Category: Featured Post

  • LGMA Partners with Western Growers to Offer Remote Food Safety Audits During Pandemic

    Mandatory government food safety audits of leafy greens farms under the California Leafy Greens Marketing Agreement are continuing during the COVID-19 pandemic. Announced today by Western Growers (WG) and the California Leafy Greens Marketing Agreement (CA LGMA), is the availability of a new process developed through a collaboration with iFoodDecisionSciences (iFoodDS), that streamlines all verification documents and data for online review by government auditors.

    This process will allow the execution of remote audits and has been reviewed and accepted by the California Department of Food and Agriculture, which has oversight of the LGMA programs and auditors. While in-person inspections may be temporarily limited to protect farm workers, farm office employees and government auditors, much of the LGMA audits are focused on reviewing verification documentation which can be presented in various forms, including large amounts of paperwork. 

    “As an industry leader in produce safety, Western Growers remains committed to leading produce safety initiatives and solutions,” said Sonia Salas, WG assistant vice president of food safety, science & technology. “In a time where COVID-19 is testing all industries, this new auditing process will support food safety oversight during this pandemic.”

    The system was developed over the past few weeks, has been tested and is now available to certified members of the LGMA who are audited an average of five times over the year.

    “We were able to use this new process in a real audit situation and it worked extremely well from start to finish,” said Sharan Lanini, Director of Food Safety for Pacific International Marketing and chair of the LGMA’s Technical Committee. “This is a great development in the government audit process.”

    “The streamlining of data and verification documents online is a really positive outcome of our ‘new normal,’” said Diane Wetherington, Executive Chair of the iFoodDS board. “The use of iFoodDS software will not only save the auditors time, but it will allow them to more efficiently assess compliance with LGMA food safety metrics through the use of a consistent online verification system.”

    “When the LGMA began in 2007, it was the first program of its kind in the nation. As we navigate through these unprecedented circumstances, the LGMA program continues to find innovative ways to move forward and achieve its objective of advancing food safety for leafy greens products,” said Scott Horsfall, Chief Executive Officer of the California LGMA. “This new auditing system is another example of the pioneering spirit of the LGMA and its commitment to find new and better ways to enhance the safety of leafy greens.”

    WG has worked with the AZ and CA LGMAs since their inception in 2007 and is currently the facilitator of proposed changes to the LGMA food safety guidelines. WG continues to explore and support new ways to enhance food safety efforts, particularly in these challenging times. 

    About California Leafy Greens Marketing Agreement:

    The California Leafy Green Marketing Agreement (LGMA) was formed to protect public health by reducing potential sources of contamination in California-grown leafy greens. LGMA membership requires verification of compliance with the accepted food safety practices through mandatory government audits.

    About iFoodDecisionSciences:

    iFoodDecisionSciences is a leading provider of food safety and process control data management software solutions for growers, shippers, packers, processors and distributors. iFoodDecisionSciences’ client-centered SaaS offerings provide easily accessible database and underlying analytics for regulatory compliance and process improvements. iFoodDecisionSciences is privately held.

    About Western Growers:
    Founded in 1926, Western Growers (WG) represents local and regional family farmers growing fresh produce in Arizona, California, Colorado and New Mexico. WG members and their workers provide half the nation’s fresh fruits, vegetables and tree nuts, including half of America’s fresh organic produce. For generations WG members have provided variety and healthy choices to consumers. Connect with and learn more about Western Growers on the association’s Twitter and Facebook.

  • Enology Building Named in Honor of Jordan College and Winery Supporter

    Donald Emil Gumz was a Valley native, who like many lifelong residents, had a love and passion for the region, including Fresno State. He came from a family of grape farmers but worked with numbers, in an accounting career that started with a local entrepreneur and developer, and ended with the Vie-Del Company, which produced brandy, wine and juice concentrates, where his love for wine and the winemaking process began. He also developed an interest in water education through his second cousin, Dr. David Zoldoske, who oversaw Fresno State’s Center for Irrigation Technology and the University’s water initiatives for 35 years.

    Gumz, who died in September 2018, left $4.66 million in his estate plans to support the Jordan College of Agricultural Sciences and Technology. His generosity will provide $3.7 million toward renovation of the research winery while the other $933,000 will be used to support the Center for Irrigation Technology.

