Field Evaluation of a Novel Lure for Trapping Seedcorn Maggot Adults

Similar documents
Developing tools for monitoring and forecasting of onion fly Delia antiqua in Norway

Comparison of Two Yellow Sticky Traps for Capture of Western Cherry Fruit Fly (Rhagoletis indifferens) in Tart Cherry in Northern Utah 2015

Figure 1. A) Sam Malan watches wasp choice test. B) Y-tube apparatus example.

IPM Fun with Insects, Weeds and the Environment. Lesson #2 Insect IPM. The New York State Integrated Pest Management Program

Using Traps to Monitor Blueberry Fruit Fly in New Hampshire

IPM Fun with Insects, Weeds and the Environment. Lesson #2 Insect IPM. The New York State Integrated Pest Management Program

Monitoring Methods for Codling Moth Dr. Jay Brunner, WSU TFREC, Wenatchee

Effect of Trap Size on Efficiency of Yellow Sticky Traps for Sampling Western Corn Rootworm (Coleoptera:Chrysomelidae) Adults in Corn 1

Response of Males of Maruca vitrata Fabricius(Lepidoptera: Pyralidae) to. Synthetic Lures in Mauritius

CULTURE Dr. Gary C. Pavlis, Ph.D. Atlantic County Agricultural Agent

Address: 5230 Konnowac Pass Rd Address: Dept. Entomology, Barton Lab City: Wapato City: Geneva

Walk Through Trap to Control Horn Flies on Cattle

Sticky Traps for Large Scale House Fly (Diptera: Muscidae) Trapping in New York Poultry Facilities1

Traps for Monitoring Apple Pests in Ohio

Navel orangeworm biology, monitoring, and management

Season-Long Patterns of Attraction of Brown Marmorated Stink Bug to Pheromone Lures and Light Traps in Orchard Agroecosystems

SEASONAL ABUNDANCE OF A PUPAL PARASITOID, DIAPETIMORPHA INTROITA (HYMENOPTERA: ICHNEUMONIDAE)

The Hessian Fly. in Oregon L. P. ROCKWOOD

GYPSY MOTH (LYMANTRIA DISPAR) TRAPPING & TREATMENTS IN MINNESOTA 2012 UPDATE

Best Practice on the Farm

Response of Predaceous Checkered Beetles (Coleoptera: Cleridae) to Pheromone Components of Longhorned Beetles

Identifying Some Pest and Beneficial Insects on Your Sticky Cards

Integrated Pest Management. Program Planning Guide

NEW RESISTANCE- BREAKING FLY CONTROL

Fly Control in Caged Layer Buildings

Purpose: To test if the product UienOlie (onion oil) from Naturim and Agrifirm in Holland can control carrot root flies in organic carrot fields.

Insect Identification Flash Cards INTEGRATED PEST MANAGEMENT. Kindergarten & Grade 1 Curriculum Z Z I I R

Cob Flies, Megaselia spp. (Diptera: Phoridae), in Sweet Corn 1

Report of Progress 895

Identifying Some Pest and Beneficial Insects on Your Sticky Cards Leanne Pundt UConn Extension

2.1 Developing Effective Monitoring Tools For Brown Marmorated Stink Bug

Baiting European wasps: why bother? Merydyn Davison Insect Inquiries Officer Orange Agricultural Institute

Developing an Easily Used Bait Monitoring Method for Oriental Fruit Moth in Mating Disruption Orchards

Traps for Monitoring Apple Pests in Ohio

What happened to Porky?

Figure 1: Life stages of the house fly. (Photo courtesy Clemson University.) Figure 2: Black blow fly

Annex 1 to ISPM No. 26 (ESTABLISHMENT OF PEST FREE AREAS FOR FRUIT FLIES (TEPHRITIDAE)) Fruit fly trapping (200-) Steward: Walther Enkerlin

Phenology of Brown Marmorated Stink Bugs and Distribution near California Pear Orchards. (Funding provided by the Pear Pest Management Research Fund)

Prionus Mating Disruption and Trap Capture in Sweet Cherry 2011

EXPERT GUIDANCE. IMPERATIVE CONTROL. The Gentrol family of products offers an indispensable, proven arsenal that reduces call-backs.

