Tag: UCCE Farm Advisor

  • Prepare to Prevent an Autumn Freeze from Damaging Walnut Trees

    Autumn freeze damage in walnuts can occur when trees experience freezing temperatures prior to going into dormancy. In recent history, Sacramento Valley growers experienced this most severely in 2018, and since then, many have implemented management practices to prevent widespread damage.

    Symptoms of freeze damage can include:

    • Late leaf-out in affected limbs
    • Weak or dead terminal budwood and smaller upper limbs (mild/moderate damage)
    • Major limb death, mainly in the upper and exposed portions of the tree, and/or apparent whole tree death (severe damage)
    • Darkened or orange-tinted wood, with gray/black streaking in the cambium underneath
    • Sunburn on damaged limbs, usually on south- and west-facing sides

    This past spring (2024), growers in Sutter, Yuba, Yolo, and Tehama counties reported symptoms of freeze damage, likely from an early autumn freeze that occurred near Halloween. If you noticed any of these symptoms in your orchards this past spring or are aware of cold pockets in certain areas/fields, consider the following steps to prevent another year of freeze damage.

    Preventative management:

    Increase soil heat storage:

    1. For young trees, it’s best to cut off N applications by mid-August to prevent tender new growth that is most vulnerable to freeze damage. Also, withhold irrigation starting in early to mid-September to set a terminal bud on the trunk (Figure 2). After the terminal bud has set, resume irrigation to avoid tree stress and defoliation, without the fear of pushing tender new growth.

    2. For mature trees, cut off nitrogen (N) applications by the beginning of September. Terminal buds may set as a positive side effect of the water cutoff done ahead of harvest to avoid shaker injury.

    Increase soil heat storage:

    3. Maintain short groundcover during autumn frost season, beginning mid-October. Keeping groundcovers cut to 2 inches or less during frost season allows sunlight to reach the soil surface, increasing soil heat storage for a warmer orchard through the night. Recently cultivated soil has many air spaces, low heat storage capacity, and low heat conductivity resulting in colder minimum temperatures. The ground surface must be moist for bare ground to be the warmest (see steps 4 and 5).

    4. Trees that remain water-stressed after the heat of summer are the most vulnerable to autumn and winter freeze damage. If there has not been adequate rainfall by mid-October for young orchards, or immediately after harvest for mature orchards, begin irrigating to refill the soil profile.

    5. Water-filled spaces in the soil conduct and store more heat than empty air spaces. Once the soil profile has been refilled, the top several inches of soil are the most important for freeze mitigation and should be kept at field capacity (not saturated/ponding) if possible. Either a dry surface crust on one extreme or a frozen sheet of ponded water on the other extreme will both hinder the re-radiation of stored daytime heat during the night.

    6. Continue to actively monitor soil moisture and freeze predictions in November and December (until trees are acclimated to frost – see note below). Since freeze events are variable depending on location, monitoring each block remotely with a freeze alarm makes good sense. If a freeze is predicted and the soil is dry, irrigate to wet the soil 2 to 3 days before a freeze event to fill the air spaces so the soil will store more heat. Light irrigation to moisten a dry soil surface the morning before a freeze will help obtain the greatest heat storage for re-radiation at night (as long as there is no standing water during the freeze event).

    Active irrigation during freeze event:

    7. Some growers with the ability to actively irrigate during sudden autumn freeze events have reported success in preventing damage. With active irrigation, heat is given off as water converts from liquid to ice. This occurs during the coldest hours of the early morning of the freeze event and is the reason higher flow rates are needed to more successfully manage frost events.

      • We know from work in almonds that active frost protection with solid set irrigation can achieve as much as 4 degrees protection if your system can run 40 gpm/ac.
      • With micro-sprinkler irrigation, 1-2 degrees of warming can be achieved with at least 30 gpm/ac. 25 gpm/ac has been shown to be enough to keep sprinkler heads from freezing.

    Painting:

    8. In addition to water management, painting young trunks and shoots white can minimize damage if applied as soon as possible after a freeze. Research by UC Walnut Specialist Bruce Lampinen has shown painting after leaf fall with white interior latex paint diluted 50% with water minimizes damage to shoots and buds, especially on the south-west side of the tree. The paint moderates large day-to-night temperature fluctuations after sunny winter days.

