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Identification of genes related to chlamydospore formation in Clonostachys rosea 67‐1

机译:鉴定玫瑰色梭菌67-1中与衣原体孢子形成有关的基因

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摘要

Chlamydospores are specific structures that are of great significance to the commercialization of fungal biopesticides. To explore the genes associated with chlamydospore formation, a biocontrol fungus Clonostachys rosea 67‐1 that is capable of producing resistant spores under particular conditions was investigated by transcriptome sequencing and analysis. A total of 549,661,174 clean reads were obtained, and a series of differentially expressed genes potentially involved in fungal chlamydospore formation were identified. At 36 hr, 67 and 117 genes were up‐ and downregulated in C. rosea during chlamydospore production, compared with the control for conidiation, and 53 and 24 genes were up‐ and downregulated at 72 hr. GO classification suggested that the differentially expressed genes were related to cellular component, biological process, and molecular function categories. A total of 188 metabolism pathways were linked to chlamydospore production by KEGG analysis. Sixteen differentially expressed genes were verified by reverse transcription quantitative PCR, and the expression profiles were consistent with the transcriptome data. To the best of our knowledge, it is the first report on the genes associated with chlamydospore formation in C. rosea. The results provide insight into the molecular mechanisms underlying C. rosea sporulation, which will assist the development of fungal biocontrol agents.
机译:衣原体是特定的结构,对于真菌生物农药的商业化具有重要意义。为了探索与衣原体孢子形成相关的基因,通过转录组测序和分析研究了一种在特定条件下能够产生抗性孢子的生物防治真菌Closnostachys rosea 67-1。总共获得了549,661,174条干净读物,并鉴定了一系列可能与真菌衣原体孢子形成有关的差异表达基因。与分生孢子的对照组相比,在衣原体生产过程中,在36小时时,玫瑰色念珠菌中有67和117个基因上调和下调,在72小时时有53和24个基因上调和下调。 GO分类表明差异表达的基因与细胞成分,生物学过程和分子功能类别有关。通过KEGG分析,总共188个代谢途径与衣原体的产生相关。通过逆转录定量PCR验证了16个差异表达的基因,并且表达谱与转录组数据一致。据我们所知,这是关于与玫瑰果衣原体孢子形成相关基因的第一份报告。该结果提供了对C.rosea孢子形成的分子机制的深入了解,这将有助于真菌生物防治剂的开发。

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