Category: Pest/Disease Management

  • Glassy-Winged Sharpshooter Outbreak in Turlock has Regional Grape Growers on High Alert

    A Glassy-Winged Sharpshooter find in Turlock back in August 2024 has led to an expanding quarantine in Stanislaus County. The primary vector for the grapevine-killing Pierce’s Disease, this insect pest is a top concern for the regional grape industry and the Stanislaus County Ag Department. At Malcolm Media’s Tree & Vine Expo in Turlock and in an interview with Matthew Malcolm on California Ag Network, Stanislaus County Ag Commissioner Linda Pinfold shared the details of the quarantine and their efforts with the community in eradicating this invasive pest from the county. Watch this brief interview and read more about it in the January issue of American Vineyard Magazine.

  • 36th Annual Fall Desert Crops Workshop, Dec. 3

    Join UCANR on December 3rd for the 36th Annual Fall Desert Crops Workshop. Get up to date on the key issues affecting desert crops in our Valley through expert-led discussions. This FREE workshop offers a valuable opportunity to stay informed, connect with others and better understand the challenges facing our agricultural community.

    Topics to be discussed:

    • Irrigation
    • Soil Salinity Mapping
    • Pest & Disease Management
    • Pesticide Use Regulations
    • Other Agricultural Issues

    To pre-register use this link or join us onsite starting at 7:30am.

    Continuing Education Units will be offered with the following agencies: (Pending Approval)

    • California Department of Pesticide and Regulation
    • Arizona Department of Agriculture
    • Certified Crop Advisor (CCA)

    If you have any questions or need additional information on workshop, contact the office at (442) 265-7700.

    Document

    See the full agenda at: 36th Annual Fall Desert Crops Workshop_Agenda

  • Stink Bugs Foul Up Central Valley Stone Fruit

    While growers hoped the invasive brown marmorated stink bug would stay out of California orchards, they seem to have taken a liking to stone fruit, along with other stink bug species, and caused problems for some growers this year. UC Cooperative Extension Fruit & Almond Advisor Raymond Mireles shared this at Malcolm Media’s recent Grape, Nut & Tree Fruit Expo in Fresno. Following his presentation, Raymond met with Matthew Malcolm on California Ag Network to explain. Watch this brief interview and read more about it in California Fruit & Vegetable Magazine.

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

  • Why Do Some of My Peaches Stay Small and Never Fully Develop?

    Have you seen “nubbins” in your orchard? During a presentation at Malcolm Media’s recent Tree & Vine Expo, UC Cooperative Extension Farm Advisor Cameron Zuber described nubbins as occasional smaller sized fruit you may find on a peach tree that never fully develops. Watch this brief interview as Zuber meets with Matthew Malcolm on California Ag Network to explain nubbins and why you might be seeing them in your orchard.

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

  • 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.”

  • CAPCA on the Rise & Role of Biologicals in Crop Protection

    Crop protection tools are becoming more and more regulated and limited in California. Biostimulants, biopesticides and biofertilizers offer more options for growers. How they fit into conventional and organic farming systems is still being investigated and how the California Department of Pesticide Regulation should treat and classify them is still in debate. The California Association of Pest Control Advisers (CAPCA) has been actively involved in the conversation though, advocating for tools for sustainable pest management. At their annual Conference, Malcolm Media Editor-in-Chief Matthew Malcolm sat down with CAPCA State Board Vice President Adam Tavares from AMVAC Chemical as he shared his perspective on where their at and priorities for the future.

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

  • Western Brassica Growers Troubled by Diamondback Moth Insecticide Resistance

    When a prevalent pest like Diamondback Moth develops insecticide resistance, pest management costs can rise astronomically for farmers and can even lead to food shortages. California Fruit & Vegetable Editor-in-Chief Matthew Malcolm met with CAPCA Board Member Kyle Kuechel from Syngenta to discuss the gravity of the situation, what growers can do to manage resistance issues, and what hope can be offered looking to the future.

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

  • 2025 Results of Pre-Emergent Herbicide Demonstration Trial for Walnut

    The 2025 UCCE walnut pre-emergent herbicide demonstration trial is completed, and the results show strengths and weaknesses of 19 different herbicide treatments, applied either in February or March.

    Takeaways:

    1. All treatments were applied with a strong post-emergent mix, but hairy fleabane and white clover were not adequately controlled with post-emergent treatments alone. Control was dependent on the addition of an ALS inhibitor herbicide (products like Craze, Matrix, or Mission).

    2. Summer annual weeds were best controlled by products with long residuals (products like Alion, Chateau, Brake On! (not registered in CA), and Prowl.

    3. Yellow nutsedge was controlled by treatments with Zeus or Craze.

    4. Conclusion: Pre-emergent treatments in late winter must account for winter annual weeds that have already emerged and perennial weeds while also maintaining good residual control further into the summer.

