Service

  • Research Fund Drives Vaccine Breakthroughs for Cattlemen

    The Livestock Memorial Research Fund, an arm of the California Cattlemen’s Association, is on a roll.

    Since its establishment in the 1980s, members of the livestock community have raised hundreds of thousands of dollars to promote scientific and educational projects to benefit the industry, while also providing scholarships for graduate students in ag-related fields.

    Their signature projects have included working to develop three important vaccines to address serious problems cattlemen encounter. The first one was approved for use in late 2020, the second is showing great promise with hopes of being approved within a couple of years and a third effort is now underway, said Research Fund committee member Tom Talbot.

    These grants have been crucial seed money to help researchers attract larger grants from state and federal sources.

    “Researchers can show them, look – California ranchers are excited about this, support the project and it’s important to the industry,” said Talbot, a rancher and veterinarian in Bishop.

    Talbot said the Research Fund has built up an endowment over the years to fund research and scholarships but also relies heavily on the sale of raffle tickets at the Cattlemen’s Association annual convention. The prize is a stock trailer that for more than 15 years has been purchased with donations by California Farm Credit associations.

    Ag West Farm Credit California President Kevin Ralph said Farm Credit has been proud to sponsor the prize each year, and to see the Research Fund’s investments pay off.

    “The vaccines already on the market or in the development stage will prove to be incredibly valuable for California ranchers and save them collectively millions of dollars a year,” Ralph said. “Farm Credit is proud to have played this ongoing role in the Research Fund’s successes.”

    Farm Credit associations supporting the Research Fund are AgWest Farm Credit, American AgCredit and CoBank. These organizations are part of the nationwide Farm Credit System – the largest provider of credit to U.S. agriculture.

    The first vaccine was developed to prevent a dangerous ailment called epizootic bovine abortion, a tick-borne disease that for decades had caused tens of thousands of cows in the West to abort their calves.

    “That was truly a home run for the industry,” said Talbot, a rancher and veterinarian in Bishop. “The efficacy of the vaccine has just been outstanding.”

    While detailed statistics are not available, Talbot said the vaccine has caused the loss rate of calves to drop from between 10% and 40% in tick-infested areas down to the 5%-10% range today.

    The Research Fund contributed nearly $350,000 to the research over several years.

    For the past several years, the Research Fund’s has been supporting efforts to create a vaccine against another major tick-borne illness called bovine anaplasmosis. This disease, caused by bacteria that infects the red blood cells of cattle, leads to anemia, weight loss and even deaths that cost U.S. ranchers hundreds of millions of dollars in economic losses each year.

    The work involved genetically modifying the pathogen in a lab. By deleting a specific gene and then injecting the modified pathogen into cattle, the animals were immunized. Talbot is hopeful that the vaccine could hit the market within a couple of years, which he said would be a significant development for California ranchers.

    The Research Fund is now providing seed money for studies into developing a third vaccine, this one to prevent pinkeye – another common livestock disease. The bacteria-caused disease, largely spread by flies, costs producers nationwide over $150 million a year due to reduced weight gain (as much as 20-35 pounds per calf), along with lower milk production and sale value.

    2026 marks the third year the Research Fund has contributed to this vaccine research.

    “We have high hopes for it as we move forward and the funding has helped allow him to recruit additional funds to support research for the beef cattle industry,” he said.

    Talbot said the Research Fund has contributed about $50,000 to each of these two projects.

    Besides helping fund vaccine projects, the Research Fund also has awarded over $150,000 in graduate-level scholarships for students in fields that would benefit cattle production

    Pierce Mallery, Director of Regional Banking with American AgCredit, said Farm Credit financially supports several ag-related scholarship programs each year because highly educated professionals must be trained to provide people with the skills and services the industry will continue to need.

    “The Research Fund is investing wisely in developing the lawyers, veterinarians and other skilled professionals the industry will need to meet the challenges of tomorrow,” Mallery said. “Farm Credit strongly supports programs to train people to help ensure that agriculture continues to thrive in California”.

