Plants (Jul 2022)

Gene Expression, Histology and Histochemistry in the Interaction between <i>Musa</i> sp. and <i>Pseudocercospora fijiensis</i>

  • Julianna Matos da Silva Soares,
  • Anelita de Jesus Rocha,
  • Fernanda dos Santos Nascimento,
  • Vanusia Batista Oliveira de Amorim,
  • Andresa Priscila de Souza Ramos,
  • Cláudia Fortes Ferreira,
  • Fernando Haddad,
  • Edson Perito Amorim

DOI
https://doi.org/10.3390/plants11151953
Journal volume & issue
Vol. 11, no. 15
p. 1953

Abstract

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Bananas are the main fruits responsible for feeding more than 500 million people in tropical and subtropical countries. Black Sigatoka, caused by the fungus Pseudocercospora fijiensis, is one of the most destructive disease for the crop. This fungus is mainly controlled with the use of fungicides; however, in addition to being harmful to human health, they are associated with a high cost. The development of resistant cultivars through crosses of susceptible commercial cultivars is one of the main focuses of banana breeding programs worldwide. Thus, the objective of the present study was to investigate the interaction between Musa sp. and P. fijiensis through the relative expression of candidate genes involved in the defence response to black Sigatoka in four contrasting genotypes (resistant: Calcutta 4 and Krasan Saichon; susceptible: Grand Naine and Akondro Mainty) using quantitative real-time PCR (RT–qPCR) in addition to histological and histochemical analyses to verify the defence mechanisms activated during the interaction. Differentially expressed genes (DEGs) related to the jasmonic acid and ethylene signalling pathway, GDSL-like lipases and pathogenesis-related proteins (PR-4), were identified. The number and distance between stomata were directly related to the resistance/susceptibility of each genotype. Histochemical tests showed the production of phenolic compounds and callosis as defence mechanisms activated by the resistant genotypes during the interaction process. Scanning electron microscopy (SEM) showed pathogenic structures on the leaf surface in addition to calcium oxalate crystals. The resistant genotype Krasan Saichon stood out in the analyses and has potential for use in breeding programs for resistance to black Sigatoka in banana and plantains.

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