Category: Non-Video

  • Cabernet Sauvignon’s 400 Year Memory Revealed

    About 400 years ago, a cross between cabernet franc and sauvignon blanc gave birth to cabernet sauvignon. Today, cabernet sauvignon is the world’s most-planted wine grape, dominating vineyards from Napa to Bordeaux. New research from the University of California, Davis, reveals that the grape still carries a kind of gene memory of its parents.

    Clones over the centuries

    Unlike annual crops such as corn or wheat, grapevines are propagated from cuttings, not seeds. Each new vine is essentially a clone of its ancestor. That means every cabernet sauvignon vine grown today is genetically nearly identical to the original 17th-century plant.

    “When you think about it, it’s unusual compared to most crops, which are continuously improved through breeding,” said Professor Dario Cantù, of the UC Davis Department of Viticulture and Enology. “We still cultivate plant material selected hundreds of years ago simply because cabernet sauvignon is so beloved.”

    Scientists have long wondered whether chemical “switches” that help control how genes turn on and off, known as epigenetic marks, remain stable across hundreds of years of clonal reproduction. A new study led by Cantù and published in the journal Genome Biology shows they do.

    “These are modifications that don’t alter the genetic code itself, but sit on top of it,” Cantù explained. “They can be inherited from your parents, but also change as you develop, as you interact with the environment or as you’re challenged by stress or disease.”

    The team used advanced genome sequencing to assess the stability of these epigenetic modifications, which can influence traits like fruit quality and stress tolerance. The study is the first to show that this kind of molecular memory can persist for centuries in a clonally-propagated crop.

    “It’s like sequencing identical twins at 90 and still detecting the parental signatures they inherited, even though their experiences — and much of their epigenome — has changed with age,” Cantù said.

    New genetic analysis tools

    To uncover this, scientists assembled highly detailed genome maps of cabernet sauvignon and its parent varieties, cabernet franc and sauvignon blanc. They analyzed multiple clones of each cultivar and developed a sophisticated genomic model, called a phased sequence graph, that captures subtle genetic and epigenetic variations more accurately than traditional reference genomes.

    This new framework allowed researchers to trace how epigenetic marks are inherited along with DNA, and to understand how those marks affect gene activity. The study showed clonal plants may show minor differences from one vine to another, but their core epigenetic patterns or “gene memory” remain remarkably stable, even across centuries of clonal propagation.

    Clues for climate resilience

    This discovery could help scientists understand how long-lived crops adapt to their environments and whether those adaptations leave stable molecular marks. Cantù noted that if some epigenetic responses to heat, drought or other stresses prove to be stable, they could become targets in breeding.

    “If we know which stress-induced epigenetic changes persist, we could potentially introduce them by exposing plants to specific conditions and select vines that retain those beneficial marks over the long term — without altering their genetic makeup and preserving the defining traits of varieties like cabernet sauvignon.”

    The framework developed for this research can be applied to many other perennial crops. By identifying which inherited markers endure, scientists hope to guide breeding programs for resilience and quality.

    The discovery also carries a historical resonance for UC Davis. In 1997, UC Davis professor and geneticist Carole Meredith first identified cabernet franc and sauvignon blanc as the parents of cabernet sauvignon. Nearly three decades later, Cantù’s team has shown that the grape still bears molecular traces of that ancestral pairing.

    “This work connects a UC Davis classic to a UC Davis first,” Cantù said. “It shows that even after centuries, cabernet sauvignon still holds the molecular memory of where it came from.”

    Other authors include Noé Cochetel, Amanda M. Vondras and Rosa Figueroa-Balderas of UC Davis; Joel Liou and Paul Peluso of Pacific Biosciences.

    This research was partially supported by the National Science Foundation, the U.S. Department of Agriculture National Institute of Food and Agriculture, the E. & J. Gallo Winery and the Ray Rossi Endowment in Viticulture and Enology. — By Amy Quinton, UC Davis

  • New Research Reveals California Cannabis Cultivation and Regulatory Process Puts Tribal Cultural Resources at Risk

    A comprehensive new report from researchers at the University of California, Berkeley, and Northeastern University reveals that cannabis cultivation in California threatens Tribal cultural resources. As in other arenas of development, however, protecting those resources faces systemic challenges.

