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基因多样性解释了昆虫致病真菌——球孢白僵菌的生物学特征的变化。

Gene diversity explains variation in biological features of insect killing fungus, Beauveria bassiana.

机构信息

Department of Agricultural Biology, Jeonbuk National University, Jeonju, 54596, Korea.

Department of Microbiology and Cell Science, University of Florida, Gainesville, FL, 32611-0700, USA.

出版信息

Sci Rep. 2021 Jan 8;11(1):91. doi: 10.1038/s41598-020-78910-1.

Abstract

Beauveria bassiana is a species complex whose isolates show considerable natural genetic variability. However, little is known about how this genetic diversity affects the fungus performance. Herein, we characterized the diversity of genes involved in various mechanisms of the infective cycle of 42 isolates that have different growth rates, thermotolerance and virulence. The analysed genes showed general genetic diversity measured as non-synonymous changes (NSC) and copy number variation (CNV), with most of them being subjected to positive episodic diversifying selection. Correlation analyses between NSC or CNV and the isolate virulence, thermotolerance and growth rate revealed that various genes shaped the biological features of the fungus. Lectin-like, mucin signalling, Biotrophy associated and chitinase genes NSCs correlated with the three biological features of B. bassiana. In addition, other genes (i.e. DNA photolyase and cyclophilin B) that had relatively conserved sequences, had variable CNs across the isolates which were correlated with the variability of either virulence or thermotolerance of B. bassiana isolates. The data obtained is important for a better understanding of population structure, ecological and potential impact when isolates are used as mycoinsecticides and can justify industrialization of new isolates.

摘要

球孢白僵菌是一个种的复合体,其分离株表现出相当大的自然遗传变异性。然而,关于这种遗传多样性如何影响真菌的性能知之甚少。在此,我们对 42 个具有不同生长速度、耐热性和毒力的分离株的侵染循环中涉及各种机制的基因多样性进行了表征。分析的基因显示出普遍的遗传多样性,其衡量标准是非同义变化(NSC)和拷贝数变异(CNV),其中大多数基因受到正的间断性多样化选择。NSC 或 CNV 与分离株毒力、耐热性和生长速率之间的相关分析表明,各种基因塑造了真菌的生物学特征。凝集素样、粘蛋白信号、生物寄生相关和几丁质酶基因的 NSC 与球孢白僵菌的三种生物学特征相关。此外,其他基因(即 DNA 光解酶和环孢素 B)具有相对保守的序列,但在分离株中具有可变的 CN,这与球孢白僵菌分离株的毒力或耐热性的变异性相关。获得的数据对于更好地了解种群结构、生态和潜在影响很重要,因为当分离株被用作生物防治真菌时,这些数据可以为新分离株的工业化提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2a6/7794557/719184536902/41598_2020_78910_Fig1_HTML.jpg

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