Abstract

Basic leucine zipper (bZIP) transcription factors are widespread in eukaryotes, including plants, animals, fungi, and oomycetes. However, the functions of bZIPs in oomycetes are rarely known. In this study, we identified a bZIP protein possessing a special bZIP-PAS structure in Peronophythora litchii, named PlBZP32 We found that PlBZP32 is upregulated in zoospores, in cysts, and during invasive hyphal growth. We studied the functions of PlBZP32 using the RNAi technique to suppress the expression of this gene. PlBZP32-silenced mutants were more sensitive to oxidative stress, showed a lower cyst germination rate, and produced more sporangia than the wild-type strain SHS3. The PlBZP32-silenced mutants were also less invasive on the host plant. Furthermore, we analyzed the activities of extracellular peroxidases and laccases and found that silencing PlBZP32 decreased the activities of P. litchii peroxidase and laccase. To our knowledge, this is the first report that the functions of a bZIP-PAS protein are associated with oxidative stress, asexual development, and pathogenicity in oomycetes.IMPORTANCE In this study, we utilized the RNAi technique to investigate the functions of PlBZP32, which possesses a basic leucine zipper (bZIP)-PAS structure, and provided insights into the contributions of bZIP transcription factors to oxidative stress, the production of sporangia, the germination of cysts, and the pathogenicity of Peronophythora litchii This study also revealed the role of PlBZP32 in regulating the enzymatic activities of extracellular peroxidases and laccases in the plant-pathogenic oomycete.

Highlights

  • Basic leucine zipper transcription factors are widespread in eukaryotes, including plants, animals, fungi, and oomycetes

  • PlBZP32 gene belongs to a basic leucine zipper (bZIP) transcription factor family and is upregulated in zoospores, cysts, and late stages of infection

  • There are 50 bZIP transcription factors in P. litchii based on a search with the Batch CD-search tool (CDD; in NCBI) [31], while PlBZP32 is the only one containing a bZIP-PAS structure

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Summary

Introduction

Basic leucine zipper (bZIP) transcription factors are widespread in eukaryotes, including plants, animals, fungi, and oomycetes. KEYWORDS Peronophythora litchii, bZIP transcription factor, pathogenicity, peroxidase, laccase Our results showed that PlBZP32 is required for the asexual development, oxidative stress response, and pathogenicity of P. litchii.

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