    Based on findings from a two-year study that surveyed both Tribal and agency representatives across the state, the survey found that the state’s current consultation policies, while stronger than in many other states, remain inadequate and are inconsistently applied, leading to significant risks of irreparable harm to Tribal cultural heritage sites.

    “Our research shows a significant disconnect between state policy and the experience of California’s Native American Tribes. The current cannabis permitting system, while well-intentioned, fails to adequately protect ancestral lands and cultural resources,” said Jennifer Sowerwine, principal investigator on the project, and UC Cooperative Extension specialist in the Department of Environmental Science, Policy, and Management at UC Berkeley. “It’s not just about historical preservation; it’s about respecting Tribal sovereignty and ensuring that this new industry does not perpetuate old harms. These findings provide a clear roadmap for the state to move beyond performative consultation toward a process that is truly meaningful and just.”

    The same landscape features that are ideal for cannabis cultivation – southern exposure, flat land, near a source of water – are also ideal for a village site or other Tribal culturally sensitive area.

    Good place to grow cannabis may be Tribal cultural resource

    Jeremy Sorgen, lead researcher on the project and research faculty at Northeastern University’s Oakland campus, said, “One of the first things we heard from Tribal Historic Preservation Officers and county officials plugged into cultural resource protection efforts is that cannabis cultivation often occurs on land with a high probability of being sensitive for Tribes.”

    “If it’s relatively flat, near a source of water, and south-facing, it’s not only a good place to grow cannabis, but it may also be a ceremony or village site or other place of cultural importance to Tribes,” said Sorgen, who is also a researcher at the UC Berkeley Cannabis Research Center. “What this means is that cannabis cultivators, historically and today, are actively selecting for Tribal cultural resources.”

    In 2014, California Assembly Bill 52 amended the California Environmental Quality Act, or CEQA, to include statutory requirements for Tribal cultural resource protection. This law was implemented shortly before Proposition 64 legalized adult use of cannabis in 2016. The study, “Examining Tribal Sovereignty over Cannabis Permitting on Native Ancestral Lands,” investigated the intersection of these two laws and found that AB 52, while strengthening Tribal consultation at the local level, retains many of the same problems of previous state and federal cultural resource laws.

    The research was designed, conducted and analyzed in collaboration with a seven-member Tribal Advisory Committee and included comprehensive surveys of 46 Tribal representatives and 56 agency officials, alongside 61 in-depth interviews conducted across the state.

    Key findings from the report include:

          Power imbalances: “Agency discretion” policies mean state and local agencies often have the last word on permit approval, CEQA exemptions, and designating Tribal cultural resources. This undermines Tribal sovereignty and exposes Tribal cultural resources to harm.

          Flawed mapping: The state’s reliance on inaccurate and contested maps results in systematic under-consultation, where the wrong Tribes are notified, culturally affiliated Tribes are excluded from the process and cultural resources go unprotected.

          Insufficient consultation: Even when consultation is triggered, the process is often treated as a procedural “box-checking” exercise rather than a meaningful, government-to-government dialogue.

          Underfunded mandate: AB 52 has resulted in an unprecedented number of project notifications, many of them likely to threaten Tribal cultural resources. Tribes lack funding for consultation-related staff, equipment and training. Agencies also lack training and resources for effective and respectful consultation.

    The report offers a series of actionable recommendations for the Department of Cannabis Control and other state agencies to address these systemic issues. Key recommendations include collaborating directly with Tribal governments to develop more equitable consultation processes and accurate maps of ancestral territories. Other recommendations include initiating consultation as soon as a permit application is received, providing increased funding and specific training for Tribes and agency staff engaged in consultation, and fostering stronger data-sharing agreements between state, local and Tribal governments.

    New tools support Tribal sovereignty in consultation

    Building on the research findings, the research team and Tribal advisors have developed two sets of tools to support Tribal control of the consultation process.

    “California has some of the strongest cultural resource protection laws in the U.S., but meaningful consultation is undermined by structural problems in the consultation process,” said Shasta Gaughen, environmental director and Tribal historic preservation officer of the Pala Band of Mission Indians and a member of the Tribal Advisory Committee. “We brought together Tribal historic preservation officers from around the state to develop a toolkit that reflects Tribal consultation experiences, is concise and easy to use, and empowers Tribes rather than agencies to set the terms of consultation.”

