Peanut drought tolerance and yield enhanced by new Brazilian Bradyrhizobium strains

Authors

  • Universidade Estadual da Paraíba, Campina Grande, PB.
  • Geisenilma Maria Gonçalves da Rocha Universidade Estadual da Paraíba, Campina Grande, PB.
  • Laysla Lopes Nunes Laysla Lopes Nunes Universidade Estadual da Paraíba, Campina Grande, PB.
  • Mirandy dos Santos Dias Universidade Federal de Campina Grande, Campina Grande, PB.
  • Jonnathan Whiny Moraes dos Santos Universidade Estadual da Paraíba, Campina Grande, PB.
  • Pedro Dantas Fernandes Universidade Federal de Campina Grande, Campina Grande, PB.
  • Tarcísio Marcos de Souza Gondim Embrapa Algodão, Campina Grande, PB.
  • Liziane Maria de Lima Embrapa Algodão, Campina Grande, PB.
  • Paulo Ivan Fernandes-Júnior Embrapa Semiárido, Petrolina, PE.

Keywords:

Biological nitrogen fixation, drought stress, rhizobial inoculants, stress-relieving bacteria

Abstract

The objective of this work was to identify a new Bradyrhizobium strain from Arachis duranensis and to evaluate the effects of different bradyrhizobia strains on the performance of two peanut cultivars under conditions of full irrigation and water stress. The ESA 599, ESA 87, ESA 123, and SEMIA 6144 bacterial strains, as well as the BRS 421 OL and BRS 423 OL peanut cultivars, were evaluated. Strain ESA 599 was identified by the 16S rRNA gene sequence analysis and showed less than 96% of similarity to the closest type strain. Plant growth, nodulation, and gas exchanges were evaluated. Strain ESA 599 is phylogenetically distant from the known type strains, suggesting that it is a member of a new lineage from the Brazilian drylands. The ten-day withholding water period impairs the development of both BRS 421 OL and BRS 423 OL cultivars. The inoculation of ESA 123 and ESA 599 enhances plant growth and gas exchanges parameters, especially when there is no water deficit. The inoculation of ESA 123 and ESA 599 benefits differentially the peanut cultivars in the field, indicating a genotypic interaction between macro- and microsymbionts.

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Published

2025-11-03

How to Cite

José Edson Lourenço dos, Rocha, G. M. G. da, Nunes, L. L., Dias, M. dos S., Santos, J. W. M. dos, Fernandes, P. D., … Fernandes-Júnior, P. I. (2025). Peanut drought tolerance and yield enhanced by new Brazilian <i>Bradyrhizobium</i> strains. Pesquisa Agropecuaria Brasileira, e04109. Retrieved from https://apct.sede.embrapa.br/pab/article/view/28152

Issue

Section

COP30: MICROBIOLOGY