FLY CONTROL. -on the Farm he Home ~GRICULTURE LIBRA Y. CIRGuLAXIf4~CQP AGRICULTURE LIBR CIRCULATING C

Advancements in Pest Management Monitoring for Food Processors

Identifying Moths in Traps for Sweet Corn Pests

Evaluation of Insecticide Effects on Biology of Cherry Fruit Fly. Various homeowners in Tri-Cities and Yakima, WA

Phenology of Brown Marmorated Stink Bugs and Distribution near California Pear Orchards

Colored Grain Selection by Six Pen-Raised Pheasants

Repellent property of eugenol oil against Houseflies (Musca domestica L.)

Complete Cockroach Control Protecting Reputations, Health Ratings, and Profitability

1 of 5 1/8/2017 8:09 PM

Managing Vertebrate Pests

Reducing Fly Populations on Pastured Cattle in Nebraska David Boxler, UNL, North Platte, NE

Natural Resources. Gardening & Canning

TOC. INDEX Stable Fly Management for Feedlot Cattle. Douglas D. Colwell. Take Home Message. Introduction

What environmental factors trigger a fruit fly response?

Cotton Comments OSU Southwest Oklahoma Research and Extension Center Altus, OK

Population dynamic of the flies attached to stick traps in horse stables in Shalalat, Mosul

Comparison of MON76980 (Xtendimax) and Liberty Herbicide Systems for weed control in Soybeans at Rochester, MN in SUMMARY:

Monitoring Population Trends of White-tailed Deer in Minnesota Marrett Grund, Farmland Wildlife Populations and Research Group

What Can the Bones Tell Us? Effects of Death on the Body. Effects of Death on the Body. Forensic Entomology 5/21/18

PHENOLOGY AND DISTRIBUTION OF BROWN MARMORATED STINK BUGS IN CALIFORNIA PEAR ORCHARDS

Beet Leafhopper Monitoring with Yellow Sticky Cards. Andrew Jensen, WSPC

Managing Burrowing Mammals

The Effects of Body Mass and Water Submersion on Decomposition Rates in Mice and Rats

Name of Applicant Phone Number # Mailing Address. City State Zip

A NEW ERADICATION STRATEGY FOR SMALL, REMOTE GYPSY MOTH INFESTATIONS

External Parasites of Horses

Introduction. Cover photo by John Kuczala

PERMIT TO ALLOW MINOR USE AND SUPPLY OF AN AGVET CHEMICAL PRODUCT

Forensic Entomology. Insect Life Cycles & Development

GIRL SCOUT EARTH CONNECTIONS BADGE WORKSHEET

Utah Extension IPM and Sustainable Agriculture Mini Grant Program

Comparison of Sticky Wing and Cone Pheromone Traps for Monitoring Seasonal Abundance of Black Cutworm Adults and Larvae on Golf Courses

Burrowing Rodent Management

Where now for slug control without Draza?

Evaluation of (Z )-9-tricosene baited targets for control of the housefly (Musca domestica) in outdoor situations

P artners in. Peanut Variety Tests. rogress. C. B. Godsey and W. Vaughan Department of Plant and Soil Sciences. Variety Tests.

Field Evaluations of Insecticide Modes of Action Classes for Control of Horn Flies in Nebraska

Pest animal control. Guiding principles for community groups and landowners

@farmtested. Research and Evaluation Results

2014 EVALUATION OF HOUSE FLY DEMONSTRATION. COOPERATORS: James Colby Moreland and Jody & Robin Thomas

NOVEMBER 2015 SHORT NOTE:

ENTOMOLOGY ENTOMOLOGY MUST Curriculum EXHIBIT GUIDELINES MUST COLLECTION Youth in Grades 3-5

flies BASF Pest Control Solutions The Evolution of Better Pest Control

Ground Invasion by Voles. Nebraska Extension

Purpose: To test if new kind of traps for turnip moth are easier and better to use than the normal traps which are used in Denmark.