    The By Tribes, For Tribes Consultation Policy Toolkit offers a customizable Consultation Policy Template and supplemental materials for Tribes that wish to create their own consultation policies or ordinances. The “By Tribes, For Tribes” approach enables Tribes to proactively guide government agencies through consultation processes based on Tribal priorities, rather than reacting to agency interpretations of what the law requires.

    The UC Berkeley Cannabis Site Mapping Tool provides Tribes a means to assess the extent of cannabis agriculture on their ancestral or aboriginal territory. It can be used to determine possible threats to Tribal cultural resources and sensitive sites.

    Both tools, the full project report, and related academic journal articles can be accessed on the Resources for Tribes webpage housed on UC Berkeley’s Cannabis Research Center website. — By Edith Friedman, UC Berkeley

    About the Research Team: The research was led by a collaborative team from the University of California, Berkeley, and Northeastern University, hosted at the UC Berkeley Cannabis Research Center. Team members, specializing in environmental policy, Indigenous rights, and the social impacts of cannabis legalization, include Jennifer Sowerwine; Jeremy Sorgen; Seth LaRosa, UC Berkeley graduate student; Peter Nelson, assistant professor of environmental science, policy, and management and ethnic studies at UC Berkeley and Coast Miwok and tribal citizen of the Federated Indians of Graton Rancheria; and Van Butsic, former UC Cooperative Extension specialist at UC Berkeley.

    The project was funded by the California Department of Cannabis Control and conducted in partnership with Tribal advisors and participants from across California.

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

  • Key Discovery on How a Plant-Parasitic Nematode Infects Such a Wide Range of Organisms

    UC Davis nematologists, including Valerie Williamson, professor emerita in the Department of Plant Pathology, and associate professor Shahid Siddique, Department of Entomology and Nematology, have long wondered how the plant-parasitic nematode, the Northern root-knot nematode, is able to infect such a wide range of organisms, from monocots and dicots to annual crops and woody plants.

    Now a 15-member research team of international nematologists and biotechnologists, led by UC Davis nematologists, have gained insight into how the DNA of this nematode species, Meloidogyne hapla, facilitates their success.

    The discovery, hailed by the team as groundbreaking, “is the most complete and contiguous genome assembly for a plant-parasitic nematode to date,” agreed Williamson and Siddique, co-authors of a newly published paper, “High-Resolution Genome Assembly and Linkage Mapping in Meloidogyne hapla Reveal Non-Canonical Telomere Repeats and Recombination Hotspots Associated with Effector Proteins,”  in the open-access medical journal, PLOS Pathogens

    The peer-reviewed research is online at https://tinyurl.com/44zx2eh2.

    “Interestingly, we discovered that Meloidogyne hapla uses an unusual DNA repeat at the ends of its chromosomes instead of typical telomeres, suggesting it may have an alternative way to protect its chromosomes end,” Siddique said.

    “Overall, our study integrates high-resolution structural genomics, genetic mapping, and functional inference to uncover links between genome architecture, recombination landscapes, and host–parasite interactions,” said first-author Pallavi Shakya, a doctoral candidate in the Siddique lab who received her master’s degree in plant biotechnology from Wageningen University, The Netherlands.

    Other co-authors include UC Davis doctoral candidate Alison Blundell and UC Davis postdoctoral researcher Dadong Dai, both of the Siddique lab, and scientists from The Netherlands, France, Indonesia, Australia, and Croatia.

    “Plant parasitic nematodes cause billions of dollars of damage annually to plant crops globally,” said Williamson, a Fellow of the Society of Nematologists.  “Root knot nematodes (RKN) are the most damaging species group in large part because they are able to infect diverse crops including both monocots and dicots, annual crops and woody plants.”

    “Over twenty years ago, my group and others decided to focus on a single species as a model to serve as a resource,” Williamson related. “We chose the species Meloidogyne hapla due to its relatively simple DNA genome, its genetic tractability, and the observation that isolates of the nematode differed in plants that they could infect. While considerable progress was made in analyzing the DNA, attempts to completely understand the genome structure were hindered by the tiny size of the organism and limitations in technology.”

