Influence of genetic diversity of seventeen Beauveria bassiana isolates from different hosts on virulence by comparative genomics

球孢菌 球孢白僵菌 生物 毒力 遗传学 基因组 基因 比较基因组学 昆虫病原真菌 微生物学 基因组学 植物 生物病虫害防治
作者
Zhengkun Zhang,Lu Yang,Wenjing Xu,Li Sui,Qian Du,Yangzhou Wang,Yu Zhao,Qiyun Li
出处
期刊:BMC Genomics [Springer Nature]
卷期号:21 (1) 被引量:29
标识
DOI:10.1186/s12864-020-06791-9
摘要

Abstract Background Beauveria bassiana ( B. bassiana ) is a famous entomopathogenic fungus that could parasitize on hundreds of insect species, which are being used as an environmentally friendly mycoinsecticide. Nevertheless, the possible effect of genetic diversity of these B. bassiana isolates from different hosts on virulence has not been explored before. In order to explore that issue, we compared the genome sequences among seventeen B. bassiana isolates from 17 different insects using whole genome re-sequencing, with B. bassiana strain ARSEF 2860 as the reference genome. Results There were a total of 10,098 missense mutated genes, 720 positively selected genes were identified in 17 strains of B. bassiana . Among these, two genes with high frequency mutations encode the toxin-producing non-ribosomal peptide synthase (NRPS) protein. Seven genes undergoing positive selection were enriched in the two-component signaling pathway that is known to regulate the fungal toxicity. In addition, the domain changes of three positively selected genes are also directly related to the virulence plasticity. Besides, the functional categorization of mutated genes showed that most of them involved in the biological functions of toxic proteins involved in. Conclusions Based on our data, our results indicate that several mutated genes and positively selected genes may underpin virulence of B. bassiana towards hosts during infection process, which provide an insight into the potential effects of natural variation on the virulence of B. bassiana , which will be useful in screening out potential virulence factors in B. bassiana .
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