ORIENTATION OF HYLOBIUS PALES AND PACHYLOBIUS

Previous Work on the Culture of the Cocahoe Minnow Fundulus grandis

Do, or do not, treat for mites? Pro s and Con s of. Methods

Hello. My name is. I m from. I have some very important information to share with you today about a growing problem in our community and around the

West Coast Rock Lobster. Description of sector. History of the fishery: Catch history

DEVELOPMENT AND EVALUATION OF COOL-WATER CRAWFISH BAITS. Reporting Period January 1, 2011 August 31, 2013

Vertebrate Pest Management in Pistachio Orchards. Julie Finzel Livestock and Natural Resources Farm Advisor Kern, Tulare, and Kings Counties

EFFICACY OF EAR TAGS FOR HORN FLY CONTROL IN TEXAS Ben Walker Cooperator Barry Watson Cooperator

ARTHROPODMANAGEMENT. Developmentof anew Whitefly Trap. Chang-chi Chu* and Thomas J. Henneberry INTERPRETATIVESUMMARY

Annual Report Ecology and management of feral hogs on Fort Benning, Georgia.

Inshore wrasse pot fishery What are the issues?

FACTORS AFFECTING LABORATORY PROCEDURES for EVALUATING EFFICACY of INSECT LIGHT TRAPS for HOUSE FLIES

Oops we forgot something about camp Questions to think about:

The Scientific Method

Distribution, Demographics, and Impacts of the Island Applesnail (Pomacea maculata) in South Carolina: Past, Present and Future Research Efforts

Transcription:

2006 Plant Management Network. Accepted for publication 10 April 2006. Published. Field Evaluation of a Novel Lure for Trapping Seedcorn Maggot Adults Thomas P. Kuhar, Department of Entomology, Eastern Shore AREC, Virginia Tech, Painter 23420; W. D. Hutchison, Department of Entomology, University of Minnesota, St. Paul 55108; Joanne Whalen, Department of Entomology & Wildlife Ecology, University of Delaware, Newark 19716; David G. Riley, Department of Entomology, Coastal Plain Experiment Station, University of Georgia, Tifton 31793; Jan C. Meneley, AgBio Inc., Westminster, CO 80031-2689; Helene B. Doughty, Department of Entomology, Eastern Shore AREC, Virginia Tech, Painter 23420; and Eric C. Burkness, and Suzanne J. Wold-Burkness, Department of Entomology, University of Minnesota, St. Paul 55108 Corresponding author: Helene B. Doughty. hdoughty@vt.edu Kuhar, T. P., Hutchison, W. D., Whalen, J., Riley, D. G., Meneley, J. C., Doughty, H. B., Burkness, E. C., and Wold-Burkness, S. J. 2006. Field evaluation of a novel lure for trapping seedcorn maggot adults. Online. Plant Health Progress doi:10.1094/php-2006-0606-01-br. Seedcorn maggot (SCM), Delia platura Meigen (Diptera: Anthomyiidae), can be a damaging pest of many crops including corn, bean, cucurbits, onion, and potato. Larvae injure plants by feeding and burrowing into seeds, roots, and seedlings often causing rot (Fig. 1). Other undesirable effects of SCM occur when pupae are attached to harvested plant material in crops such as onion, leading to emergence of adult flies in markets. Growers typically control SCM with the use of preventative (seed-treatment or soil-applied) insecticides. However, a highly efficacious trap for SCM adults could aid in the integrated pest management (IPM) of this pest by serving as a monitoring tool to assess pest infestation levels around fields (3,4), or perhaps, as an alternative control tactic by reducing adult populations before they can reproduce and deposit eggs in the field. Fig. 1. Damage by seedcorn maggot, Delia platura, on snap bean (photo courtesy of University of Minnesota).

