Tag: Hull Split

  • Precision Timing Critical for Managing Hull Rot

    With this season’s hull rot treatment window now behind growers, recent research shared by UCCE advisors offers timely guidance for evaluating disease pressure this year and planning more precise management decisions next season. Hull rot remains one of the more frustrating and yield-limiting diseases in California almonds, particularly because its full impact is not always visible in the year it occurs. The research is helping clarify where growers should focus their efforts, especially as the disease complex evolves and growing conditions continue to favor new pathogens.

    Mohammad Yaghmour, orchard systems advisor in Kern County, has been closely tracking changes in the organisms responsible for hull rot. While the disease has long been associated with Rhizopus stolonifer and Monilinia species, the increasing presence of Aspergillus niger is shifting both how the disease develops and how it needs to be managed in the orchard.

    Hull rot follows a classic disease triangle, requiring a susceptible host, a pathogen, and the right environmental conditions. What makes this disease particularly challenging is that all three components are often present at hull split, when almonds are physiologically vulnerable and environmental conditions can favor fungal growth. Infection begins in the hull, but the most damaging effects appear later as the fungus moves into the fruiting wood. Leaves surrounding infected nuts dry rapidly, and the spurs that would produce next year’s crop are killed. In severe cases, entire shoots can be lost.

    This delayed impact is critical. Yield losses are not just tied to visible infection but to the loss of next year’s bearing wood. Research conducted across multiple orchards showed that yield reductions become meaningful once strike levels reach roughly one hundred per tree. At that point, the cumulative loss of spurs begins to reduce the productive capacity of the tree in the following season.

    One of the most important takeaways from this work is that not all hull rot is the same. Each pathogen behaves differently and requires different management timing. Monilinia, which also causes brown rot during bloom, infects earlier and must be managed weeks before hull split. In contrast, both Rhizopus and Aspergillusare primarily driven by inoculum originating in the soil, and infections occur at or shortly after hull split.

    The rise of Aspergillus niger is particularly important for growers in warmer production areas. This pathogen thrives under higher temperatures and has become increasingly common in Kern County before spreading more broadly across the Central Valley. Its symptoms differ subtly from those of Rhizopus. Instead of the gray, fuzzy growth commonly associated with Rhizopus, Aspergillus produces darker, flatter, jet-black spores. It can also lead to internal damage, including black streaking in wood due to toxin production, which contributes to spur and shoot death.

    Understanding when infection occurs has helped refine management recommendations. Research shows that almonds are most susceptible during early hull opening, particularly when the split is still narrow. That window—when the hull has just begun to open—is where infection severity is often highest for Aspergillus. This underscores why spray timing is so critical. Missing that narrow window can significantly reduce the effectiveness of control measures.

    Variety also plays a role. Nonpareil, Butte, and Sonora have shown higher susceptibility, while Monterey and Fritz tend to be less affected under similar conditions. In mixed plantings, this means growers should expect greater risk in Nonpareil blocks and manage accordingly, prioritizing inputs where the return on protection is highest.

    Cultural practices continue to play an essential role in reducing disease pressure. Excess nitrogen has been shown to increase susceptibility, likely by promoting lush growth that favors infection. Careful nitrogen management can reduce that risk. You can learn more about nitrogen management at Almonds.org/NutrientManagement. Similarly, irrigation practices influence disease development. Strategic deficit irrigation has been linked to reduced incidence of Rhizopus, while excessive soil moisture during hull split can increase disease pressure.

    Dust management is another overlooked but important factor. Because Aspergillus and Rhizopus originate in the soil, any activity that creates dust can move spores into the canopy. Equipment traffic during hull split can unintentionally increase inoculum pressure at the exact time tissues are most vulnerable. Reducing dust during this period can help limit infection.

    Fungicides remain a valuable tool, but they are not a standalone solution. Their effectiveness depends heavily on correct timing and proper pathogen identification. Materials in several FRAC groups have shown strong performance when applied at the early stages of hull split. However, applying them too early or too late significantly reduces their value. In most cases, hull split sprays for disease management can be aligned with navel orangeworm treatments, helping to streamline operations.

    For growers, the message is clear: while the opportunity for in-season treatment may have passed, hull rot management is less about any single treatment and more about matching the right tool to the right moment. By using this season’s observations to scout for disease pressure, identify the pathogen involved and plan ahead for precise spray timing, balanced nitrogen, careful irrigation and dust reduction, growers can better protect the fruiting wood that supports next year’s crop and build more resilient orchard systems over time. — Story contributed by the Almond Board of California

  • Blue Diamond Releases Early June Crop Report

    California’s Central Valley experienced variable weather conditions during May, with wide temperature swings serving as the norm for the period, punctuated by a few days of rain.

    Daily maximum temperatures ranged from the lower 60’s to nearly 100 degrees during the month, while minimum temperatures exhibited more stability, ranging from the lower 40’s on the chilliest mornings to mid-50’s under “balmier” conditions. Brisk winds also blew through the orchards on several days during the month, with sustained speeds at double digit levels and gusts reaching over 20 mph. While skies were clear and dry on the majority of days, late season storms in the opening and closing days of the period brought measurable rain to much of the Central Valley. Rainfall totals were generally limited to a few hundredths of an inch. However, the final storm of the month proved more vigorous. While most areas reported receiving from .25 to .60 inch of rain, a particularly strong cell passing over Yolo County dropped over an inch of rain near the community of Davis.

    May 2026 continued the pattern of late-spring storm systems that began in April. Grower activities were largely focused on vegetation management, fertilization, and irrigation, which was offset by adequate rainfall in some cases. While the wet conditions have increased concerns for fungal infections on the foliage and developing nuts, most growers feel that they have adequate protection provided by previous treatments. The rain events have limited the expansion of web-spinning mites and observers are reporting that the orchards are in generally good condition in all areas of the valley. Areas with the strongest winds experienced some blown-over trees, broken branches, and nut loss. However, losses have been minimal.

