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通过过表达HSP70基因增强转基因木霉对热和真菌感染的抗性。

Enhanced resistance to heat and fungal infection in transgenic Trichoderma via over-expressing the HSP70 gene.

作者信息

Huang Yanhua, Liu Changfa, Huo Xuexue, Lai Xianzhi, Zhu Wentao, Hao Yongren, Zheng Zehui, Guo Kai

机构信息

Biology Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan, 250014, China.

出版信息

AMB Express. 2024 Apr 10;14(1):34. doi: 10.1186/s13568-024-01693-5.

Abstract

Heat stress is one of the major abiotic stresses affecting the growth, sporulation, colonization and survival of Trichoderma viride. This study aimed to gain a better insight into the underlying mechanism governing the heat stress response of T. viride Tv-1511. We analysed the transcriptomic changes of Tv-1511 under normal and heat stress conditions using RNA sequencing. We observed that Tv-1511 regulates the biosynthesis of secondary metabolites through a complex network of signalling pathways. Additionally, it significantly activates the anti-oxidant defence system, heat shock proteins and stress-response-related transcription factors in response to heat stress. TvHSP70 was identified as a key gene, and transgenic Tv-1511 overexpressing TvHSP70 (TvHSP70-OE) was generated. We conducted an integrated morphological, physiological and molecular analyses of the TvHSP70-OE and wild-type strains. We observed that TvHSP70 over-expression significantly triggered the growth, anti-oxidant capacity, anti-fungal activity and growth-promoting ability of Tv-1511. Regarding anti-oxidant capacity, TvHSP70 primarily up-regulated genes involved in enzymatic and non-enzymatic anti-oxidant systems. In terms of anti-fungal activity, TvHSP70 primarily activated genes involved in the synthesis of enediyne, anti-fungal and aminoglycoside antibiotics. This study provides a comparative analysis of the functional significance and molecular mechanisms of HSP70 in Trichoderma. These findings provide a valuable foundation for further analyses.

摘要

热胁迫是影响绿色木霉生长、孢子形成、定殖和存活的主要非生物胁迫之一。本研究旨在更深入地了解绿色木霉Tv-1511热胁迫响应的潜在机制。我们使用RNA测序分析了Tv-1511在正常和热胁迫条件下的转录组变化。我们观察到Tv-1511通过复杂的信号通路网络调节次生代谢产物的生物合成。此外,它在热胁迫下显著激活抗氧化防御系统、热休克蛋白和应激反应相关转录因子。TvHSP70被鉴定为关键基因,并构建了过表达TvHSP70的转基因绿色木霉Tv-1511(TvHSP70-OE)。我们对TvHSP70-OE和野生型菌株进行了综合的形态学、生理学和分子分析。我们观察到TvHSP70的过表达显著促进了Tv-1511的生长、抗氧化能力、抗真菌活性和促生长能力。关于抗氧化能力,TvHSP70主要上调了参与酶促和非酶促抗氧化系统的基因。在抗真菌活性方面,TvHSP70主要激活了参与烯二炔、抗真菌和氨基糖苷类抗生素合成的基因。本研究对绿色木霉中HSP70的功能意义和分子机制进行了比较分析。这些发现为进一步分析提供了有价值的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e49/11006649/dcee4402bb2f/13568_2024_1693_Fig2_HTML.jpg

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