    Treatment:

    If you suspect freeze damage occurred, cut into the branches shortly after a freeze event and check the tissue for drying or browning. Swift action in the week after a freeze event can significantly decrease damage. If you don’t paint early, painting trees after a freeze can still help decrease severe damage. Wilbur Reil, Farm Advisor Emeritus, found that when trees were painted a week after a freeze event 18% showed damage, compared with 46% damaged in the unpainted trees. Painting any parts that may be damaged should improve recovery and protect against winter sunburn of affected tissue.

    New growth typically occurs below the damaged/dead locations. Dead wood should be pruned out later in the season (mid-summer), after the tree has fully leafed out, to reduce potential colonization sites by Bot or Phomopsis. In young trees with significant freeze damage, remaining limbs or new limbs may have to be trained as new scaffolds.

    Potential causes:

    In “normal” years, the combination of short days, gradually dropping fall temperatures, and rainfall pattern allows trees to go into dormancy in a stepwise pattern (2021 and 2022 in Figure 3 below). In years where we’ve received more reports of autumn freeze damage, there have been large differences in daily high and low temperature (2020), and sudden drops to freezing temperatures prior to trees reaching full dormancy (2020 and 2023).

    As temperatures drop into the low 30s °F and days shorten, carbohydrates move from leaves to wood and starch converts to soluble sugars. Slow cooling is needed to promote starch degradation into sugars, which act as “antifreeze” to protect cells from freezing, as does adequate soil moisture, which keeps cells hydrated. When temperatures suddenly and prematurely drop below 32°F before the acclimation process is completed, carbohydrate movement is likely disrupted and trees are susceptible to freeze damage.

    Unfortunately, we do not know how many frost/mild freeze events are required to sufficiently acclimate trees in autumn. So far, growers that were previously hit hard by fall freeze events have reported success in avoiding subsequent freeze damage by having frost alarms ready and turned on by October 15, completely rehydrating trees after harvest, and actively irrigating during freeze events. Eventually, once mature healthy trees are fully dormant, they can tolerate temperatures to the low 20s °F or below. — By Clarissa Reyes, Orchards Advisor, Sutter-Yuba, Butte & Placer Counties, and Luke Milliron, UCCE Farm Advisor Butte, Glenn & Tehama Counties

  • Minimize Potential Sudden Autumn Freeze Damage in Walnut

    Damage from a sudden autumn freeze can occur when trees experience freezing temperatures prior to going into dormancy. With sudden autumn freeze damage occurring in three of the last five years, preparing for these freeze events needs to be a regular part of every walnut grower’s summer and fall orchard operations. The best approach to escape damage from a fall freeze is to have frost alarms ready and turned on by October 15, completely rehydrate trees after harvest, and actively irrigate during frost events.

    Left: Withhold irrigation until a terminal vegetative bud sets on the trunk. Right: After a severe freeze event cut into the southwest-facing trunk, looking for dark brown discoloration of the cambium. (Photos: Janine Hasey)

    Steps to prepare:

      1. Tender new growth is most vulnerable to freeze damage: prevent trees from pushing late-season growth by cutting off N applications by mid-August (young trees) or early September (mature trees).
      2. For young trees, withhold irrigation starting in early to mid-September, waiting to resume irrigation until after a terminal bud (left photo) is set on the trunk. After the terminal bud has set, resume irrigation to avoid tree stress and defoliation. For bearing trees, terminal buds usually set as a side effect of the water cutoff done ahead of harvest.
      3. Keep groundcovers cut to 2 inches or less starting in mid-October. This allows sunlight to reach the soil surface, storing heat for a warmer orchard through the night.
      4. Rehydrate trees immediately after harvest, and actively monitor soil moisture and freeze predictions (usually from mid-October through December) until trees are acclimated to frost (see note below). Trees with adequate soil moisture are better able to withstand low temperatures without damage than trees in dry soil. This is because water-filled spaces in the soil conduct and store more heat than empty airspaces. If a freeze is predicted and the soil is dry, it should ideally be wetted 2 to 3 days before a freeze event. Light irrigation to moisten a dry soil surface the morning before a frost will help obtain the greatest heat storage for re-radiation at night (if there is no ponding going into the freeze event).
      5. Some growers with the ability to actively irrigate during sudden autumn freeze events have reported great success in preventing damage. We know from work in almonds that active frost protection can achieve as much as 4 degrees of warming with solid set, 1-2 degrees with micro-sprinkler, and maybe even some benefit running a drip system.