    However, in recent years, dramatic improvements in biotechnology and bioinformatics developed. “Our international team of nematologists and biotechnologists worked together to produce a complete assembly of the genome that represents the DNA sequence of full-length chromosomes,” she said, pointing out that “As far as we are aware, this is the most complete genome for a plant-parasitic nematode.”

    has several novel features: Chromosome ends do not resemble those of most other animals or plants; the chromosome structure differs between isolates of this nematode with breaks, rejoining and recombination between chromosomes of different isolates,” Williamson said. “This genome flexibility may provide a clue as to how root-knot nematodes are able to change the spectrum of hosts that they can infect.  It will also provide a resource for studying the genome of other important RKN species and allow identification of nematode genes that contribute to successful parasitism. This information should inform best strategies for RKN control as well as development of plants with increased resistance.”

    The Northern root-knot nematode causes significant economic damage to many crops by causing root galls, stunting, reduced yield, and disfigurement, which makes infected produce like carrots unmarketable.  The damage affects a wide range of plants, including vegetables, fruit trees, and wine grapes in certain regions. Infections are most severe in young plants, which can lead to complete crop destruction, while established plants may sustain significant yield reduction.

    The abstract:

    “Root-knot nematodes (Meloidogyne spp.) are among the most destructive agricultural pests that cause significant yield losses across a wide range of crops. Meloidogyne hapla is a valuable model for studying root-knot nematodes due to its parasitic diversity, small diploid genome, and a reproductive strategy that facilitates genetic analysis. Here, we report the most contiguous genome assembly to date for any plant-parasitic nematode built using PacBio HiFi, Oxford Nanopore, Illumina, and Hi-C sequencing. Genetic linkage analysis of F2 populations derived from crosses between M. hapla strains validated the assembly but also revealed anomalies indicating chromosome structure differences between parental isolates such as fissions, fusions, and rearrangements. Strikingly, we identified sharply delimited zones with extraordinarily high recombination on most chromosomes. Notably, several of these high recombination zones were significantly enriched for genes encoding secreted proteins, many of which contribute to parasitism.

    These findings suggest that meiotic recombination facilitates effector diversification and offer insight into how these parasites diversify their effector protein repertoire to change or expand their extraordinary host range. We further report the discovery of a novel 16-nucleotide tandem repeat and lack of canonical telomere repeats at chromosome ends. The localization of this 16-nt repeat at chromosome ends highlights a potentially divergent mechanism of chromosome-end maintenance in this nematode group. Overall, our study integrates high-resolution structural genomics, genetic mapping, and functional inference to uncover links between genome architecture, recombination landscapes, and host–parasite interactions.”

  • California FFA Foundation Supporters Recognized at 2025 National Convention

    California FFA is proud to celebrate a distinguished group of leaders, educators, and supporters recognized at the 2025 National FFA Convention & Expo in Indianapolis. This year, 22 California FFA Honorary American FFA Degree recipients were awarded, along with one recipient of the VIP citation.

    The Honorary American FFA Degree is awarded to individuals who have provided exceptional service at the national level to agriculture, agricultural education, or FFA. Recipients include educators, industry partners, community leaders, and advocates who go above and beyond to support FFA members and agricultural education programs. Individuals honored with the VIP citation have dedicated 20 years of service to FFA and agricultural education on a national level.

    Of the 22 individuals recognized nationally, four were nominated by the California FFA Foundation for their continued support of its mission to secure resources and partnerships that create opportunities for students across the state. This year’s California FFA Foundation honorees include Jenny Nicolau and Rebecca Bailey of the Almond Board of California; Emily Rooney, California FFA Foundation Board Member and Ag Council of California President; and Toni Lindeleaf, past California FFA Foundation Board Member. Additionally, Charles Parker, who recently retired from his role as State Supervisor for Agricultural Education and State FFA Advisor, received National FFA’s VIP Citation.

    “California FFA is strengthened by leaders who believe in students and serve as advocates for agricultural education across our state,” said Matt Patton, executive director of the California FFA Foundation. “These Honorary American FFA Degree and VIP Citation recipients have helped create opportunity, mentorship, and hands-on learning for FFA members across our state, and we are pleased to see their efforts recognized at the national level.”

    In addition to this year’s Foundation honorees, California FFA is proud to acknowledge the remaining Honorary American FFA Degree recipients: Mike Albiani, Joe Buffington, Sara Carney, Amber Charter, Peggy Flynn, Amanda Galan, JessaLee Goehring, Wesley Hunt, Amy Jacobsen, Johan Jacobsen, Julie Luxon, Celeste Morino, Jenny Lynn Oilar-Svejda, Gregory Osmundson, Mayra Osmundson, Jon Sellenrick, Lisa Wright and Mark Wright.

