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Allium Leafminer Spring Flight Update

Ethan Grundberg, Vegetable Specialist
Eastern New York Commercial Horticulture

May 31, 2018

The spring flight of the new invasive insect pest, the allium leafminer, began in late April with the first confirmed activity in the Red Hook area. Adults have gradually emerged from pupae in the soil and in cull piles for the past four weeks and have been feeding and laying eggs on allium leaves during that time. The diagnostic sign of this adult feeding and egg-laying is a vertical line of dots, typically found near the tip of host crop leaves. These oviposition scars are sometimes accompanied by faint, mostly vertical lines that run down the leaf blade toward the soil. These "mines" are caused by allium leafminer (ALM) maggots feeding on the interior leaf tissue.

We are still actively studying this new pest to better guide allium growers in the region on best management practices. Here are some important updates based on that work:

1.  Not all oviposition scars are egg-laying sites: Adult females use their ovipositor (egg-laying organ) to create the small dots in the leaf tissue. Adults feed on the plant exudates that are released through those physical wounds. We are studying leaf samples from multiple allium species during the adult flight period to try to determine what percentage of those oviposition locations are, on average, active egg-laying sites versus feeding sites. What is certain at this point is that NOT ALL OVIPOSITION SCARS ARE ACTIVE EGG-LAYING SITES. That means that even if you find 20 oviposition dots on a leaf, there are likely far fewer eggs in the leaf tissue. Fewer eggs mean fewer maggots, which means less potential for significant damage to crops.

2.  I still found several adult flies in the field on Monday, May 21st. Though some adults may still be active, I am confident that we are past the period of peak flight and that there is little risk of additional egg-laying on crops at this time. THIS MEANS THAT GROWERS USING ROW COVER OR INSECT NETTING TO EXCLUDE ADULTS CAN REMOVE THEM AT THIS POINT WITH LITTLE RISK OF ADDITIONAL ALM DAMAGE. Maggots will continue to hatch from recently laid eggs and further damage crops for the next couple of weeks.

3.  We are still collaborating with the Cornell entomologist Dr. Brian Nault on insecticide efficacy evaluations of both conventional and OMRI products. We will update growers prior to the beginning of thefall flight of ALM (anticipated in mid-to-late September) with findings from those trials. If extensive maggot mining is observed, Radiant SC (spinetoram, IRAC group 5) mixed with a penetrating surfactant (such as LI 700) can be used with a 1-day Pre-Harvest Interval (PHI) on most allium crops for dipteran leafminer control. Since the maggots are inside the leaf tissue, only active ingredients with translaminar (penetrates locally through the leaf tissue where the product makes contact) or systemic (is absorbed through the leaf tissue and moved upward throughout the plant vascular system) activity will reduce damage. Contact insecticides, such as pyrethroids (IRAC Group 3A) will NOT be effective at this point.

4. We have confirmed ALM activity as far north as Schoharie and Grafton and as far east as Berkshire County, Massachusetts. ALLIUM GROWERS AS FAR NORTH AS GLENS FALLS SHOULD BE PREPARED TO PROTECT FALL ALLIUMS FROM ALM and be on the lookout for alerts from the ENYCHP team once the fall emergence in confirmed.

 If you suspect ALM activity on your farm and would like further recommendations for management, feel free to reach out to me directly at 617-455-1893 or Teresa Rusinek at tr28@cornell.edu.

 

almAdult allium leafminer fly with characteristic vertical line of oviposition feeding and egg-laying scars (Photo E Grundberg)



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Announcements

Winter Cover Cropping in High Tunnels

Cornell Cooperative Extension is researching cover crops for high tunnel growers to better manage fertility and improve soil health. Our work has shown that winter cover cropping in high tunnels has the potential to add organic matter, improve soil structure, support microbial activity, and help with nutrient management by scavenging leftover nitrogen and/or fixing nitrogen. This publication, Management Practices for High Organic Matter Soils: Winter Cover Cropping in High Tunnels, shares best practices for winter cover cropping in high tunnels including species selection, planting rates and dates, termination, and cultural management considerations.

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Are you considering the use of a laser scarecrow to deter birds on your farm? Cornell Cooperative Extension and the University of Rhode Island teamed up to test a research laser scarecrow on sweet corn farms.

A laser scarecrow is a device that has one or more laser modules connected to motors. The specifications of the lasers are optimized to the color and motion sensitivity of bird's eyes. When laser beams move across a field, birds become frightened and attempt to move away from the perceived threat. Light from the laser covers an area quickly and moves through the canopy without causing injury to the crop. Research demonstrates that birds do not readily become habituated to the laser.

A laser scarecrow used as the sole deterrent typically results in a significant reduction in crop damage. Combined with an auditory device, damage can be reduced even more. When used as part of an integrated management program for bird control that utilizes habitat management and multiple scare tactics, laser scarecrows can be useful tools for growers of multiple crops. All scare tactics must be deployed before birds find the field. The effectiveness of lasers depends on multiple factors such as bird species, bird populations, habitat and food availability. Lasers are not effective at deterring deer, racoons, coyotes or other mammals.

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