    When do you no longer have to worry about preparing for the next freeze?

    Fully dormant mature healthy trees can tolerate temperatures to the low 20’s (°F) or below. We believe walnuts acclimate by having the first mild frost events in autumn with lows near or just below 32° F. However, we do not know how many mild freezes are required to acclimate trees in autumn. If the soil is dry ahead of the third, fourth, and maybe additional freeze events – it’s better to irrigate and be safe if you can do so. In addition, consider keeping up your freeze response program longer into fall or early winter for younger orchards with lots of current season’s growth.

    If you suspect freeze damage occurred, cut into the branches shortly after the freeze event and check the tissue for drying or browning (right photo). Sunburn after freeze can further damage tissue on the southwest side of the tree. Paint the southwest side of damaged trees with 50% diluted (1:1 water to paint) white interior latex paint. Painting up to a week after the freeze event can reduce additional damage by half or more. You can learn more about freeze recovery in our article 2020 Walnut Freeze: Road to Recovery.

    — By Luke Milliron, UCCE Farm Advisor Butte, Glenn, and Tehama Counties; Jaime Ott, Orchard Systems Advisor, Tehama, Shasta, Glenn, and Butte Counties; Janine Hasey, UCCE Farm Advisor Emerita; and Joe Connell, UCCE Farm Advisor Emeritus

  • Considerations for Almond Varietal Selection

    Planting a new almond orchard? Watch this brief interview with UCCE Stanislaus County Director & Farm Advisor Roger Duncan as he shares some considerations for varietal selection based on his recent presentation at the Tree & Vine Expo. Read more about in Pacific Nut Producer Magazine.
    Please thank this video’s sponsor Trece for their industry support.
  • Preparing Your Orchards for 2022 in the Face of Drought

    Plan for the worst, hope for the best. That’s a tough, solid, strategy as the 2021 season winds down and almond growers and PCAs look to 2022. The following are some considerations when following this strategy. Every operation is different, and growers must decide what works best for their business. Final decisions may not need to be made until early 2022, but planning ahead, given the stakes, is recommended.

    The core issue is water, with both availability and quality of concern depending on local conditions.

    The region and state start the water year (Oct-Sept) way behind on water. As of the middle of September, major reservoirs (Shasta and Oroville) serving the region and state are at 22-25% capacity, less than half of the normal storage for this time of year. The current forecast for the rest of 2021 is for equal chances for normal precipitation in the Sacramento Valley with a 70-80% chance of La Niña winter. 2020-21 was a La Niña winter. These are all predictions, not certainties, but the current precipitation outlook for the winter ‘21-‘22 is not great.

    If the drought continues, more groundwater will be pumped to keep trees alive and, if enough water is available, productive. Using moderate to low quality water (see table) can risk decreasing yield from increasing rootzone salinity and/or toxic levels of the elements chloride, boron or sodium. For most of the Sacramento Valley, groundwater quality is good to very good. However, for parts of the Colusa and Sutter groundwater basins, water quality is not so good. Irrigation water quality levels are important to planning for next year, especially if similar quality groundwater was used in 2021.

    Thresholds for 3 important irrigation water quality components based on risk to almond growth or yield reduction.

    *For a more extensive information on water quality for almond irrigation see:

    https://www.sacvalleyorchards.com/almonds/irrigation/lower-quality-water/ 

    With a worst case scenario of low/no surface water deliveries and falling well water levels, here are some thoughts to consider in planning for 2022.

    Rank orchards by potential value (net return to grower) in 2022 and future years. Possible considerations and rankings for use in farming decisions are suggested in the following table. These groupings are just examples based on UC research and the author’s experience. Orchard rankings and farming decisions should be based on local conditions and grower experience with input from PCA/CCA and nut handler.