    About Farm Credit:

    AgWest Farm Credit, American AgCredit and CoBank are cooperatively owned lending institutions providing agriculture and rural communities with a dependable source of credit. For more than 100 years, the Farm Credit System has specialized in financing farmers, ranchers, farmer-owned cooperatives, rural utilities and agribusinesses. Farm Credit offers a broad range of loan products and financial services, including long-term real estate loans, operating lines of credit, equipment and facility loans, cash management and appraisal and leasing services…everything a “growing” business needs. For more information, visitwww.farmcreditalliance.com

    About the Livestock Memorial Research Fund:

    The Livestock Memorial Research Fund is a 501(c)3 organization that funds scientific and educational projects and scholarships for students in fields related to California’s livestock industry. LMRF monies are used solely for scientific, charitable or educational purposes and are administered by a board consisting of California Cattlemen’s Association (CCA) members. Other uses of LMRF funds include studies by University of California researchers which identify grazing management strategies that improve riparian resource conditions. Other studies funded in part by LMRF contributions have researched the effects of livestock grazing upon endangered species and sought methods to control livestock disease.

  • An Indoor Air Scrubber for Removing Ammonia in Poultry Houses

    Researchers from the USDA’s Ag Research Service (ARS) are helping poultry farmers protect their flocks and their employees, while improving poultry production. ARS researchers recently developed an indoor air scrubber that purifies the air in chicken houses and reduces ammonia levels by 87% to 99%.

    High levels of ammonia pose problems for poultry and agricultural workers. Ammonia, which is released from litter in poultry houses, reduces birds’ body weight gain, causes poor feed conversion, and makes birds more susceptible to viral diseases. In addition, ammonia exposure can pose health risks to agricultural workers.

    Poultry manure accounts for 27% of atmospheric ammonia emissions in the United States, representing a significant loss of nitrogen that could otherwise be used as fertilizer for crop production.

    Currently, farmers use poultry litter acidifying amendments such as adding aluminum sulfate, known as alum, to litter to reduce ammonia levels in poultry houses. However, the amendments only last up to three to four weeks. Ammonia scrubbers offer an alternative solution; however, current systems only treat exhaust air. As a result, they provide no direct benefits to poultry production and are not cost-effective.

    To find a more economical solution for farmers, researchers from the ARS Poultry Production and Product Safety Research Unit in Fayetteville, AR, designed and patented a full-scale prototype of an indoor air scrubber that can be easily installed in a poultry house to purify the air and save valuable nitrogen. The scrubber has a fast sand filter that removes particulate matter from the scrubbing solution to prevent the nozzles from clogging – a problem that existing air scrubbers have in animal facilities with heavy dust.

    “In study trials at our testing facility, our scrubber purified the amount of air in a 40 foot by 400-foot chicken house every 30 minutes and reduced ammonia levels by 87% to 99%, depending on the ammonia concentration and the air flow rate at which it is operated,” said ARS Research Soil Scientist Philip Moore.

    Moore and his research partners are planning to test the air scrubber in commercial poultry houses in the near future.

    In addition to measuring ammonia levels, the researchers will look at how effectively the air scrubber can remove dust and pathogens from the air, such as viruses responsible for avian influenza and other pathogens that cause foodborne illnesses.

    “This innovative technology could transform livestock production in poultry and potentially swine housing operations by improving animal welfare and worker safety, reducing disease transmission risks, and increasing farm profitability and environmental sustainability,” said Moore.

    The study was published in the Journal of Applied Poultry Research and done in collaboration with the ARS Poultry Research Unit at Mississippi State University, MS, and the University of Delaware’s Department of Animal and Food Sciences.

    Abou USDA Ag Research Service

    The Ag Research Service is the U.S. Department of Agriculture’s chief scientific in-house research agency. Daily, ARS focuses on solutions to agricultural problems affecting America. Each dollar invested in agricultural research results in $20 of economic impact.

