Field Evaluation of Cucurbita Germplasm for Resistance to Whiteflies and Whitefly-transmitted Viruses

Author:

Luckew Alexander1,Meru Geoffrey2,Wang Ya-Ying3,Mwatuwa Rodrick3,Paret Mathews4,Carvalho Renato4,Kalischuk Melanie5,Ribeiro da Silva Andre Luiz Biscaia6,Candian Joara1,Dutta Bhabesh7,Srinivasan Rajagopalbabu8,Kavalappara Saritha Raman8,RRD Naga Charan Konakalla7,Bag Sudeep7,McGregor Cecilia1

Affiliation:

1. Department of Horticulture, University of Georgia, Athens, GA 30602

2. Horticultural Sciences Department, University of Florida, Gainesville, FL 32611; and Tropical Research and Education Center, University of Florida, Gainesville, FL 32611

3. Horticultural Sciences Department, University of Florida, Gainesville, FL 32611

4. Department of Plant Pathology, University of Florida, Gainesville, FL 32611

5. Department of Plant Pathology, University of Florida, Gainesville, FL 32611; and Department of Plant Agriculture, University of Guelph, Guelph, Ontario N1G 2W1, Canada

6. Department of Horticulture, University of Georgia, Athens, GA 30602; and Department of Horticulture, Auburn University, Auburn, AL 36849

7. Department of Plant Pathology, University of Georgia, Athens, GA 30602

8. Department of Entomology, University of Georgia, Athens, GA 30602

Abstract

Summer squash (Cucurbita pepo L.) is a major vegetable crop produced in Georgia and Florida during the fall season. This production is vulnerable to whitefly (Bemisisia tabaci Genn.)-transmitted viruses that lead to severe yield losses. Over the past several years, whitefly populations have increased during the fall, thus leading to an increase in whitefly-transmitted viruses such as Cucurbit leaf crumple virus (CuLCrV) and Cucurbit yellow stunting disorder virus (CYSDV). Whitefly management for summer squash relies on the use of insecticides and can be costly without providing adequate management of the viruses. Deployment of host resistance to whiteflies and their transmitted viruses (CuLCrV and CYSDV) is the best strategy for mitigating yield loss of summer squash; however, no resistant cultivars are commercially available. In the current study, resistance or tolerance to whiteflies, CuLCrV, and CYSDV was determined for squash germplasm from the U.S. Department of Agriculture (USDA) Germplasm Resources Information Network (GRIN), university breeding programs, and commercial companies in Georgia and Florida across 2 years. In both locations and years, visual virus symptom severity scores were collected and a quantitative polymerase chain reaction (qPCR) was used to determine the CuLCrV viral load and CYSDV presence in Georgia. Whitefly-induced feeding damage was evaluated by directly assessing the intensity of silverleaf symptoms and visual counts of whitefly adults on the foliage in the field or in photographs. Virus symptom severity was lower in C. moschata Duchesne ex Poir. genotypes, namely, PI 550689, PI 550692, PI 550694, PI 653064, and Squash Betternut 900, than in other evaluated genotypes. Two C. pepo accessions were common between both locations for viral severity (PI 442294) or viral severity and viral load (PI 171625). Lower CuLCrV loads were identified in C. ecuadorensis Cutler & Whitaker (PI 540895), and C. okeechobeensis (Small) L.H.Bailey (PI 540900) than other evaluated genotypes. Four genotypes tested negative for CYSDV during both years: C. pepo (PI 507882), C. moschata (PI 483345), C. ecuadorensis (PI 390455), and C. okeechobeensis (PI 540900); they are potential sources of resistance. Six C. moschata accessions (PI 211999, PI 550690, PI 550692, PI 550694, PI 634982, and PI 653064) showed high tolerance to silverleaf disorder and had the lowest adult whitefly counts. Collectively, the accessions identified in the current study are potential sources of resistance or tolerance to whitefly and whitefly-transmitted viruses (CuLCrV and CYSDV).

Publisher

American Society for Horticultural Science

Subject

Horticulture

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