    To recognize this transformational gift, the enology building at Fresno State, which includes the research winery, will be named the Donald E. Gumz Enology Building. The California State University Trustees approved on Tuesday, May 12, the naming of the building in his honor.

    “We are deeply grateful for Mr. Gumz’s generous and impactful gift, which aligns perfectly with his passion in winemaking while also broadening the University’s national reputation for research in the fields of viticulture and enology,” said Fresno State President Joseph I. Castro.

    About a decade ago, Gumz started attending yearly wine-tasting events hosted by the Ag One Foundation at the Fresno State Winery. There, he met many enology students over the years and enjoyed learning about wine. His first cousin and Zoldoske’s father, Robert, would often accompany him to the wine tastings. It was through Dr. David Zoldoske that Gumz learned about the importance of water for growing grapes.

    Gumz’s father grew grapes, and his maternal grandfather was Henry Engelman, who started farming grapes near Biola in the early 1900s. The family continues farming wine grapes today and produces local wines at Engelmann Cellars and LoMac Winery.

    Gumz had many interests, which led him to make annual gifts that would improve the student experience in Jordan College programs that included horticulture, the Center for Irrigation Technology and the Viticulture and Enology Research Center.

    “While Don never personally attended Fresno State, he knew superior educational opportunities would help build a strong community,” Zoldoske said. “His many significant gifts will leave a lasting legacy here in the San Joaquin Valley.”

    Gumz’s generosity will help the winery bridge the gap between laboratory-scale wine research and commercial winemaking, said Dr. Stephan Sommer, director of the Viticulture and Enology Research Center.

    “By enhancing our abilities to make wine in small batches while still using modern technology, we enhance learning opportunities for our students and the potential for state-of-the-art research in the same space,” Sommer said. “This will build on Fresno State’s national reputation to provide students with an applied and hands-on learning experience. It will also intensify our collaboration and partnership with the grape and wine industries.”

    In addition to Fresno State, Gumz also supported a number of community organizations to help fight hunger, abuse, children’s health and the arts. Recipients include Valley Children’s Healthcare, Marjaree Mason Center, Poverello House, Fresno Art Museum, Ronald McDonald House and Hinds Hospice.

  • Grapes, Health and a Healthy Immune System

    The COVID-19 pandemic has caused a refocus on building and maintaining a healthy immune system. Information on the way in which fresh grapes contribute to both is now available in one place for easy reference.

    The health info-sheet combines results of health research on the benefit grapes provide to brainheart, and colon health with data from two professors at Tufts Friedman School of Nutrition Science and Policy showing how healthy diets that include grapes can help flatten the COVID-19 curve. In addition, two recent magazine articles summarize a number of ways grape consumption positively impacts health.

    The first magazine article, from Good Housekeeping titled, “10 Health Benefits of Grapes That’ll Make You Want to Eat the Whole Bunch,” highlights how grapes help regulate blood pressure, lower the risk of diabetes, and can help with weight loss or management.

    The second article, “Feast Upon the 100 Best Foods for Men,” from Men’s Health, highlights the antioxidant power of grapes to help fight disease.

    In fact, grapes have over 1,600 phytonutrients that may also help maintain health in a variety of ways from promoting antioxidant activity to enhancing cell-to-cell communications, which help maintain the health of cells.

    See the following health info-sheet as the 2020-21 California table grape season gets underway in the next few days and runs through January:

    Supporting immune function through a healthy diet has become a focus for government officials, registered dietitians and the medical community during the COVID-19 pandemic. One key dietary recommendation is to eat more fruits and vegetables each day to improve immune function and prevent heart disease and diabetes. “How Your Diet Can Help Flatten the Curve” by two professors from the Tufts University Friedman School of Nutrition Science and Policy and a former Secretary of Agriculture provides important facts on how a healthy diet contributes to improved health overall. Excerpts include:

    • Higher intakes of specific nutrients appear to boost the immune system, while low intakes lead to less effective immune responses and higher susceptibility to infection.
    • Beyond the measures taken to fight the virus in the short term, long-term impacts must be reduced. Preventing and lessening the severity of existing cardiovascular disease and diabetes should be a key tactic. Among different risks and preventive approaches for these diseases, nutrition tops the list.
    • A recent multi-investigator study estimated that about 45 percent of all cardiovascular disease and diabetes deaths are directly attributable to poor diet. Another recent study estimated that poor diet kills about 530,000 Americans annually, equating to nearly 1,500 deaths everyday. Studies have found grapes to be both heart healthy and linked to benefits in multiple areas of health, including support for immune function. Some specifics:
    1. Fresh, whole grapes contain over 1,600 natural plant compounds including antioxidants and other polyphenols, both of which have been shown to protect the health and function of cells, which help protect against diseases.
    2. Grapes are a natural source of the polyphenol stilbenoid called resveratrol. Studies have shown resveratrol positively influences immune function.
    3. Grapes are heart healthy. Nutritional studies have shown that adding grapes to your diet every day supports a healthy heart and may reduce certain risk factors for heart disease.
    4. Grapes are hydrating, containing about 82 percent water. Hydration is critical to optimizing immune response.
    5. Grapes are a low glycemic index fruit and can fit into balanced diabetic diets. A recent study found that eating grapes was associated with a lower risk of type 2 diabetes, unrelated to their low glycemic index.
    6. Grapes may help support a healthy brain. In a preliminary study conducted at UCLA, researchers found that consuming a little over 2 cups of grapes every day preserved healthy metabolic activity in regions of the brain associated with early-stage Alzheimer’s disease.
    7. Grapes may help protect against certain cancers, such as colon cancer. Researchers found that consuming about 21⁄2 cups of grapes every day for two weeks showed a significant reduction in the expression of certain target genes responsible for promoting tumor growth in the colon.
  • Automated Delivery System for Therapeutic Materials to Treat HLB Infected Citrus

    Why is this research needed?

    In 2005, a disease called Huanglongbing (HLB, citrus greening, was identified in Florida’s commercial citrus groves. The disease is caused by a bacterium that affects all citrus cultivars by disrupting the flow of nutrients from the source of production, to the site of use, causing tree decline. HLB weakens the root system, increases early fruit and leaf drop, lowers tree productivity and fruit quality and ultimately kills the tree. The disease has spread to all the major production regions in Florida. Economic losses have exceeded more than $4 billion dollars. Currently, more than 95% of Florida’s trees are infected. There is currently no cure for the disease.

    Efforts to control HLB have been unsuccessful as the bacterium cannot be cultured, literally grown, in a petri dish, and once in the plant it proliferates within the citrus phloem. Phloem is the system that transports sugars from their site of production, the leaves, to plant parts that use sugars, the roots or flowers.Phloem transport is generally downward but can be upward as well.

    Once the HLB bacterium is in a tree’s phloem it has the potential to infect the entire tree. It is exceedingly difficult to introduce any control agent into the phloem with the conventional control methods of foliar spraying or soil drenching.

    Thus far, no treatment preventing HLB infection, or controlling the bacterium once within the tree, has been developed. Potential chemicals are being investigated, but in order to test them, direct or indirect phloem delivery, where the bacterium proliferates, is needed. Therefore, an effective method of delivering an effective volume of theraputics into the phloem is needed to evaluate potential treatments.

    What is the focus of this project?

    Our project focuses on developing a method of delivering therapeutic liquid materials, bactericides, microbial metabolites, RNAi, or biologicals, into the citrus vascular tissues, both the xylem which conducts water and nutrients upward from the roots and the phloem, which conducts sugars and other metabolic products downward from the leaves. We are investigating diffusion, trunk punctures with a surrounding liquid reservoir for passive uptake and infusion, low pressure active injections. We are focusing on these methods as foliar sprays and root drenches have not been successful phloem delivery methods.

    Who will be doing the research?