  • Transformative Gift Propels UC Davis’ Leadership in Ag Tech

    The University of California, Davis, has received a gift of more than $25 million that will transform the advancement of agricultural technology and innovation for generations to come, made possible by a bequest from late philanthropist and local businessman Dan G. Best II.

    The gift honors the enduring legacy of his grandfather, C.L. Best, an agricultural innovator and founding leader of Caterpillar Tractor Co., whose design of his first track-type tractor in 1912 still forms the basis for all current track-type machines used across the world today.

    The two-part gift provides foundational support for the College of Agricultural and Environmental Sciences. First, $12 million is creating three endowed chairs named for C.L. Best in the Department of Biological and Agricultural Engineering. An additional $12.5 million establishes the C.L. Best Innovation in Agriculture Fund to support student scholarships, faculty and staff research, and facility improvements.

    “We are deeply grateful to Dan Best for this extraordinary gift, which allows UC Davis to carry forward the legacy of C.L. Best by continuing to invent and respond to the evolving needs of the agriculture industry,” said Chancellor Gary S. May.  “This game-changing investment strengthens the university’s leadership in innovation while helping educate future leaders who will address critical challenges around food, water and sustainability.”

    UC Davis is widely recognized as a world leader in agricultural sciences, ranking first in the nation and second in the world for agriculture and forestry by the QS World University Rankings and as well as first in the nation in biological and agricultural engineering by U.S. News & World Report.

    The gift is driving growth during a significant time for the College of Agricultural and Environmental Sciences, which is opening the Resnick Center for Agricultural Innovation in fall 2026. The facility, located in the heart of campus along Hutchinson Drive, will provide state-of-the-art spaces for advanced work in robotics and sensing, AI and big data, plant breeding, sustainability and student success. The robotics and sensing suite in the new facility will be named the C.L. Best Agricultural Innovation Robotics and Sensing Suite in his honor.

    “Thanks to the tremendous generosity of Dan Best, our college will build on our first-rate programming and support for students, accelerate the interdisciplinary research of our faculty and staff, and continue advancing agricultural technology on a global level,” said Ashley M. Stokes, dean of the College of Agricultural and Environmental Sciences.

    Endowed chairs power innovation in engineering

    The three endowed chairs created by the gift are the first for the Department of Biological and Agricultural Engineering. These prestigious positions provide funds in perpetuity to support distinguished faculty members in research, teaching and service. The new positions are named:

    • C.L. Best Endowed Chair in Agricultural Big Data Analytics,
    • C.L. Best Endowed Chair in Robotics and Cyber-physical Farming Systems, and
    • C.L. Best Endowed Chair in Controlled Environmental Engineering.

    “These three chairs will help translate agricultural research and innovation into deployable products and tangible solutions, supporting ag-tech startups and companies as they bring new technologies to the field,” said Fadi Fathallah, chair of the Department of Biological and Agricultural Engineering.

    Together, the positions address critical challenges facing agriculture today — from food security and climate resilience to energy efficiency and workforce issues — while drawing from different disciplines across engineering like robotics and artificial intelligence.

    “The roles are designed to be symbiotic; they will work collaboratively with each other and across departments within the college and the university, bringing together the expertise needed to move cutting-edge research into practical farming and agricultural practices,” said Fathallah.

    These resources, along with the Resnick Center’s new equipment and infrastructure, together act as a catalyst bolstering an already top-tier program to go farther and faster than ever before, accelerating UC Davis’ impact and leadership in ag innovation and food systems sustainability. Fittingly, the Agricultural Innovation Robotics and Sensing Suite within the center will be named in honor of the gift.

    Honoring the Best legacy 

    A farmer and long-serving leader in Yolo County, Dan G. Best II was a member of the Woodland Chamber of Commerce, who named him Agribusiness Person of the Year in 2013, and served on the Woodland Healthcare Foundation Board. He was part of a long line of agricultural innovators. His great-grandfather, Daniel Best, worked to improve early grain harvesters and steam tractors in the late 1800s in San Leandro, Calif. — and received 41 patents over his lifetime.