    About California Association, FFA, and the California FFA Foundation: The California Association, FFA, serves more than 108,000 students, developing their potential for premier leadership, personal growth, and career success through agricultural education. The California FFA Foundation supports these efforts by securing resources and partnerships that make these opportunities possible for students statewide. To learn more about the California FFA, visit calaged.org.

    Facebook: @CaliforniaFFA | LinkedIn: @California-FFA-Association | Instagram: @californiaffa | TikTok: @officialcaliforniaffa

  • Friant Water Authority Announces CEO Transition

    The Friant Water Authority (FWA) has announced that Chief Executive Officer Jason Phillips has informed the Board of Directors of his intention to step down, effective January 19, 2026.

    Phillips will transition into a leadership role in the private sector, where he plans to remain involved in western water matters. Over the coming weeks, the FWA Board will evaluate options to ensure a smooth and orderly leadership transition.

    “During his time with FWA, Jason has been a dedicated and results-driven leader whose influence was instrumental in advancing major infrastructure improvements, strengthening relationships with state and federal partners, and ensuring that Friant’s priorities were at the forefront of critical water policy discussions. His leadership has left a lasting impact, and I’m certain Jason will be successful in his new role,” said Richard Borges, Chairman of the FWA Board.

    “It’s been an honor to serve the Friant Board and this region over the past 10 years, and I’m incredibly proud of our talented team,” added Phillips. “My priority now is a smooth handoff to help keep key projects and priorities on track. I intend to remain very engaged in western water, supporting solutions for farms, cities, and communities across the West.”

    The Friant Water Authority is a public agency formed by its members under California law to operate and maintain the Friant-Kern Canal and to represent its members on federal and state policy, political, and operational decisions that could affect the water supply of the Central Valley Project’s Friant Division. The Authority’s goal is to provide dependable, sustainable water from Millerton Reservoir to Friant Contractors.

  • California Surface Water Costs Triple During Drought

    California often swings between climate extremes — from powerful storms to punishing droughts. As climate change drives more intense and frequent dry and wet cycles, pressure on California’s water supplies grows.

    A new University of California, Davis, economic study finds that drought in California pushes the price of water from rivers, lakes and reservoirs up by $487 per acre-foot, more than triple the cost during an average wet year. The research appears in Nature Sustainability.

    Groundwater prices stable

    “The extreme volatility in prices surprised me,” said lead author Madeline Turland, a former graduate student in the UC Davis Agricultural and Resource Economics Department and now an assistant professor of resource economics at the University of Alberta. “During dry years we have really high surface water prices and during wet years we have really low water prices, but we found that groundwater seems to have stable prices over time, despite precipitation swings.”

    California groundwater basins can store eight to 12 times more water than all the state’s reservoirs combined yet are not widely used to store surplus surface water. The study suggests that managing groundwater and surface water together could keep water prices steady and support the state’s economy.

    “This study shows why coordinating both sources matters — it can lower costs now and help communities and farmers better weather future climate swings,” Turland said.

    Surface water prices volatile

    Researchers looked at water transaction data from 2010 to 2022, which spanned both drought and deluge in California. During that time, surface water prices varied with precipitation, while groundwater prices remained stable.

    The study also found that more water storage could help protect California from climate-driven price swings. But researchers said building new reservoirs, raising dams and removing sediment from existing reservoirs also come with high fiscal, environmental and social costs and may bring only marginal or temporary increases in storage capacity.

    Legal and policy challenges

    Turland noted that California’s system of water rights makes joint management challenging. Surface water is allocated based on seniority of water rights. Except for adjudicated groundwater basins, where courts assign rights in response to legal disputes, there are no formal rights to groundwater.

    That could change as groundwater agencies comply with California’s Sustainable Groundwater Management Act, which requires that groundwater basins reach sustainability targets by 2040. Courts could play a major role in many of those plans, Turland said.

    Other authors of the study include Colin A. Carter, Bulat Gafarov, Jens Hilscher and Katrina Jessoe with UC Davis. The study was supported by the United States Department of Agriculture National Institute of Food and Agriculture and the Giannini Foundation of Agricultural Economics. — By Amy Quinton, UC Davis

  • Kingsburg CA Dairy Receives National Dairy FARM Excellence Award

    Integrity, ingenuity and the pursuit of excellence earned three farms and one program evaluator this year’s National Dairy Farmers Assuring Responsible Management (FARM) Program’s Excellence Awards. The awards announced today recognize participants who uphold program values by demonstrating U.S. dairy farmers are committed to producing high quality, wholesome milk.