    The project is led by plant pathologist Dr. Ozgur Batuman with colleagues at the Southwest Florida Research and Education Center (SWFREC) at University of Florida in Immokalee. This four-year project will also study the citrus vascular system with a multidisciplinary research team including UF Plant Pathologists Drs. Nabil Killiny and Amit Levy at Lake Alfred, SWFREC UF Plant Physiologist Ute Albrecht, Citrus Horticulturist Fernando Alferez, Precision Ag. Engineer Yiannis Ampatzidis, Agricultural and Natural Resources Economist Tara Wade, University of California-Davis Extension Specialist Louise Ferguson and Texas A&M-Kingsville Citrus Center Plant Pathologist Veronica Ancona as well as number of graduate students, postdocs, and Florida, Texas and California citrus industry members.

    How will this research be done?

    Our earlier research involving comparisons of delivery methods including foliar sprays, soil drenching and trunk injection determined Needle-Assisted Trunk Infusion (NATI) was the best potential delivery method (Figure.1). In initial experiments, using NATI, 1 ml of rhodamine (1%) dye was injected into the trunks of one-year-old citrus seedlings. A visible red color, indicative of rhodamine uptake and movement, was detected in the upper-most leaves within 30-60 min and an increase in color intensity was observed within 24 hours. Similar results were observed in two-year-old grafted Valencia plants within 48 hours. If the NATI delivery method can be automated, large numbers of trees could be treated quickly. Once the delivery method has been developed, implementation will be tested with potential treatments developed within other research projects.

    Our proposed automated delivery would consist of a robotic arm with several modules at the end of the arm, installed on an ATV or tractor. One module with needles would grip and puncture the trunk, a second module would wrap a reservoir around the trunk below the punctures and third module would fill the reservoir. (Figure 2). Hopefully, a robotic arm plus automated system will be inexpensive enough for growers to purchase and simple enough to use.

    Another approach is disease prevention; application pf prophylactic chemicals that prevent infection. In this scenario our system would be used treat healthy young trees with bactericides or boost their immune system. When infected by the ACP the bacterium would either be killed or suppressed, perhaps below the level that harms tree growth and productivity. This option is analogous to the vaccinations that prevent diseases in humans and animals.

    What are the greatest challenges and opportunities?

    The greatest challenge is successful phloem delivery. The greatest opportunity is that, if successful, we will have developed a method that will allow much more precise deliver of theraputics to citrus trees. For example, if an effective phloem delivery method is developed, it could be used to control insects that feed on citrus plant parts. Or, it could be used to deliver growth regulators, perhaps nutrients and carbohydrates, to roots and fruits to increase growth, development and fruit quality; much like an intravenous injection functions in an animal.

    Among the questions we hope to investigate are:

    • When, what kind of, and what amount of therapeutics can be applied by NATI?
    • At what frequency?
    • What type of citrus tree: cultivar, age, infected, healthy is the best for treatment by NATI?
    • Can we kill the bacterium? How and when to assess a change in bacteria titer after treatment?
    • When will become available and be economically feasible for growers?
     — By Ozgur Batuman, Southwest Florida Research and Education Center, University of Florida; and Louise Ferguson, Department of Plant Sciences, University of California Davis

    Figure 1. Distribution of rhodamine (red dye; 1%) applied by NATI in various tissues (left) of grafted and non-grafted young citrus plants grown in the greenhouse (right). Photos taken 2 weeks after the treatments. Treatments and tissues observed are indicated. Yo = year-old.Figure 2. Projected automated delivery system (ADS); an ATV with extendable arm with NATI and the cover placement systems on the arm guided onto the tree trunk.

  • Six Ways to Improve Pesticide Sprayer Calibration/Coverage

    Are you not seeing the results you expected in your latest fungicide/insecticide application? Watch this brief interview with Peter Ako Larbi from the UC Cooperative Extension who shares several considerations on how growers can improve their pesticide spray coverage in their orchard or vineyard.

  • What Pistachio Growers can do Right Now to Control Gill’s Mealybug


    Gill’s Mealybug was an unusually difficult problem for many pistachio growers last year. Watch this brief interview with David Haviland to learn what growers can do right now to get these pests under control and read more about it in Pacific Nut Producer Magazine.