    “Dan was a tremendously generous yet modest man, who was incredibly proud of his grandfather’s legacy and contributions to agricultural innovation. He was adamant that his pioneering work be celebrated, and that UC Davis’s strength in this area made it a fitting tribute for lasting dedication and impact,” said Shaun B. Keister, vice chancellor for Development and Alumni Relations.

    C.L. Best was also an inventor and businessman who changed how land is worked around the world. He perfected the track assembly of the track-type tractor — a machine that moves on continuous steel tracks instead of wheels — making it more durable in difficult ground conditions. His designs became the foundation for nearly all modern tracked machines still in use today.

    In 1925, C.L. Best helped form the Caterpillar Tractor Co. and served as its chairman until his death in 1951. Best’s work supported major advances in agriculture through irrigation, flood control and land development. The machines built on his ideas helped shape farms, infrastructure and communities worldwide, creating a legacy that continues to influence modern-day agriculture and industry. — By Clémentine Sicard

  • FDA and Partners in the Central Coast Share Findings from Environmental Study

    Today, the U.S. Food and Drug Administration is sharing initial findings from a multi-year environmental study conducted in California’s Central Coast agricultural region that will inform efforts to further improve the safety of produce — an essential component of a healthy diet. The California Longitudinal Study was conducted in partnership with the Western Center for Food Safety at the University of California, Davis, the California Department of Food and Agriculture, and regional agricultural stakeholders.

    The Central Coast of California is farmed year-round and supplies a large volume of produce, which includes more than 400 commodities. However, there have been periodic foodborne illness outbreaks associated with the region, including several that occurred between 2016 and 2020 caused by the same E. coli O157:H7 strain. This study sought to identify environmental factors that significantly contribute to the introduction, persistence, and spread of foodborne pathogens that could contaminate produce prior to harvest. Increasing our understanding of the ecology of this growing region as it pertains to foodborne pathogens is to the benefit of consumers, producers, academia, and food safety officials as it allows for continued improvement in best growing practices to enhance food safety.

    The longitudinal study, which began in 2020, followed an adaptive research design in which sample collection matrices, sites, and frequencies were continually assessed and refined to obtain maximum useful, practical information. Through repeated sample collection, testing, measurement, and analysis, the research team observed trends in pathogen presence in this region over time, providing insightful information on prevalence, location, and potentially influencing factors such as seasonality, weather conditions, and domesticated and wild animal activities on adjacent and nearby land.

    Initial findings related to E. coli O157:H7 and other Shiga toxin-producing Escherichia coli (STEC) have been posted to the FDA’s California Longitudinal Study webpage and are summarized below:

    Animal Sources of Contamination: Fecal samples from rangeland beef cattle, feral pigs, deer, birds, and coyotes were frequent sources of STEC. Viable STEC was recovered from fresh and older, drier feces from livestock and wildlife found in the sampling area. These results suggest that STEC may remain viable in fecal material for extended periods.

    Environmental Sources of Contamination: Surface waters and associated sediments may facilitate STEC persistence, and in the case of water, STEC movement in the region. STEC was not recovered in a substantial amount of soil or air samples, indicating that these are not likely impacting the spread of STEC in the region. However, STEC was observed in water and sediment from rivers and creeks, and to a lesser extent in irrigation tailwater and tailwater sediment (accumulations of field runoff from irrigation practices) collected at field edges.

    STEC Diversity, Persistence, and Movement: Twelve different E. coli O157:H7 strains were isolated from environmental samples; however, the strain responsible for outbreaks between 2016 and 2020 was not recovered. STEC isolated from wildlife feces genetically matched strains from cattle feces, other wildlife feces, and in some cases, water, sediment, and soil. Six different highly pathogenic STEC serotypes were identified and some strains of these serotypes persisted for nearly two years.

