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淡紫拟青霉 T2 分泌的 6-戊基-2H-吡喃-2-酮对毁灭柱孢的抑制机制。

Inhibitory mechanism of 6-Pentyl-2H-pyran-2-one secreted by Trichoderma atroviride T2 against Cylindrocarpon destructans.

机构信息

State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, 650201 Kunming, China.

State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, 650201 Kunming, China.

出版信息

Pestic Biochem Physiol. 2020 Nov;170:104683. doi: 10.1016/j.pestbp.2020.104683. Epub 2020 Aug 20.

Abstract

Root rot caused by Cylindrocarpon destructans is one of the most devastating diseases of Panax notoginseng, and Trichoderma species are potential agents for the biocontrol of fungal diseases. Thus, we screened a total of 10 Trichoderma isolates against C. destructans and selected Trichoderma atroviride T2 as an antagonistic strain for further research. 6-Pentyl-2H-pyran-2-one (6PP) was identified as an important active metabolite in the fermentation broth of the strain and exhibited antifungal activity against C. destructans. Transcriptome and metabolome analyses showed that 6PP significantly disturbed the metabolic homeostasis of C. destructans, particularly the metabolism of amino acids. By constructing a gene coexpression network, ECHS1 was identified as the hub gene correlated with 6PP stress. 6PP significantly downregulated the expression of ECHS1 at the transcriptional level and combined with the ECHS1 protein. Autophagy occurred in C. destructans cells under 6PP stress. In conclusion, 6PP may induce autophagy in C. destructans by downregulating ECHS1 at the transcriptional level and inhibiting ECHS1 protein activity. 6PP is a potential candidate for the development of new fungicides against C. destructans.

摘要

由毁灭柱孢菌引起的烂根病是三七最具破坏性的病害之一,而木霉属真菌是防治真菌病害的潜在生物防治剂。因此,我们总共筛选了 10 株对毁灭柱孢菌具有拮抗作用的木霉属真菌分离株,并选择了深绿木霉 T2 作为拮抗菌株进行进一步研究。6-戊基-2H-吡喃-2-酮(6PP)被鉴定为该菌株发酵液中的一种重要活性代谢物,对毁灭柱孢菌表现出抗真菌活性。转录组和代谢组分析表明,6PP 显著扰乱了毁灭柱孢菌的代谢平衡,特别是氨基酸代谢。通过构建基因共表达网络,鉴定出 ECHS1 是与 6PP 胁迫相关的枢纽基因。6PP 在转录水平上显著下调 ECHS1 的表达,并与 ECHS1 蛋白结合。6PP 胁迫下,细胞自噬发生在毁灭柱孢菌中。总之,6PP 可能通过下调转录水平和抑制 ECHS1 蛋白活性来诱导毁灭柱孢菌中的自噬。6PP 是开发针对毁灭柱孢菌的新型杀菌剂的潜在候选物。

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