  • USDA-NASS Predicts Third Straight Record-Breaking Almond Crop

    The U.S. Department of Agriculture (USDA) National Agricultural Statistics Service (NASS) is predicting a record California almond crop for the third straight year. The USDA-NASS 2020 California Almond Subjective Forecast estimates California almond orchards will produce 3.0 billion pounds of nuts this year, up 17.6 percent from last year’s 2.55 billion-pound crop. Forecasted yield is expected to reach 2,380 pounds per acre, 10.2 percent greater than the 2019 yield of 2,160 peracre.

    This forecast comes about three weeks after USDA-NASS released the 2019 California Almond Acreage Report, which estimated total almond acreage for 2019 up 10 percent from 2018 at 1.53 million acres. Bearing acres – orchards mature enough to produce a crop – were reported at 1.18 million acres, up 8 percent from the previous year. USDA-NASS also estimated preliminary bearing acreage for 2020 at 1.26 million acres.

    “Almond acreage and production continue to increase as California almond growers further invest in precision agriculture and responsible best practices,” said Almond Board of California (ABC) President and CEO Richard Waycott. “Through the industry’s advancements in water use efficiency to environmentally friendly pest management, zero waste efforts in the orchard and beyond, almond growers are committed to achieving our Almond Orchard 2025 Goals and the realization of the California almond orchard of the future.”

    The first of two production reports for the upcoming crop year, the Subjective Forecast is based on opinions obtained from randomly selected almond growers located throughout the state via a phone survey, this year conducted from April 20 to May 6. USDA-NASS asks individual growers to indicate their total almond yield per acre from last year and expected yield for the current year based on field observations. The sample of growers interviewed is grouped by size of operation, and different individuals are interviewed each year to ensure grower representation throughout the Central Valley. USDA-NASS then combines the yield estimates obtained from each grower and extrapolates the information to arrive at the numbers reported in the Subjective Forecast.

    This July, USDA-NASS will release its second production estimate, the 2020 California Almond Objective Report. While the Subjective Forecast provides an initial estimate of the 2020/2021 crop, the Objective Report will provide an estimate based on actual almond counts that uses a more statistically rigorous methodology to determine yield. In Dec. 2019, ABC’s Board of Directors approved a strategic approach to further improve the accuracy of USDA-NASS’s reporting. From 2020 on, the Objective Report will include measurements from 1,000 target orchards throughout the state (an increase of 150 samples from 2019) and provide nut counts on not one but two branches per tree. The Objective Report will also provide the weight, size and grade of the average almond sample broken down by growing region – no longer growing district – and variety.

    The 2020 California Almond Objective Report will be released on Tuesday, July 7, at 12:00 p.m. PT. USDA-NASS conducts the Objective Report, the Subjective Forecast and the Acreage Report to provide the California almond industry with the data needed to make informed business decisions, and thanks all farm operators, owners and management entities for their time in providing the information necessary to create these reports. — Article & Photo Courtesy of Almond Board of California

  • When to Incorporate Wild Nature & the Bigger Picture of Healthy People/Ecosystems

    Guiding Principles

    At the heart of our work, we believe that farming within natural systems nurtures healthy people and flourishing ecosystems. Farming is dependent on ecological interactions among many kinds of species. Farms can be safer and more resilient because diversity encourages a wide array of beneficial organisms and processes. Farms are more cost effective with reduced outside inputs, and more climate-friendly because diverse habitats store carbon and buffer farms from storms and droughts. Farming with nature also gives room and rights for our nonhuman brethren to co-exist and prosper.

    At the same time that we promote incorporating and accommodating nature on farms and ranches, we advocate leaving wild nature intact, as much as possible. We also support local and regional food systems that respond to people’s needs and that adhere to conservation ethics. These guiding principles can help prevent the spread of pandemic viruses like COVID-19.

    Diseases and Climate Change

    Ecosystem disruption and decline are causing more disease outbreaks and more impacts to the climate. “Many of these emerging diseases arise from changing environmental conditions — including from deforestation, habitat and biodiversity loss, wildlife exploitation, the bushmeat and traditional medicine trade, confined animal agriculture, and antibiotic misuse,” according to Dr. Jonathan Foley, Executive Director of Project Drawdown.