    The FDA will engage with stakeholders to further discuss the data and findings from this study and assist stakeholder efforts to develop practices to manage the risks posed by the potential sources of contamination. Additional information and publications will be added to FDA’s California Longitudinal Study webpage as they become available. — By the U.S. Food and Drug Administration

  • Bloom Winding Down in Almond Orchards

    The 2026 almond bloom is winding down almost as quickly as it started this season. The weather for this period was significantly drier and warmer than that of the previous week. Temperatures reached as high as 80 degrees in the San Joaquin Valley, and the Sacramento Valley saw temperatures swing from lows in the 20’s last week to highs in the 70’s this week. Despite warmer and drier conditions, wind and clouds suppressed bee activity for much of the week in the Sacramento Valley. Bee activity in the San Joaquin Valley was fair to good for most of the period.

    Bloom in the Sacramento Valley has consistently stayed slightly ahead of the rest of the growing regions this season and continued its progress through petal fall and into jacket and early nutlet stages. Only Butte Padre plantings there have any significant bloom remaining at this point.

    Bloom continued its decline for Nonpareil, Monterey, Independence, and California varieties for this period in the San Joaquin Valley as well. Most of the remaining bloom is in Butte Padre plantings, though even these have passed their peak by the end of this period. Bees were more active in the milder weather there and worked whatever viable bloom they could still find.

    Ranvir Tung, a grower in Fresno County, summed up the week by saying, “The remaining bloom progressed rapidly after the storms, and with leaf-out now underway, the next round of fungicide applications are being applied.”

    Bee hives began to be removed from the most advanced orchards at the end of this period. As orchards continue to dry out, growers will conduct maintenance activities such as mowing and removing trees that were downed in last week’s storms. They will also look to begin nutrient applications and pest management discussions. — By Anthony Scudder, Regional Manager, Blue Diamond Growers

  • 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

  • Sweet Potato Tips

    The winter of 2024-2025 saw average precipitation for the Merced area, with 9.66 inches of rain based on the California Irrigation Management Information System (CIMIS) weather station in Ballico (Merced County no longer has any functioning CIMIS stations). A cool spring was followed by a mild summer, with only six days at or above 100°F. This great weather led to low plant stress and excellent yields. Overall production was even better than in 2023, which was likewise a good year due to mild summer temperatures.

    The Collaborators Trial results reflected the successful production year — the standard lines exceeded 1400 boxes/acre, or about 70 bins/acre (Figure 1). Several Bellevue fields exceeded 80 bins/acre.

    Rains came early during harvest, with 1.5 inches of rain falling on October 13, followed by another storm in November. The mid-October storm may cause some problems for the stored crop, especially if the Diane cultivar was still in the ground.  Soil temperatures at 6 inches depth dropped 4°F after that rain. The combination of the soil being both cold and wet during harvest created the potential for accelerated decay in storage.

    How Did the Different Cultivars Perform?

    The Murasaki and Vermillion cultivars continue to have inconsistent set and erratic production.  Zero carryover from last year resulted in high prices for Murasaki in August and September. Farm advisor Scott Stoddard guesses that many fields were harvested early to take advantage of the price at the expense of yield, which means a short crop is likely in summer of 2026.

    Vermillion quality and yield vary.  The plants seem to set too many roots that never fully develop. That is why Stoddard continues to screen new reds, with three potential new releases in the pipeline.

    The market for purple-flesh sweet potatoes continues to grow and command good prices. In the last two years, new purple-flesh cultivars have yielded well — over 35 bins/acre — in Stoddard’s trials.  They are attractive, with good shape and skin color. Cultivar L-24-71p looks especially promising in its first year, with deep purple flesh and good flavor and texture. It may soon join the six purple cultivars already commercially available: Stokes, Ben Yagi, Regal Purple (USDA ARS), Purple Majesty (NCSU), Purple Splendor (NCSU) and Purple Reyne (LSU), grown on about 1000 acres total.