    Orchard conditions possibly influencing net grower returns (NGR) in a drought year.

    Fall to prebloom practices can influence production potential for 2022 and could be adjusted on a per orchard basis. For example, higher cost items such as winter irrigation/salt management, potassium fertilization, preemergent herbicide and dormant sprays could be prioritized to the orchards with higher net return potential. [Orchard sanitation is also a big cost, but lack of sanitation in one orchard can mean that increased NOW, there, can spread harm and reduced net return in adjacent orchards.] Lower yielding orchards could receive less inputs this fall and/or spring, further limiting potential net income next year, depending on what is cut out or limited. Limiting inputs to orchards considered for removal could be further savings to growers.

    Hopefully, adequate rain and snow will mean that these hard choices to remove or limit orchard yield will not need to be made. In the meantime, planning ahead will make springtime decision making simpler if the weather stays dry. — By Franz Niederholzer, UCCE Farm Advisor, Colusa and Sutter/Yuba Counties

  • Bloom Season Specific Sprayer Calibration Saves Money & Time

    If your sprayer can deliver good spray coverage at hull split, with a little work it can deliver good bloom spray coverage faster and cheaper. How is this possible? With no leaves in the canopy, air movement is less restricted at bloom than hull split. Also, there is less surface area to cover at bloom than hull split so volume needed to cover the susceptible tissue per acre (Gallons per acre, GPA) are less at bloom than hull split.

    How could this work? Assuming your hull split spray set up is for 100 GPA (or more) and 2 miles per hour (MPH), at bloom you can increase ground speed, GPA and reduce power to the sprayer (less tractor engine or sprayer engine RPMs). All this means less time and diesel burned per acre and more acres per tank with no change in pest control. The exact settings should be worked out on the farm, but here are some general guidelines to use before bloom starts. [I am assuming that anyone trying this has a good knowledge of sprayer calibration. For the sake of space in the newsletter, I will not go into all the calibration details. Check the Almond Production Manual for details or call me at 530.218.2359. We do need an airblast sprayer extension publication.]

    -Increase speed and reduce RPMs. Reduce engine RPMs by 15-20% from full speed and shift up a gear or two so that tractor and sprayer speed is somewhere around 3-3.5 MPH. For a PTO sprayer delivering 540 PTO RPMs with engine RPM at 2200, the target is somewhere around 1800 RPM for the tractor engine. This is quickly checked with a GPS unit or a quick pass down a row in the orchard counting trees (2 MPH=176 ft/min, etc.).

    -Check that there will be enough upward air movement at this new speed. Readjust as necessary. Put a length of PVC pipe with a 1.5-2’ long length of flagging tape tied on the end up through the tree so that the top of the pole is roughly 3-4 feet above the top of the tree. Run the sprayer down the row with the fan on, water in the tank but nozzles turned off. Check how much the flagging tape moves as the sprayer goes by the tree? (I use the video function on my phone to capture the flag movement as the sprayer goes by.) If the tape flutters out to 45-90o off the vertical, that is enough sprayer fan air movement to give good coverage. If the flagging kicks straight up, you can speed up more and try it again until the desired 45-90 o movement is reached.

    *If you spray every-other-row (EOR) at bloom, check air movement through the tree (next section) very carefully to make sure spray gets all the way through the tree or don’t use the approach described in this article. Every-other-row spraying delivers acceptable disease control at pink bud, but ineffective on the far side of the tree from the sprayer after 40% bloom. Every row spraying gives the best possible coverage. If you do spray EOR, do it carefully.