    Introduction

    Winter pre-emergent herbicide applications are critical to get right if yearly weed management operations are going to be successful in walnut orchards. Poor selection of herbicides or missed timing could make the difference between good control and battling an overwhelming infestation of weeds. In walnut orchards I have regularly heard two comments concerning pre-emergent herbicide applications in walnut orchards:

    1. Those who apply pre-emergent herbicides in the fall, just after harvest, tend to have the cleanest orchards.

    2. February or March are the most common times to apply pre-emergent herbicides in walnut orchards.

    Maybe my perception is incorrect, but these weed control strategies seem to be at odds. When it comes to winter annual weeds, it is likely safest to apply pre-emergent herbicides before germination due to several common weed species with herbicide resistance issues (hairy fleabane, Italian ryegrass, annual bluegrass). Applications later in the winter will have to deal with emerged weeds, potentially resulting in more escapes and misses.

    However, herbicide treatments in February or March are common, and many growers have been successful with these treatments. Why is this, and what is the key to achieving good control later in the winter? Success at later timings depends on how much post-emergent activity you are getting out of your tank mix. Some pre-emergent herbicides can contribute to your post-emergent activity. Common pre-emergent herbicides like Goal, Chateau, Matrix, Pindar, and others add some extra post-emergent activity to tank mixes when used in winter months. Dr. Brad Hanson (UCCE Weed Specialist at UC Davis) discussed this topic when he addressed tank mixes of Alion and Matrix in his UC Weed Science Blog article (linked here). My recent work with rimsulfuron on established johnsongrass also explored this subject (linked here). These prior discussions focused on rimsulfuron products as tank mix partners for pre-emergent applications, but I wanted test a broader range of products applied in February and March. This year’s walnut preemergent herbicide demonstration made some progress toward that goal.

    I will discuss my findings next, and at the end of this article I have included results tables. All products except one are currently labeled for use in walnut orchards, though with some restrictions on orchard age. The one unlabeled product in this study was Brake On!, manufactured by SePRO, currently pending registration in CA. This is not an exhaustive list, and the data provided here does not constitute a recommendation of any product.

    Trial design

    In 2025, I arranged my pre-emergent demonstration trial to evaluate individual products and tank mixes for weed control efficacy when applied in February and March. This trial was installed in the Loybas Hill region of Tehama County, in a 4-year-old walnut orchard with Tehama silt loam soil. A post-emergent mix of 2 qt/A Roundup Powermax 3 and 2 qt/A Rely 280 was added to every plot in February, and pre-emergent herbicides were applied either in the mix, or one month later in March. The tables at the end of this article show the full list of treatments and when they were applied. The first table represents weeds that were present at application, hairy fleabane and white clover. The second represents weeds that grew to be prominent in May and June, so their control depended on residual activity from my herbicide treatments lasting long into the summer.

    Results overview

    White Clover and Hairy Fleabane (Table 1): Both weeds were controlled by all three group 2 herbicides tested: Craze, Revolt, and Mission. Revolt was weaker on fleabane while Craze was weaker on clover and these differences also showed up in the tank mix treatments with both products applied with Prowl. February and March treatments with these three herbicides produced very similar results. The 12 fl oz/A rate of Chateau also effectively suppressed both species.

    Summer annual weeds (Table 2): The primary weeds in the categories recorded here were grass weeds (jungle rice and large crabgrass) and broadleaf weeds (prostrate knotweed, spurge, and pigweed). Many herbicides provided good control until June (3-4 months after treatment) but only Alion, Brake on! (not currently labeled for CA), and March-applied Mission maintained “good” control of broadleaves through July. Only Alion and Prowl maintained “good” control of grasses through July.

    Yellow Nutsedge (YNS; Table 2): Zeus was the best tested product for nutsedge control, but Craze also showed some effects in July by keeping nutsedge coverage low. Rimsulfuron products like Matrix and Revolt are also labeled for YNS control, but labels suggest sequential applications, and the application timings used in this trial may not have been ideal to target YNS with this product.

    Summary and cautions:

    This is a single trial only representing one weed population and one soil type, so results may vary by location. However, hopefully this demonstrates the importance of tank mixing to control emerged weeds as well as future emergence. Group 2 herbicides like Revolt, Mission, and Craze can provide good post-emergent control in addition to their pre-emergent activity. But be cautious, this herbicide group is notorious for herbicide resistance. Do not overuse this class of herbicides or you will likely start seeing weeds escaping your treatments.