    Total marketable yields in boxes/acre differed widely among cultivars and among years. Covington had the highest 4-year total and Vermillion had the lowest.

    Diseases Remain Problematic

    Despite the good growing season, certain diseases remain problematic. Fusarium root rot (putatively Fusarium oxysporum+ F. solani) mainly impacts Bellevue, though the other cultivars are not immune.  Scurf — a superficial, soil-borne fungal disease — impacts Covington, but also can infect the other cultivars. Southern blight is mostly a problem in Diane in the hotbeds, but it can likewise damage any variety.

    New work by UC Davis plant pathologist Cassandra Swett shows that the organism responsible for Fusarium foot rot may not be F. oxysporum at all, but rather the newly named Fusarium noneumartii, formerly lumped in with F. solani f.sp. batatas.

    Fusarium foot rot first appeared as a major problem in 2022 during harvest, causing 10-20% loss on some fields harvested in October, after a September heat spell with several days above 105°F and a record high of 112°F on September 6. The roots rotted while still in the ground. No such heat conditions occurred in 2025, which makes the high incidence of this disease worrisome. No doubt it has been around for decades, but why it has suddenly become so prevalent is not known.

    The reason for the increase in scurf, however, is most likely because of reduced use of clean seed these last few years. Scurf is easily transferred from cuttings to transplants, but does not live long in fields in the absence of sweet potatoes.  “One year out and it’s gone,” Stoddard comments.

    Suggested management practices for both Fusarium root rot and scurf include using thiabendazole (Mertect) fungicide in the hotbeds, using clean seed, cutting transplants above the soil line, managing nematodes and timely harvest — the longer the roots are in the ground the more likely they will become infected.

    What is the acreage and production of sweet potatoes in California? 

    The USDA has revised their estimates for sweet potato production acres in California:

    year

    acres

    2020

    22,000

    2021

    21,000

    2022

    21,000

    2023

    19,000

    2024

    18,000

    At 29.5 bins/acre average yield and 18,000 harvested acres, total production in 2024 was around 530 million pounds. USDA has not yet published estimates for 2025, but Stoddard estimates 18,000 acres at 35 bins/acre, for total production of 630 million pounds.

    What’s Happening in Sweet Potato Research?

    Variety Trials

    The National Sweetpotato Collaborators Group trial is a variety trial that is conducted in multiple states.  It provides regional information to plant breeders at Louisiana State University, North Carolina State University and USDA. The national results, shown in Figure 1, show that the yields vary widely among cultivars and over the years.  Covington had the highest four-year total and Vermillion had the lowest.

    The results of Stoddard’s 2025 Advanced Line Trials (ALT) in Merced, an expanded version of those conducted each year with Dave Souza, are presented in Figure 2. Notice how Beauregard yielded over 100 bins/acre, but was mostly jumbos (only 21% #1’s).  Bellevue stands out as having both high yield and a high percentage of #1’s. Stoddard used greenhouse plant cuttings straight from Foundation Plant Services, which illustrates the tremendous yield increases possible when using new seed.

    Advanced Line Trials (ALT) for 2025 showed Bellevue having both high yield and a high percentage of #1’s.

    Fumigation and Nematicide Trials

    Stoddard continued his evaluation of various nematicides in 2025 with an emphasis on placement and timing. The Salibro label, updated in 2025, prescribes different methods than the ones he has used for several years, limiting applications to pre-plant and 30 days after transplanting.

    The experiments were conducted in hotbeds in 2023 but in fields in 2024. Even in fields, root knot nematode (RKN) counts were very low and remained so throughout the entire season. The field was fumigated in April, planted May 1 with Diane (RKN susceptible) and harvested September 17-19, 2025. Nimitz and Nemaclean nematicides were pre-plant incorporated one week before transplanting, while all the others were applied post-plant in May and June.

