Modulation of Drought-Induced Stress in Cowpea Genotypes Using Exogenous Salicylic Acid

Author:

Melo Alberto Soares de1ORCID,Costa Rayssa Ribeiro da1ORCID,Sá Francisco Vanies da Silva2ORCID,Dias Guilherme Felix1,Alencar Rayanne Silva de1,Viana Priscylla Marques de Oliveira1,Peixoto Tayd Dayvison Custódio3ORCID,Suassuna Janivan Fernandes4,Brito Marcos Eric Barbosa5ORCID,Ferraz Rener Luciano de Souza1,Costa Patrícia da Silva1,Melo Yuri Lima1,Corrêa Élida Barbosa6,Lacerda Claudivan Feitosa de7ORCID,Dantas Neto José8

Affiliation:

1. Department of Biology, Universidade Estadual da Paraíba, Campina Grande 58429-500, PB, Brazil

2. Department of Agrarian and Exact, Universidade Estadual da Paraíba, Catolé do Rocha 58884-000, PB, Brazil

3. Department of Agronomic and Forest Sciences, Federal Rural University of the Semi-Arid Region, Mossoró 59625-900, RN, Brazil

4. Field Education Coordination, Federal University of Amapá, Mazagão 68911-477, AP, Brazil

5. Campus do Sertão, Federal University of Sergipe, Nossa Senhora da Glória 49680-000, SE, Brazil

6. Department of Agricultural and Environmental Sciences, Universidade Estadual da Paraíba, Lagoa Seca 58117-000, PB, Brazil

7. Department of Agricultural Engineering, Federal University of Ceará, Fortaleza 60020-181, CE, Brazil

8. Academic Unit of Agricultural Engineering, Federal University of Campina Grande, Campina Grande 58429-900, PB, Brazil

Abstract

Plant endogenous mechanisms are not always sufficient enough to mitigate drought stress, therefore, the exogenous application of elicitors, such as salicylic acid, is necessary. In this study, we assessed the mitigating action of salicylic acid (SA) in cowpea genotypes under drought conditions. An experiment was conducted with two cowpea genotypes and six treatments of drought stress and salicylic acid (T1 = Control, T2 = drought stress (stress), T3 = stress + 0.1 mM of SA, T4 = stress + 0.5 mM of SA, T5 = stress + 1.0 mM of SA, and T6 = stress + 2.0 mM of SA). Plants were evaluated in areas of leaf area, stomatal conductance, photosynthesis, proline content, the activity of antioxidant enzymes, and dry grain production. Drought stress reduces the leaf area, stomatal conductance, photosynthesis, and, consequently, the production of both cowpea genotypes. The growth and production of the BRS Paraguaçu genotype outcompetes the Pingo de Ouro-1-2 genotype, regardless of the stress conditions. The exogenous application of 0.5 mM salicylic acid to cowpea leaves increases SOD activity, decreases CAT activity, and improves the production of both genotypes. The application of 0.5 mM of salicylic acid mitigates drought stress in the cowpea genotype, and the BRS Paraguaçu genotype is more tolerant to drought stress.

Funder

Paraiba State University

Publisher

MDPI AG

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