    -Figure out the flow rate you’ll use based on your new speed and the product’s recommended GPA. Use your new tractor speed and row spacing to figure out the acres per minute you’ll cover at that speed. Using the measured acres per minute and the gallons per acre you want to spray, calculate the gallons per minute (GPM) needed from the sprayer.If you are using an air shear/electrostatic sprayer (Lectroblast, Windmill, etc.) make sure the system pressure is set to that required by the manufacturer, set the flow rate on each side of the sprayer and you are ready

    -Adjust your nozzles to favor upward movement at this new speed. The general rule is that roughly 70% of the sprayer output (GPM) should come out of the top half of the open nozzles. Because of faster ground speed, larger nozzles will be needed and/or swirl plates changed (45’s used instead of 25’s). Large nozzles (D8-12) are a better choice in my opinion as the obvious nozzle exit hole difference between a D6 and a D8 make it easier to use the right nozzle for the right job if you are using rollover nozzle bodies (Rears or Nelson) or 2-3 nozzles/vane (AirOFan). In the table at the bottom of the page is an example of how a set up might go for a sprayer with two nozzle options per location on the spray boom.

    In the orchard, place the disc/cores on the nozzle bodies that point at the tree. You may need to skip a nozzle body or two along the spray boom to make sure the spray targets the tree. For example, the first (very top) nozzle body on many sprayers basically points straight up and the second body is inches away and slightly angled into the canopy. I usually skip the top one. Lower on the sprayer you may skip a nozzle site, turning off the nozzle body. The goal with fungicide spraying is to aim high; rainwater will recycle the fungicide down through the canopy if it’s placed up high.

    -Make sure your actual flow rate matches your desired flow rate. Ground truth the sprayer output by filling it to overflowing with clean water, running it for a set amount of time (a minute or two minutes) and then refilling it with a hose attached to a flowmeter or buckets marked with gallons/quarts/pints. Calculate gallons per minute sprayed to use in the following equation to check your actual sprayer output and determine how much material to put in the spray tank:

    𝐺𝑎𝑙𝑙𝑜𝑛𝑠 𝑝𝑒𝑟 𝑎𝑐𝑟𝑒 =𝑔𝑎𝑙𝑙𝑜𝑛𝑠 𝑝𝑒𝑟 𝑚𝑖𝑛𝑢𝑡𝑒/𝑎𝑐𝑟𝑒𝑠 𝑝𝑒𝑟 𝑚𝑖𝑛𝑢𝑡𝑒

    -Double-check your coverage in the canopy. A final step in the calibration process is to check coverage with water sensitive paper either placed on poles or attached to the canopy.

    If you are interested in this bloom sprayer set up concept and want some help with the setup, please give me a call 530.218.2359.  By Franz Niederholzer, UCCE Advisor, Colusa and Sutter/Yuba Counties

    Example of nozzle selection and position on a standard airblast sprayer (Rears, AirOFan, Nelson, etc)
  • Hive Strength and Bee Health/Safety for Successful Almond Crop

    For a successful harvest, start the season strong. A large crop at harvest requires good bee activity at bloom in the orchard. The current UC general recommendation for bee hive stocking rates is 1-3 strong hives per acre. A strong hive contains at least 8 frames covered with bees, an actively laying queen, and one to two frames of brood. Where cold, rainy and/or windy conditions limit bee flight (remember the 2019 bloom?), two to three strong hives may be needed to supply enough bees to set a decent crop when narrow windows of good bee weather open up. Less than two hives per acre may be sufficient to set a good crop in extended good bloom weather (2020 bloom). Good bee weather is at least 59oF, no rain and less than 10 mph wind speed. [In general, bees begin to forage when temperatures reach 55oF, winds less than 15 MPH and it’s not raining.]

    Hive strength makes a difference in pollination activity (see graph below). The more frames covered with bees in a hive means more foraging bees and more flowers pollinated. The best possible start to the season begins with strong hives in the orchard at the start of bloom

    Average pollen collected per hive for a range of hive strengths based on frames of bees per hive over a 7 or 10 day period. Data from Sheesley and Bernard, Cal Ag, 1970 

    To ensure strong hives in the orchard as bloom starts, pollination contracts should include 1) language stating hive strength and 2) an inspection clause stating that some fraction of the hives will be opened and frames inspected by a third party at or soon after delivery to confirm if the contracted hive strength was delivered. The hive strength check should happen at or close to delivery because, as almond flowers are an excellent food source for honeybees, a four-frame hive at delivery to the orchard can become stronger as the pollination season progresses. Assessing colony strength at the end or close to the end of pollination season is not an accurate measure of the pollination activity at the start of the season when strong hives are most needed.