    People keep crowding nature, and with that comes unintended consequences for which we are currently paying the price. The next pandemic could come from cutting down intact forests to produce food, whether it’s to grow crops or graze livestock. The pathogens carried by species in these forests have co-evolved for thousands of years and have come to a kind of equilibrium, in which pathogens may have killed some of its members in years past, and now co-exist with the rest. When animals are crowded, the propensity and rate of disease transmission increase among them. We intrude into a wild area and capture species that have the potential to infect us. And we fragment the habitat, making it easier for rodents, squirrels, monkeys, chimpanzees and bats to come in contact with us or our domestic animals, that then may amplify and share those pathogens with us. We insert ourselves into the mix at great risk without the same immunities.

    The interconnections of our planet dictate that when we cut down forests, we increase the release of greenhouse gases and thereby our climatic risk. Not only has the demise of these trees and many others in the world made them unable to absorb existing CO2, but their loss has contributed to the increasing CO2 load in our atmosphere. It’s not getting better. Between 2015-2018, average annual CO2 emissions were 63 percent higher than in the preceding 14 years.

    People’s internal biomes are yet another interconnection with nature’s ecosystems and are dependent on our food system. As society strives for sterile human environments and compels many to eat nutritionally vapid, cheaply processed food due to the inequitable distribution of wealth, immune systems are compromised. It’s the people with the lowest immunity that are at the highest risk of dying from the coronavirus. Even if they survive this one, there will always be another virus on the way.

    This current pandemic is thought to come from the wet markets, where live, wild animals, extracted from their natural habitats, mixed with people and domestic animals, give rise to pathogens that had never before had access to such hosts. As author David Quammen states about pathogens like COVID-19, “It’s won the sweepstakes.”

    A ban on the sale of all wild animals, especially those that move across international lines, is needed. As human numbers increase, and poor people struggle to feed themselves, it is understandable that some go into adjacent forests for desperately needed animal protein. If we were to help to alleviate that poverty, the rest of humanity and wild nature would benefit.

    Farming with Nature Versus Despoiling Native Habitats

    There is a difference between supporting native species that we have lived with for generations and that have been part of the farm ecology and surrounding landscape, and interacting with other species that have been largely secluded, albeit with indigenous people, for eons in native ecosystems. We have a low risk of catching diseases from the former, and high disease risk from the latter.

    We have learned a lot over the past decade about foodborne pathogens. Removing semi-natural vegetation around the farm is not good for food safety and may actually cause more risk, according to a Proceedings of the National Academy of Sciences study that used fine-scale land use maps with three datasets comprising ∼250,000 pathogen tests to quantify foodborne pathogen prevalence. Another study showed that when there is a diversity of habitat, there will be a diversity of rodents that don’t share or increase foodborne pathogens. With little natural habitat, one species can multiply, share food and roost sites and escalate the proliferation of pathogens.

    Integrated farms with crops and livestock have more organic matter in their soil, and that organic matter supports greater microbial diversity, which reduces the incidence of E. coli pathogens. Livestock manure from non-medicated animals draws dung beetles, which reduce the presence of E. coli pathogens. In a wide-ranging study about birds, little evidence was found linking birds to E. coli, Salmonella or Campylobacter outbreaks. Another study of birds specifically in strawberries showed that fecal contamination is extremely rare (0.01%). Farmers in the US are taking precautions with our food, making sure not to harvest freshly eaten crops like strawberries that have been contaminated by wildlife, livestock or manure.

    Industrial management of livestock, where animals in high density are given antibiotics to pre-empt disease and fatten them up quickly, is stimulating the evolution of superbugs that are antibiotic resistant. Wildlife that encounter these operations inadvertently pick up diseases and may spread them into the landscape. These diseases can contaminate our food or infect us.