    Look through the following tables if you are interested in seeing more information on efficacy in these trials. To see weed coverage data, view the report on the UCCE Tehama website here. Thanks to the California Walnut Commission for supporting this work. For any questions or additional information, contact Ryan Hill at 530-527-3101 or rjahill@ucanr.edu. — By Ryan Hill, UCCE Agronomy and Weed Science Advisor, Tehama County

    Weed control tables:

    Control was determined by calculating % reduction in weed coverage, relative to the plot with the worst infestation. Control is summarized by four categories. These categories may not represent each grower’s threshold of tolerance for weed control, but they can still provide relative comparisons between the products tested.

    Poor control is indicated by a “p”, representing control between 0 and 50%.

    Moderate control is indicted by an “m”, representing control between 50 and 70%.

    Good control is indicated by a “g” and highlighted light green, representing control between 70 and 90%.

    Excellent control is indicated by an “e” and highlighted dark green, representing control between 90 and 100%.

    Table 1: The effect of different pre-emergent herbicides on two weeds that were present at application, hairy fleabane and white clover.

    Table 2: The effect of different pre-emergent herbicides on weeds that germinated or sprouted in summer. Summer annual broadleaves included prostrate spurge, knotweed, and pigweed and summer annual grasses were primarily crabgrass and jungle rice.

  • How to Effectively Control Rats on California Farms in a State of Emergency

    Rats have taken an unusual interest in the specialty crop capital of the nation. Many attribute the cause to the pest multiplying unchecked in orchards and vineyards in the Central Valley that have been abandoned due to water restrictions and economic challenges. This becomes a real problem when the rats move into neighboring farms in active production, tearing up driplines, feeding on crops and damaging trees. Growers are in a state of emergency and have limited tools for managing this pest.  Malcolm Media Editor-in-Chief Matthew Malcolm met with UCCE Wildlife Specialist Roger Baldwin at the California Association of Pest Control Adviser’s annual conference to gain answers on how to knock down populations effectively and keep the pest at bay.  Watch this brief interview and learn more by attending Baldwin’s presentation on rat control at the Grape, Nut & Tree Fruit Expo at the Fresno Fairgrounds on Nov. 14 (register to attend at agexpo.biz).

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

  • Meat Institute Joins the Alliance to Stop Foodborne Illness

    The Meat Institute announced it has joined the Alliance to Stop Foodborne Illness, expanding its access to food safety best practices and other efforts to prevent foodborne illness on behalf of meat and poultry companies.

    The Alliance to Stop Foodborne Illness is a nonprofit program of Stop Foodborne Illness. It brings together consumer advocates, leading companies, and like-minded organizations committed to the goal of preventing foodborne disease. The Alliance comprises 20+ members from around the globe working together to share best practices and advance food safety culture.

    “Our members heard from Christopher George, a Stop Foodborne Illness constituent, at our recent Food Safety Conference in Kansas City,” said Meat Institute President and CEO Julie Anna Potts. “His personal testimony about his son nearly dying from contracting E. coli O157:H7 was a powerful reminder of the life-or-death consequences of all we do to protect against foodborne illness.”

    Stop Foodborne Illness works to amplify compelling personal stories, like George’s, about the impact of foodborne illness to motivate people at all levels to do the right thing every day to make food safe. The Meat Institute’s membership in the Alliance will help the Meat Institute collaborate and share best practices which then helps Meat Institute members with continuous improvement and to further establish a culture of food safety at their companies. An example of the important work conducted by the Alliance is its Food Safety Culture Toolkit, a free resource library of video testimonials from impacted consumers, interactive games, and customizable communication and assessment tools.

    This is the latest in a series of tangable initiatives led by the Meat Institute to re-emphasize food safety as a top priority for its members. Earlier this year, a task force was created to build a set of tools and templates for top company executives to use in governing and promoting a food safety culture.

    The Meat Institute will offer programming and training on these tools for senior executives at the “Protein PACT Solutions Summit” in October. To learn more and to register go here.

    The Meat Institute is also working on new industry guidance on Listeria control called the “Foundations of Listeria Control,” to be published later this month.

    Continuing the conversation from the Food Safety Conference, the Meat Institute is offering a Food Safety Exchange Series designed to provide ongoing education and insight on the critical issues shaping food safety.

    In addition, the Meat Institute offers the “Advanced Listeria monocytogenes Intervention & Control Workshop” twice a year with the next held October 22-23, in Kansas City, MO.

    About the Meat Institute
    The Meat Institute represents the full community of people and companies who make the majority of meat American families rely on every day. The Meat Institute’s hands-on regulatory and technical expertise, proactive advocacy, unique convening power, collaboration within and beyond animal agriculture, and sector-leading continuous improvement initiatives drive relationships and resources that ensure meat continues to be a vital, trusted pillar of healthy diets and thriving communities for generations to come. To learn more, visit: MeatInstitute.org.