4.7 Article

The calcineurin-responsive transcription factor Crz1 is required for regulation of infection structure differentiation, calcium homeostasis and cell wall integrity in Alternaria alternata

期刊

POSTHARVEST BIOLOGY AND TECHNOLOGY
卷 194, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.postharvbio.2022.112064

关键词

Alternaria alternata; AaCrz1; Infection structure; Calcium homeostasis; Cell wall integrity

资金

  1. National Natural Science Founda- tion of China [31860456, 32060567]
  2. National Key R & D Pro- gram of China [2021YFD2100502-3]

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This study identifies the crucial role of AaCrz1 in the development, infection structure formation, calcium homeostasis, cell wall integrity, and virulence of the phytopathogenic fungus A. alternata.
Ca2+/calcineurin signaling pathway is crucial in regulating growth, stress response and pathogenicity of phytopathogenic fungi. However, there is little information about the downstream calcineurin-responsive zinc finger transcription factor Crz1 in Alternaria alternata, the pathogenic factors of pear black spot. Here, AaCrz1 was identified in A. alternata and its function was characterized by generating target gene knockout strains. The results showed that delta AaCrz1 was impaired in vegetative growth and spore morphology. The infection structures in the delta AaCrz1 inhibited on hydrophobic and pear wax extract coated surface. Deletion of AaCrz1 increased sensitivity to different stresses, especially the hypersensitivity to Ca2+. In addition, AaPMC1 and AaPMR1 genes were regulated by AaCrz1 in response to Ca2+ level. CFW staining indicated that the cell wall of delta AaCrz1 was damaged, and the delta AaCrz1 displayed a reduction in the expression of genes related to cell wall biosynthesis, such as chitin synthases (CHS) and beta-1,3-glucan synthase (FKS). Furthermore, AaCrz1 was involved in the full virulence of A. alternata on pear fruit. Collectively, this study suggests that identified AaCrz1 is essential for the development, infection structure formation, calcium homeostasis, cell wall integrity and virulence of A. alternata.

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