    The 2025 FARM Excellence Award recipients are:

    • Animal Care & Antibiotic Stewardship — Bar E Dairy (Land O’Lakes Inc.)

    • Environmental Stewardship – Five Star Dairy Farm LLC (Associated Milk Producers Inc.)

    • Workforce Development — Glezen Farms, LLC (Maola Local Dairies)

    • Evaluator of the Year — Lisa Ford (Cayuga Marketing)

    “These winners exemplify FARM’s mission of continuous improvement through action, integrity and resilience,” said Chief Veterinary Officer Dr. Meggan Hain. “It’s our honor to highlight the good deeds of the dairy industry, not only to assure customers, but to reward farmers for their continued contributions and dedication.”

    Winners were announced at the 2025 Joint Annual Meeting of the National Dairy Promotion and Research Board (NDB), National Milk Producers Federation (NMPF) and United Dairy Industry Association (UDIA) in Arlington, TX.

    The FARM Excellence Awards were created in 2021 to celebrate farms dedicated to continuous improvement in each of the FARM Program pillars, and to recognize a FARM Program evaluator for their exceptional care and attention to the farms they evaluate. The awards are judged by FARM Farmer Advisory Council members and other subject matter experts. Farms and evaluators may be nominated by fellow dairy farmers and evaluators, members of their communities, extension, cooperative or processor staff, veterinarians, or other industry professionals.

    Visit the FARM website for more information about the FARM Excellence Awards.

    About the Winners:

    Bar E Dairy is located in Kingsburg, CA and is a member of Land O’Lakes, Inc. Bar E Dairy received the 2025 FARM Excellence Award in Animal Care & Antibiotic Stewardship for its commitment to exceptional animal welfare and judicious use of antibiotics through on-farm technology and innovation.

    Five Star Dairy Farm LLC is located in Alma, WI and is a member of Associated Milk Producers Inc. Five Star Dairy earned the 2025 FARM Excellence Award in Environmental Stewardship for its use of conservation practices to promote and maintain the land, water and wildlife in its community.

    Glezen Farms, LLC is located in Lisle, NY and is a member of Maola Local Dairies. Glezen Farms secured the 2025 FARM Excellence Award in Workforce Development for its dedication to fostering a safe, informed and responsible workforce through training and resource investment.

    Lisa Ford is based in Auburn, NY and is a FARM Program evaluator for Cayuga Marketing. Lisa took home the 2025 FARM Evaluator Excellence Award for her devotion to serving Cayuga members through education, leadership and advocacy.

    The National Dairy Farmers Assuring Responsible Management (FARM) Program was created by NMPF with support from Dairy Management Inc. in 2009. Program participation is open to all U.S. dairy farmers, cooperatives, and processors. Participants follow rigorous guidelines to ensure the utmost social responsibility on our nation’s dairy farms, while committing to continuous improvement. For more, visit nationaldairyfarm.com.

    The National Milk Producers Federation, based in Arlington, VA, develops and carries out policies that advance dairy producers and the cooperatives they own. NMPF’s member cooperatives produce more than two-thirds of U.S. milk, making NMPF dairy’s voice on Capitol Hill and with government agencies. For more, visit www.nmpf.org.

  • California Milk Advisory Board Welcomes Leslie Ganzer to Foodservice Team

    The California Milk Advisory Board (CMAB), the marketing order representing California dairy producers, today announced the addition of Leslie Ganzer to its Foodservice team. In her new role, Ganzer will support engagement initiatives with major foodservice operators and distributors to expand participation in CMAB programs.

    Ganzer joins CMAB with a strong background in strategic sales execution, partner development and account retention across the foodservice and manufacturing sectors. She most recently served as a Territory Account Manager at Informa, where she led sponsorship sales and renewal growth for national events such as the Restaurant Leadership Conference. She also implemented AI-driven prospecting and analytics tools to modernize client outreach and performance tracking.