    There are other zoonotic diseases – germs that spread between animals and people – that we have to take precautions for in the US. Farmers may get Brucellosis from infected livestock or hunters may get it from infected game; care must be taken with handling live animals and their carcasses. Rabies is spread to people mainly from infected dogs but also other wildlife; vaccinating pets and keeping a respectable distance from wildlife reduces risk. We can get Lyme disease through tick bites, the Plague and Hanta virus through rodent fleas, and West Nile virus through mosquitoes; wearing long sleeves and long pants and taking many other measures decrease the chance of infection. As the planet warms, ticks’ and mosquitoes’ latitudinal ranges within which they live may alter, making these vectors present more often. Studies suggests that the diversity of animals in landscapes can reduce the incidence of several diseases, including Lyme disease, Hanta virus, and West Nile virus. In these situations, when biodiversity is lost, the species that remain tend to be the most competent reservoirs. With Lyme disease, Hanta virus and West Nile virus, the White-footed Mouse, the Deer-mouse and the American Robin respectively can be high reservoirs when they and very few other species are present, but carry much less when there is a diversity of species around. In biodiverse landscapes, there are also more predators to keep these species in check.

    Even progressive agriculture needs to set limits. Our work in helping the organic community protect native ecosystems from being converted overnight to certified crop production will ensure that forests and other vital landscapes function in their climate-resilient capacity here in the states. It will also reduce agriculture’s intrusions into really wild areas of the world.

    What We Can Do & Our Hopes for the Future

    If we have learned anything about pathogens, it is that management decisions should be based on science, not fear, and certainly not on the fast buck which doesn’t account for the full costs of our actions. The world is realizing that to lessen our exposure to pathogens we need to stop these deep intrusions into natural environments. By doing so, we conserve ecosystems for the climate resiliency benefits and a vast magnitude of biodiversity. We need to reorient our focus on our security and finances to include the health of native species and the ecosystems in which we all live.

    We need to expand our support of beneficial birds, insects and other wildlife that provide pest control and pollination services with little risk to ourselves. We need to put livestock out on pastures, decrease their antibiotic use, and reduce the amount of meat we eat. We need programs to reduce poverty near wild areas to lessen encroachments, and in big cities to increase nutrition. We need to decrease or eliminate the wild animal trade. We can cut down the impact and destruction on wild animals and their ecosystems by eating food grown closer to home. We all need to support more local and regional farmers, and get our states to do the same.

    We have an opportunity and a moral mandate to make big changes for ourselves and other species with whom we share this planet. As Jane Goodall says, “We have to realize we are part of the natural world, we depend on it, and as we destroy it we are actually stealing the future from our children.”

  • CDFA Reschedules STOP QIP Petition Hearing for June 9-10

    Notice is hereby given that the California Department of Food and Agriculture is calling a public hearing to consider the suspension of Chapter 3.5 of the Food and Agricultural Code (62750 et seq). 

    This hearing is being called pursuant to Division 21, Part 3, Chapter 3.5, section 62752 of the Food and Agricultural Code, as implemented by the procedure described below and as later determined to be necessary. 

    Hearing Dates and Times 

    June 9, 2020 9:00 am – 4:00 pm June 10, 2020 9:00 am – 12:00 pm 

    Hearing Procedures 

    Webinar and Teleconference.
    The internet link and call in information will be provided in procedures document to be issued later. 

    Pursuant to Executive Orders EO-N-25-20, EO-N-29-20, and EO-N-33-20, this hearing will be conducted via internet and telephone only. No in person attendance by the public will be allowed. The public may provide public comment during the hearing and observe remotely. Written testimony will also be accepted prior to the conclusion of the hearing. 

    Exhibits and Testimony 

    A designee of the Secretary shall present exhibits into the record. Exhibits received in advance of the hearing will be posted on the Departments web site for public inspection. 

    Any interested person may file a written statement concerning the call of the hearing. Written statements may be any length, must be limited to relevant matters, signed, delivered personally or by mail any time after the notice of hearing, and shall be received by the Department prior to the close of the hearing. 

    Persons are encouraged to submit exhibits and witness statements in advance of the hearing at the 

    Department’s Headquarters to: 

    California Department of Food and Agriculture Legal Office
    1220 N Street, Suite 315
    Sacramento, California 95814 

    Testimony will be received under oath. A time limit for testimony will be determined by the Hearing Officer at the beginning of the hearing, not to exceed 20 minutes. Witnesses may supplement testimony by submitting a written statement at the time the testimony is given. The Hearing Officer may allow additional time for testimony by any witness or group of witnesses depending on the number of witness wishing to testify. At the conclusion of testimony, witnesses will be subject to questioning by a representative of the Attorney General’s Office (AGO). Any member of the audience may submit questions to the Hearing Officer for possible use by the AGO. Questions of witnesses must be related to their testimony and pertinent to the call of the hearing. Department witnesses may be questioned by members of the audience. 

