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A Single Nucleotide Mutation in Adenylate Cyclase Affects Vegetative Growth, Sclerotial Formation and Virulence of Botrytis cinerea

Botrytis cinerea is a pathogenic fungus that causes gray mold disease in a broad range of crops. The high intraspecific variability of B. cinerea makes control of this fungus very difficult. Here, we isolated a variant B05.10(M) strain from wild-type B05.10. The B05.10(M) strain showed serious defec...

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Autores principales: Chen, Xue, Zhang, Xiaohong, Zhu, Pinkuan, Wang, Yiwen, Na, Yantao, Guo, Han, Cai, Yunfei, Nie, Haozhen, Jiang, Yina, Xu, Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7215688/
https://www.ncbi.nlm.nih.gov/pubmed/32326350
http://dx.doi.org/10.3390/ijms21082912
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author Chen, Xue
Zhang, Xiaohong
Zhu, Pinkuan
Wang, Yiwen
Na, Yantao
Guo, Han
Cai, Yunfei
Nie, Haozhen
Jiang, Yina
Xu, Ling
author_facet Chen, Xue
Zhang, Xiaohong
Zhu, Pinkuan
Wang, Yiwen
Na, Yantao
Guo, Han
Cai, Yunfei
Nie, Haozhen
Jiang, Yina
Xu, Ling
author_sort Chen, Xue
collection PubMed
description Botrytis cinerea is a pathogenic fungus that causes gray mold disease in a broad range of crops. The high intraspecific variability of B. cinerea makes control of this fungus very difficult. Here, we isolated a variant B05.10(M) strain from wild-type B05.10. The B05.10(M) strain showed serious defects in mycelial growth, spore and sclerotia production, and virulence. Using whole-genome resequencing and site-directed mutagenesis, a single nucleotide mutation in the adenylate cyclase (BAC) gene that results in an amino acid residue (from serine to proline, S1407P) was shown to be the cause of various defects in the B05.10(M) strain. When we further investigated the effect of S1407 on BAC function, the S1407P mutation in bac showed decreased accumulation of intracellular cyclic AMP (cAMP), and the growth defect could be partially restored by exogenous cAMP, indicating that the S1407P mutation reduced the enzyme activity of BAC. Moreover, the S1407P mutation exhibited decreased spore germination rate and infection cushion formation, and increased sensitivity to cell wall stress, which closely related to fungal development and virulence. Taken together, our study indicates that the S1407 site of bac plays an important role in vegetative growth, sclerotial formation, conidiation and virulence in B. cinerea.
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spelling pubmed-72156882020-05-22 A Single Nucleotide Mutation in Adenylate Cyclase Affects Vegetative Growth, Sclerotial Formation and Virulence of Botrytis cinerea Chen, Xue Zhang, Xiaohong Zhu, Pinkuan Wang, Yiwen Na, Yantao Guo, Han Cai, Yunfei Nie, Haozhen Jiang, Yina Xu, Ling Int J Mol Sci Article Botrytis cinerea is a pathogenic fungus that causes gray mold disease in a broad range of crops. The high intraspecific variability of B. cinerea makes control of this fungus very difficult. Here, we isolated a variant B05.10(M) strain from wild-type B05.10. The B05.10(M) strain showed serious defects in mycelial growth, spore and sclerotia production, and virulence. Using whole-genome resequencing and site-directed mutagenesis, a single nucleotide mutation in the adenylate cyclase (BAC) gene that results in an amino acid residue (from serine to proline, S1407P) was shown to be the cause of various defects in the B05.10(M) strain. When we further investigated the effect of S1407 on BAC function, the S1407P mutation in bac showed decreased accumulation of intracellular cyclic AMP (cAMP), and the growth defect could be partially restored by exogenous cAMP, indicating that the S1407P mutation reduced the enzyme activity of BAC. Moreover, the S1407P mutation exhibited decreased spore germination rate and infection cushion formation, and increased sensitivity to cell wall stress, which closely related to fungal development and virulence. Taken together, our study indicates that the S1407 site of bac plays an important role in vegetative growth, sclerotial formation, conidiation and virulence in B. cinerea. MDPI 2020-04-21 /pmc/articles/PMC7215688/ /pubmed/32326350 http://dx.doi.org/10.3390/ijms21082912 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Xue
Zhang, Xiaohong
Zhu, Pinkuan
Wang, Yiwen
Na, Yantao
Guo, Han
Cai, Yunfei
Nie, Haozhen
Jiang, Yina
Xu, Ling
A Single Nucleotide Mutation in Adenylate Cyclase Affects Vegetative Growth, Sclerotial Formation and Virulence of Botrytis cinerea
title A Single Nucleotide Mutation in Adenylate Cyclase Affects Vegetative Growth, Sclerotial Formation and Virulence of Botrytis cinerea
title_full A Single Nucleotide Mutation in Adenylate Cyclase Affects Vegetative Growth, Sclerotial Formation and Virulence of Botrytis cinerea
title_fullStr A Single Nucleotide Mutation in Adenylate Cyclase Affects Vegetative Growth, Sclerotial Formation and Virulence of Botrytis cinerea
title_full_unstemmed A Single Nucleotide Mutation in Adenylate Cyclase Affects Vegetative Growth, Sclerotial Formation and Virulence of Botrytis cinerea
title_short A Single Nucleotide Mutation in Adenylate Cyclase Affects Vegetative Growth, Sclerotial Formation and Virulence of Botrytis cinerea
title_sort single nucleotide mutation in adenylate cyclase affects vegetative growth, sclerotial formation and virulence of botrytis cinerea
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7215688/
https://www.ncbi.nlm.nih.gov/pubmed/32326350
http://dx.doi.org/10.3390/ijms21082912
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