    Growers using lower bee stocking rates (1-2 hives/acre) in an effort to save money are the most in need of contract language stating hive strength and a hive inspection. A single 8-frame hive collects 2.5x the pollen as a 4-frame hive.

    Hive health. Where hives are located and bees treated in an orchard can impact hive health and potentially pollination performance. Hive location, availability of clean water and spray programs (materials and timings) all should be considered by growers and communicated with beekeepers. Hive placement plays a role in good bee activity across the orchard. Hives should be placed in locations where early morning sun will warm the hives and in groups in or around the orchard no more than a quarter of a mile apart.

    Bees need water and will go find it (somewhere else) if not available in your orchard. Check-in with your beekeeper to decide on location and responsibility for providing watering stations for bees in your orchard. The water stations should be protected from pesticides by covering or moving the station or changing the water, or changing after spraying. Bees can’t drink while flying and can drown trying to get to water if there is no landing site at the water source. A 5 gallon bucket with clean water and an old towel or piece of burlap draped over the bucket lip and into the water works as a bee watering site. The Almond Board of California’s most recent Honey Bee Best Management Practices is available at almonds.com/sites/default/files/2020-12/BeeBPMs_12212020.pdf

    Bees can be harmed by pesticides. Certain pesticides and practices can be particularly harmful. In particular, all/any insecticides (except B.t. products such as Dipel) should not be used at bloom. Adjuvants, particularly organosilicones, can harm bees directly and/or increase the impact of pesticides on bees and should be left out of bloom sprays. Foliar nutrients may also harm bees. Protect your bee investment; put only fungicide(s) in the spray tank at bloom.

    While both bees and fungicides are needed during bloom in Sacramento Valley almond orchards in most years, the best practices for bee health and crop set require dividing the day between time for bee activity and time for spray activity; a split shift for bees and sprayers (on spray days). This approach lets bees work and then flowers can be protected. Here’s how that works.

    The key to good hive health is keeping sprays off the daily pollen load that forager bees carry back to the hive and fed to the brood. Almond flowers release some pollen every morning as humidity drops after sunrise. This occurs for several days after the flower opens. In an orchard with good bee activity, pollen released that morning is stripped from flowers by early afternoon. Fungicide spraying shouldn’t start until then; when pollen available for the day is gone (collected by bees and flown back to the hive). There are a couple of ways to check if the pollen is gone from flowers. If the pollen gathering bees (the ones with yellow lumps of pollen on their hind legs) are just doing touch-n-go landing on flowers, those flowers don’t have pollen left and it’s OK to spray. Another method is to rub the flower anthers (the spikey structures in the center of the flower) between your thumb and fingers and then check for yellow pollen on your hands. If there is little to no pollen on your fingers, the bees have been there and gone. (Wash your “pollencheck” fingers before rubbing your eyes. Don’t ask me how I know.)

    Franz Niederholzer, UCCE Farm Advisor, Colusa & Sutter/Yuba Counties

    Almond flowers provide pollen (and nectar) that build strong hives while providing pollination leading to nut set and a good harvest for growers. The continued success of this annual win/win relationship relies on consideration of the needs of both partners. Growers need strong hives at the beginning of bloom and beekeepers need strong hives at the end of bloom.

     

    Finally, hives should be removed once 90% of the flowers in the last pollinizer variety have shed their pollen. By this time, the colonies have done their job in the orchard and most bees working the flowers will be foraging for nectar, not pollen. The majority of the pollen gathering bees will be foraging off-site and not providing pollination services to the grower who rented the hives. — By Franz Niederholzer, UCCE Farm Advisor, Colusa & Sutter/Yuba Counties

  • Pros & Cons of the Early Harvesting Golden Hills Pistachio Variety

    Many growers have probably heard of the newer Golden Hills pistachio variety by now, but it is now being more widely planted in the industry. Likewise, growers and researchers are learning more about the unique characteristics of this variety that growers should consider before planting it. Watch this brief interview with UCCE Kern County Farm Advisor Craig Kallsen, as he explains and read more about it in Pacific Nut Producer Magazine.