    Any person who has testified under oath may be granted, upon request prior to the close of the hearing, to file a post-hearing brief. The brief must be filed within 10 calendar days following the close of the hearing, 

    Hearing Transcript 

    The hearing shall be recorded and transcribed. Copies of the transcript may be obtained from the Department Legal Office 

  • Blue Diamond Celebrates 110-Year Anniversary with Key Expansions

    Blue Diamond Growers, a nonprofit grower-owned cooperative and the world’s leading processor and marketer of almonds, marked its 110-year anniversary today with announcements about the completion of two key infrastructure expansions.

    The company also was recently recognized by Boston Consulting Group & IRI as one of the Top 10 Fastest Growing Mid-Size CPGs for the fourth consecutive year.

    As part of Blue Diamond’s long-range strategic vision, two major expansions at the co-op’s facilities in the heart of California’s Central Valley almond growing region, have been completed or are nearing completion this month. Groundbreaking ceremonies for both projects were held last year. The first expansion is a 52,000 square foot addition to the existing 200,000 square foot Turlock manufacturing plant that first opened in 2013 and sits on 88 acres. In 2014, Food Engineering Magazine recognized the Turlock facility as Plant of the Year for innovation, manufacturing excellence and sustainable operations. Construction completed on the new building last week expands Blue Diamond’s value-added almond processing capabilities with an automated factory that features state-of-the art handling, processing and packaging equipment. This expansion also provides space for a future manufacturing line to support current business or new innovations.


    Newly expanded Turlock facility

    The second expansion is the new Bulk 8 Warehouse at the Salida facility that originally opened as an almond receiving station in 1969. Today the 675,000 square foot facility sits on 44 acres and includes a retail Nut & Gift Shop. The new 58,000 square foot bulk storage facility is on schedule to be completed by the end of May providing an additional 50 million pounds of in-house bulk almond storage capacity in time to receive the 2020 almond harvest. The 65-foot-tall building includes advanced design with an automated gravity fed spiral conveyance system that improves grower delivery efficiency and reduces damage to the almonds.


    New Bulk 8 warehouse in Salida

    “It is particularly meaningful for Blue Diamond to be able to commemorate our Founders Day today by not only recognizing our humble beginnings 110 years ago, but also celebrating two key growth milestones that help secure our future,” said Mark Jansen, President and CEO for Blue Diamond Growers. “I couldn’t be more proud that, despite the unprecedented challenges businesses around the world have faced over the past two months, our incredible team has been able to sustain operations as an essential food supplier, while completing these critical expansion projects ahead of schedule to meet customer needs.“

    “When we opened each of Blue Diamond’s three main facilities, we made a commitment to invest in our infrastructure, in our workforce, and in the individual communities where our employees and almond growers live and work. Throughout the year, we support local nonprofits through our community grants, sponsorships, employee volunteerism and product donations. During yesterday’s global Giving Tuesday Now effort I’m thrilled to report that Blue Diamond, along with partners Union Pacific and Sun-Maid Growers of California, committed to a donation match of $50,000 to help support three food banks in northern and central California that are struggling to meet significant demand from local families in need.” 

    Blue Diamond Growers was founded by a handful of California almond growers on May 6, 1910.  Originally known as the California Almond Growers Exchange, the grower-owned cooperative quickly grew into the world leader in growing, processing and marketing almonds and almond ingredients. In 1914, the Exchange opened a new receiving and packaging plant in Sacramento, California, that eventually became the largest almond processing plant in the world. Today, the Sacramento plant sits on 90 acres, covering 33 city blocks and serves at the cooperative’s headquarters. In 1915, the co-op adopted the symbol of a blue diamond – the finest grade of diamond in the world – to signify its commitment to quality and in 1980, the cooperative’s name was officially changed to Blue Diamond Growers.

    California produces 80% of the world’s almond supply and almonds are the state’s largest food export item. Blue Diamond Growers’ 3,000 members account for roughly half of the state’s almond producers.