    Prior to Informa, Ganzer held multiple leadership roles at foodservice market research firm, Technomic Inc., where she managed multimillion-dollar accounts with national chains, broadline distributors, commodity boards and manufacturers. Her earlier career with EcoSure (Ecolab) and C.H. Robinson provided deep insight into large-scale food safety, logistics and operations.

    At CMAB, Ganzer will focus on strengthening partnerships and aligning dairy marketing initiatives with operator needs and trends. Her experience bridges analytics and sales strategy—helping CMAB deepen its relationships with key industry partners and enhance its data-driven approach to foodservice growth.

    “Leslie’s combination of strategic sales experience and foodservice insights will bring tremendous value to our operator and distributor relationships,” said Katie Cameron, Director of Foodservice at CMAB. “Her proven ability to grow partnerships and deliver measurable results aligns perfectly with our mission to expand the reach of Real California dairy products across the foodservice industry.”

    Ganzer holds a Bachelor of Arts degree in Psychology with a minor in Human Relations from the University of Iowa.

    California is the number one dairy state with more than 1,000 family dairy farms focused on delivering the wholesome goodness of California milk while creating a more sustainable future for dairy in the state.

    About Real California Milk/California Milk Advisory Board

    The California Milk Advisory Board (CMAB), an instrumentality of the California Department of Food and Agriculture, is funded by the state’s dairy farm families who lead the nation in sustainable dairy farming practices. With a vision to nourish the world with the wholesome goodness of Real California Milk, the CMAB’s programs focus on increasing demand for California’s sustainable dairy products in the state, across the U.S. and around the world. Connect with the CMAB at RealCaliforniaMilk.com.

  • Dairy Council Of California Releases Annual Report

    This year’s Annual Report reflects a transformative period for Dairy Council of CA — one defined by innovation, strategic focus and forward-thinking leadership. The report highlights progress in supporting nutrition security through education, collaboration and science-based advocacy, while strengthening partnerships that elevate the health of communities across California.

    Through engagement with leaders in education, health, agriculture and the dairy community, Dairy Council of CA continues to champion the importance of nutrition education and sustainable food systems in improving public health. The report showcases measurable impact, including reaching 1.7 million children and families, expanding professional trainings and contributing to national and international dialogue on dairy’s role in health and sustainability.

    You are invited to explore this year’s outcome-based report to see how our collective efforts are driving healthier behaviors, stronger partnerships and lasting impact across the state. Read it HERE.

  • Fact vs. Fiction: Correcting Myths About California Dairy Methane Reduction Efforts

    Dairy Cares — Over the past eight years, California’s dairy farms have collectively achieved an annual reduction of 5 million metric tons of methane (CO2e) and counting. This is important, as scientists agree that reductions in methane emissions are critical to slowing global warming. The world-leading effort has drawn some well-deserved attention. Unfortunately, there are several common myths and misconceptions about California dairy’s methane reduction programs. Let’s explore the misnomers and the facts.

    Myth #1: California’s methane reduction efforts are focused on digesters.

    One common misconception is that digesters are the primary strategy being deployed to reduce dairy methane emissions in California. There are in fact several strategies being deployed, which are all equally important to ensuring success across all dairy farms, large and small. Here are the main strategies in no particular order:

    Strategy #1: Methane Avoidance – California dairy farms are avoiding the creation of methane via alternative manure management projects. This includes manure separators, compost pack barns, manure scrape and vacuum systems, conversion to pasture-based operations, and other practices. Through its Alternative Manure Management (AMMP) and Dairy Plus programs, the state has funded a total of 209 alternative manure management (methane avoidance) projects, more than the 142 state-funded digester projects. Estimated total annual reductions from alternative manure management projects operating to date are 252,000 MTCO2e, according to the California Department of Food and Agriculture (CDFA).

    Strategy #2: Methane Capture and Utilization – California has 168 dairy digesters operating with about 75 more projects in development. 142 of these projects received funding from the state via the Dairy Digester Research and Development Program (DDRDP). Digesters capture methane from manure storage and put it to productive use as carbon-negative transportation fuel or other renewable energy needs. Estimated total annual reductions from operating California dairy digester projects to date are 2.53 million MTCO2e, according to information from CDFA and digester developers.