    One of the Velum treatments was applied in the row by moving the tape over to the plants and then injecting. This position was chosen because Velum has low solubility and does not move well in soil, so direct placement near the plants may improve efficacy. A Velum-then-Salibro trial was also evaluated.

    The nematicide results are shown in Figure 3. Overall, this was a high-yielding field with low nematode pressure.  Nonetheless, yields were significantly higher in all the nematicide treatments than in the untreated control by an average of 8 bins/acre. The specific nematicides did not differ significantly from each other.

    Farm advisor Scott Stoddard’s sweet potato nematicide trial in Merced County in 2025 showed that yields were higher in the plots receiving nematicide than in the control plots with no nematicide, even in a year with low nematode pressure. The nematicides did not differ significantly from each other.

    The big news is that Covington comes off patent in May. The high-yielding variety was released by NC State in 2005.  — By Scott Stoddard, UCCE Farm Advisor, Merced and Madera Counties and edited by Nancy Power, PHD, Assistant Editor for California Fruit & Vegetable

  • Avocado Commission Seeks Nominees for Board Vacancies

    The California Avocado Commission has one District 5 producer member seat, one District 4 producer alternate member seat, and one handler alternate member seat available on the CAC Board of Directors. The deadline to submit nominations is February 25. Completed forms should be emailed to cac.iaf@avocado.org.

    The vacancies will be filled by a majority vote of the Board at a meeting held on March 5. The District 4 seat and handler seat will serve through October 31, 2027. The District 5 seat will serve through October 31, 2026.

    Persons interested in serving on the CAC Board must complete the relevant forms listed below.

    Qualifications for the producer positions are as follows:

    • Nominee shall certify they meet the definition of a producer/grower as defined by CAC: “engaged within this state in the business of producing, or causing to be produced, avocados for market.” It should be noted the definition does not include persons whose average annual production is less than 10,000 pounds of avocados in the three preceding market years.
    • Nominee shall certify they are not a handler or employee of a handler under the same entity that qualifies them as a producer.
    • Nominees can be nominated in only one district — those who produce avocados in more than one district must select one district for their nomination.
    • Nominees must complete and submit all required documents and maintain their qualifications throughout the term of their office.

    Qualifications for the handler position are as follows:

    • Nominee shall certify they meet the definition of a handler as defined by CAC: “has a financial interest in handling avocados for market either through ownership, employment or membership in a legal entity which is actively and directly engaged in the handling of avocados.”
    • Nominee shall certify they are “actively and directly engaged in the handling of California avocados
    • Nominees must complete and submit all required documents and maintain their qualifications throughout the term of their office.

    For additional information, contact the Commission at 949.341.1955 or email cac.iaf@avocado.org. —By California Avocado Commission

  • Surveying Citrus Greening Risks in Southern California

    A screenshot of the risk-based survey for detecting huanglongbing (HLB) in Southern California. Colors represent the probability of HLB establishment or development, ranging from low risk (blue, near 0.0) to high risk (red, near 1.0). (Image provided by Weiqi Luo, North Carolina State University)

    Huanglongbing (HLB), also known as citrus greening, is the most devasting disease of citrus worldwide and has cost billions of dollars in economic losses. HLB has severely affected the citrus industry in Florida before any remedial action could be taken by growers. In California, HLB has been reported in urban backyard citrus trees that are a potential source of the pathogen. These infected backyard citrus trees threaten surrounding commercial citrus groves.

    ARS researchers in Fort Pierce, FL, and their research partners developed a refined risk-based survey (RBS) to help stakeholders survey for HLB in complex urban and suburban landscapes in Southern California. The RBS is being used by the citrus stakeholders and plant health regulators to identify and remove infected trees, which will help preserve the health of nearby citrus groves. Use of the model optimizes survey efforts and allocation of resources to combat HLB. The RBS is also updated with new detection data and refined continuously to better guide surveillance of HLB in Southern California. An online interface makes the most recent survey available to stakeholders.