Skip to main content
ARS Home » Southeast Area » Poplarville, Mississippi » Southern Horticultural Research » Research » Research Project #434790

Research Project: Enhancing Sustainability and Efficiency of Nursery Production in the Southeast U.S

Location: Southern Horticultural Research

Project Number: 6062-21430-004-028-S
Project Type: Non-Assistance Cooperative Agreement

Start Date: Jul 8, 2018
End Date: Jul 7, 2023

The overall objective is to enhance the sustainability and efficiency of the regional nursery industry in the U.S. by removing entomological, pathological and cultural barriers to efficient, sustainable production of woody ornamental nursery crops. Specifically, we will investigate the biology, ecology and behavioral traits of ornamental pests, such as flathead borers and ambrosia beetles, and associates to improve management recommendations, investigate lower risk products and techniques to manage ornamental pests, evaluate insecticide efficacy in alternative substrates for container grown nursery crops, evaluate chemical and non-chemical weed management practices for nursery crop production and propagation, evaluate the efficacy of chemical and biorational products for controlling soil-borne diseases with different application methods, intervals and reduced-rate applications in woody ornamentals, and develop improved soil-borne disease management strategies based on cultural approaches for suppression of Rhizoctonia and (or) Phytophthora spp. and other soil-borne pathogens.

Research will be performed that improves management of trunk-attacking wood borers in commercial nurseries by developing treatments that lower producer costs, improve treatment efficacy, are safer for farm labor, and enhance sustainability while still integrating into existing production systems. Research will focus on: 1) development of new insecticide treatments and rates for flatheaded borers and ambrosia beetles, 2) cultural techniques to reduce attacks, 3) manipulation of borer behavior with traps and other attractants to prevent attacks, and 4) development of better phenological and degree-day predictors of borer activity to better time treatments and scouting activity. Another indirect goal of the above methods will be expansion and development of treatments that minimize impacts on other beneficial insects like pollinators and biological control agents. Alternative container substrate components (compost, wood chips, etc.) will be combined with pine bark at varying proportions and treated with insecticides (granular and drenches) to evaluate efficacy for controlling Japanese beetle larval development and imported fire ant. New practices (drench volume, application rates, application methods) will also be developed to maximize insecticide efficacy in these substrates. Fungicides and biorational products will be evaluated for ability to control soil-borne diseases (Rhizoctonia solani, Sclerotinia spp. and Phytophthora spp.) under greenhouse conditions. The experiment will be established at the Tennessee State University, Otis Floyd Nursery Research Center in McMinnville, Tennessee, as a randomized complete block design with four replications. 4 in. pots containing sterilized soil will be artificially inoculated with each pathogen. Treatments will be applied per label requirements and fallowed by different application methods (dip, spray or drench), intervals (7, 14 or 21 days) and reduced rate. Hydrangea and maple cuttings will be propagated in fall and disease occurrence and incidence will be evaluated throughout the experiment. Cuttings will be evaluated for root development and disease severity on root at the end of the experiment. Based on greenhouse experiment outcomes the PI will select a subset of treatments to be evaluated at field conditions. Cultural approaches include crop rotation/cover crop (Arugula and/or clover), good quality compost amendment, solarization will be evaluated for soil-borne diseases (Rhizoctonia solani, Sclerotinia spp. and Phytophthora spp.) under field conditions. The experiment will be conducted as a randomized complete block design with four replications. Plots will be artificially inoculated with each pathogen then each cultural approach will be applied to raised beds. Plots will be irrigated as needed. Hydrangea and maple cuttings will be planted in spring and disease occurrence and incidence will be evaluated throughout the trial.