    Strategy #3: Milk Production Efficiency/Herd Attrition – California dairy farms continue to shrink their environmental footprint by producing more milk (or consistent total milk volume) with fewer cows. Milk production efficiencies continue to be gained in many ways, including improved animal nutrition, selective breeding, and enhanced animal care and comfort. Overall, while total milk production has remained relatively stable, the number of dairy cows in California has continued to shrink since 2008, resulting in far fewer emissions. Estimated total annual reductions achieved to date are 2.13 million MTCO2e, based on herd numbers from the California Air Resources Board’s California Dairy and Livestock Database. These reductions are from both manure management and enteric methane (methane emitted directly from cows).

    Strategy #4: Methane-Reducing Feed Ingredients – Additionally, a newer strategy is now also being deployed to directly address enteric methane emissions. On a growing number of farms, methane reducing feed ingredients are included in feed rations, helping reduce enteric methane emissions.

    Strategy #5: Ongoing Research – Perhaps the most important strategy continues to be research. The California dairy sector supports ongoing research efforts to validate practices and identify additional strategies for further reducing methane emissions.

    Myth #2: California’s methane reduction policies are encouraging dairy farms to grow larger.

    Another harmful myth is that California’s methane reduction programs are incentivizing farms to grow larger. While it’s true that digester projects are more financially viable on larger dairies (including those that have experienced consolidation), the financial benefits of having a digester do not incentivize growth. This myth is based on the flawed assumption that dairies receive all revenue generated by a digester and therefore increase cows to increase revenues. In practice, digesters are substantial capital investments that are not financed, operated, and owned by the dairy farm. Most digesters are owned by specialized companies and investors that have access to capital, technology, and current natural gas infrastructure.

    A 2024 analysis performed by ERA Economics found there is no evidence that digesters cause consolidation. Additionally, econometric analysis of county- and state-level farm digester data provides empirical evidence that digesters are not causing consolidation. While the California dairy sector has consolidated over the last several decades, the underlying drivers for consolidation are broad and pre-date digesters. The report from ERA Economics confirms analysis performed by the California Air Resources Board, which shows no linkage between digesters and herd growth on dairy farms.

    Myth #3: CA policies encourage the creation of more methane for digester capture.

     A similar myth is that digesters encourage dairy farms to create more methane so that more energy can be created and sold. This claim is counter to how California’s digesters are designed and operated. Nearly all California dairy digesters have a covered lagoon design. On a dairy with this kind of digester, manure is collected via flushing barn floors with recycled water that is sent to a storage lagoon before being used to irrigate forage fields. Manure stored without oxygen (in wet conditions) creates methane, which is why a plastic tarp is used to cover the lagoon, capturing methane for use as an energy source.

    As solid separator (right) removes much of the manure solids before the stream enters covered-lagoon digester.

    For best maintenance outcomes, there is a critical step that occurs before the stream enters the lagoon: separating out much of the solids via a manure separator. Installation of a mechanical separator is typically part of every farm’s digester project investment. Reducing the amount of solids that enter the lagoon reduces the amount of methane that is created and available for capture. However, it also helps prevent solids from building up in the lagoon, reduces odors, and minimizes the need for costly lagoon cleanouts. Therefore, digester projects technically use both the methane avoidance and methane capture strategies, to most effectively manage manure and reduce emissions.

    Myth #4: California dairy farms operate without regulation.

    A final myth is one that is sometimes claimed by opponents of dairy farming or uniformed media outlets: that California’s dairies operate with little to no regulation. This could not be further from the truth. California dairies operate under the strictest environmental regulations in the nation and must comply with the nation’s most stringent air quality protection rules. Dairies are already subject to multiple environmental permits and regular inspections by regional water quality authorities, regional air agencies, and county land use authorities. Each California dairy and cattle operation submits extensive, detailed reports on their operations to state authorities on an annual basis. While California’s dairies are not currently directly regulated for methane emissions, they are doing their part to voluntarily meet the state’s target for a 40% reduction by 2030. The state’s dairy methane reduction programs (DDRDP, AMMP, and Dairy Plus) are persistently over-subscribed with farm applications.

    Fact: Despite misrepresentations, dairy farmers remain dedicated.

    Dairy farmers continue to participate in important conversations about the environment, and more importantly, they continue to take action to reduce emissions. By correcting misinformation and busting harmful myths, their world-leading efforts can be better understood and supported. Achieving the full 40% reduction in dairy methane emissions by the 2030 target is within reach if additional funding is made available to continue the state’s successful programs.

    California’s dairy farmers are committed to doing their part to reduce methane in ways that benefit local communities.