    Kernels in all varieties became fully solidified during the month, providing the first confirmation of the crop maturity since the completion of the bloom. There is now strong solidarity that the crop is running approximately 10 days ahead of “normal” in all areas. While June temperatures can influence exact timing, many believe the hull split will follow the current advanced timing, with the split in advanced examples of early maturing varieties expected during the week of June 21.

    As May concludes, many growers were winding down applications of fertilizer materials, and mowing vegetation in the orchard middles to manage the orchard floor in advance of the upcoming harvest. Growers whose orchards have high populations of almond feeding ants have begun the earliest treatments using bait formulations to target them. Some of these materials require several weeks to effectively reduce the ant populations and need to be applied as much as eight weeks prior to harvest.

    Growers and their pest control advisers, (PCAs), have been monitoring orchards for signs of leaffooted plant bugs and stink bugs. Brown spot, the damage resulting from the feeding of these insects on the developing nuts has been increasing for several years. Pheromones have been developed and are being tested in orchards to combat leaffooted plant bugs as PCAs work with university researchers to develop protocols for implementation. Growers have treated increasing populations of these insects where warranted.

    Growers have also begun preparations for hull split treatments to control navel orangeworm (NOW). In anticipation of the advanced timing this year, growers are shifting their attention to spotting the discoloration and splitting of blank nuts at the top of the orchard canopy and along the tree rows at the edge of the orchards. These blanks (nuts that formed a hull and shell but were not fertilized during the bloom and have no kernel) split approximately ten days ahead of the sound nuts that contain almond kernels. These serve as a signal of the approaching hull split. By monitoring the split of blank nuts, growers and their pest control advisers can fine tune treatment timing during the split to optimize control.

    Low and minimal care orchards, as well as abandoned plantings, are present in all areas. Pest management programs have grown complicated for many growers managing plantings near abandoned/low care orchards due to adult NOW moths moving into their orchards to lay eggs on the splitting hulls. Orchard sanitation (the reduction of NOW residing within the orchards) is the foundation of NOW management. NOW adults migrating from nearby sources have created significant financial hardship and mounting frustration for growers in recent years. — Story contributed by Blue Diamond Growers

  • New Technology is Helping Nut Growers Spray More Effectively – Especially at Hull Split

    SPONSORED CONTENT

    In California’s Central Valley, timing and precision are everything—especially during Hull Split, the most critical spray window of the season for nut growers. With the pressure on and no room for error, visibility into spray performance can make the difference between a successful season and significant crop losses.

    That’s where Fieldin comes in.

    A Fresno-based company with over a decade of experience serving nut growers, Fieldin has established itself as the gold standard in smart farm operations. With more than 300,000 acres of nut orchards under management, Fieldin’s platform helps growers streamline everything from spraying to mowing and harvesting, delivering actionable insights that improve efficiency and reduce costly mistakes.

    Now, Fieldin is expanding its value with cutting-edge spray monitoring technology, just in time for Hull Split.

    Introducing Remote Flow Monitoring

    Through a new partnership with ARAG and PAS, Fieldin now offers real-time flow monitoring that gives growers precise, in-the-moment visibility into their spray operations. This technology eliminates the guesswork around what was applied and how much, allowing farm managers to make data-driven adjustments on the fly.

    “The Hull Split spray is the most important of the season,” says Iftach Birger, Co-Founder and COO of Fieldin. “And when poor coverage means poor control, the risk of significant losses is real.”

    Research shows that three factors drive Hull Split spray performance: spray speed, GPA (gallons per acre), and canopy size. With Fieldin’s Remote Flow Monitoring, growers gain live visibility into both spray speed and GPA—the two most critical metrics for Hull Split accuracy—without needing to replace existing equipment or disrupt current workflows.

    Real-Time Visibility, Real-World Results

    Many growers rely on maps or assumptions to confirm their sprays. But these can be deceiving. In one case, Fieldin’s coverage maps indicated a block was fully treated—but flow data revealed the spray rate dropped near the end, leaving key sections under-treated. In another case, a 20% drop in application rate went undetected until Fieldin’s flow monitoring flagged it in real time.

    Without this technology, those issues would have gone unnoticed until it was too late, leading to reduced pest control, weakened nut quality, and potentially a second costly pass.

    Fieldin’s solution changes that. With Remote Flow Monitoring, managers can:

    • Verify coverage and GPA targets in real time

    • Streamline the calibration process

    • Identify underperforming machines or crews (e.g., RPM issues or clogged nozzles)

    • Avoid missed applications and unnecessary re-sprays

    • Protect yield, quality, and long-term resistance management

    Easy to Adopt, Built for the Field

    Best of all, the system integrates seamlessly with most sprayers and is quick to install. No major equipment changes are required, and Fieldin’s experienced team handles setup and onboarding to ensure success from day one.

    Though designed with Hull Split in mind, Remote Flow Monitoring delivers value across every spray event—from post-harvest cleanups to nutrient applications—making it a lasting investment in operational excellence.

    “We built this for real-world challenges,” Birger explains. “Growers need control and clarity, not complexity. That’s what we deliver.”

    Special Promotion for Hull Split Season

    To help new customers prepare for the Hull Split window, Fieldin is offering limited-time introductory pricing for its Remote Flow Monitoring solution.

    “This tool pays for itself quickly when you factor in the cost of a missed spray,” Birger says. “We’re here to make sure growers don’t have to take that risk.”

    To learn more or schedule a demo, visit fieldin.com.

    Follow Fieldin for more updates and in-season spray management tips:
    LinkedIn | Instagram | YouTube