White to yellow-tinted sticky cards have been shown to be an effective and efficient trap for SCM adults (1). However, olfactory stimulants such as decaying plant matter, yeast and molasses, enzymatic yeast hydrolyzate, blood and bone meal, or fish meal may be even more important than visual stimuli for attracting SCM adults (3, 4). Researchers in Japan analyzed the chemical constituents of decomposing onion pulp, and identified 2-phenylethanol and n-valeric acid as potent attractants for both seedcorn maggot and onion maggot flies (4). These compounds were synthesized into a slow-release lure (5), which was recently produced by Chemtica Internacional S.A. (San Jose, Costa Rica). In spring 2005, we conducted field experiments at four locations in the United States: (A) Painter, VA; (B) Georgetown DE; (C) Rosemount, MN; and (D) Tifton, GA to evaluate the relative efficacy of this synthetic lure to attract Delia spp. flies. The ChemTica Internacional P316 Seedcorn and Onion Maggot lures were provided by AgBio, Inc. (Westminster, CO) and shipped to each location in late March. Field trials in Virginia, Delaware, and Minnesota took place on the perimeters of snap bean fields, while the trial in Georgia took place around the perimeter of a Vidalia onion field. In the spring, just prior to planting, ten 3-5-inch yellow stick cards (Olson Products Inc., Medina, OH) were clamped to wooden stakes, which were placed around the perimeter of each field at equal distance apart such that traps were at a height of 10 to 12 inches from the ground. Every other stake (n = 5) also had a SCM lure clamped just above the sticky card. Adult Delia spp. caught on cards (Fig. 2) were counted and recorded periodically with a goal of biweekly counts for at least 3 weeks. Sticky cards were also replaced every week, or if covered with dust or insects. Mean numbers of adult SCM on each sample date were compared using Student s t-test at the ά = 0.05 level of significance. Fig. 2. Seedcorn maggot flies caught on yellow sticky cards. Results showed that sticky traps baited with lures consistently caught more (2 to 12 ) SCM flies than unbaited sticky traps (Fig. 3). The lure appeared to remain effective over time in the field with only a decrease in potency after 39 days (Fig. 3A). Although flies trapped on cards were sexed only at the Minnesota location, results indicated that both male and female SCM adults were caught on cards with a 4:1 to 2:1 male sex ratio bias on baited and unbaited cards, respectively. This lure may prove efficacious in assisting growers with IPM trapping and sampling procedures for purposes such as determining fly-free periods for planting crops such as beans (2), and pre-harvest insecticide application needs for crops such as onion. In addition, this lure may have potential for organic farming purposes or home gardeners applications where adult trapping may be the only acceptable control option for SCM and other Delia spp. populations.

Fig. 3. Mean (± SE) numbers of seedcorn maggot flies caught on yellow sticky cards placed around the perimeter of snap bean fields (A, B, C) or a Vidalia onion field (D) in April and May of 2005. At each location five of ten cards were baited with the ChemTica Internacional P316 Seedcorn and Onion Maggot lure. Asterisk indicates significant difference between baited and unbaited treatments according to Student s t-test at the ά = 0.05 level of significance.

Literature Cited 1. Broatch, J. S., and Vernon, R. S. 1997. Comparison of water pan traps and sticky traps for monitoring Delia Spp. (Diptera: Anthomyiidae) in canola. Can. Entomol. 129:979-984. 2. Hammond, R. B., and Cooper, R. L. 1993. Interaction of planting times following the incorporation of a living, green cover crop and control measures on seedcorn maggot populations in soybean. Crop Prot. 12:539-543. 3. Higley, L. G., and Pedigo, L. P. 1985. Examination of some adult sampling techniques for the seedcorn maggot. J. Agric. Entomol. 2:52-60. 4. Ishikawa, Y., Matsumoto, Y., Tsutsumi, M., and Mitsui, Y. 1984. Mixture of 2- phenylethanol and n-valeric acid, a new attractant for the onion and seedcorn flies, Hylemia antiqua and H. platura (Diptera: Anthomyiidae). Appl. Ent. Zool. 19:448-455. 5. Ishikawa, Y., Matsumoto, Y., Tsutsumi, M., Mitsui, Y., Yamashita, K., Yoshida, M., and Shirai, E. 1987. Controlled release formulation of attractant for the onion and seedcorn flies, Hylemya antiqua and H. platura (Diptera: Anthomyiidae). Appl. Ent. Zool. 22:303-309.