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内生真菌及其提取物处理的葡萄细胞中代谢物的协同变化。

Coordinative Changes in Metabolites in Grape Cells Exposed to Endophytic Fungi and Their Extracts.

机构信息

School of Ecology and Environmental Science, Yunnan University, Kunming 650504, China.

School of Life Science, Yunnan University, Kunming 650504, China.

出版信息

Molecules. 2022 Aug 29;27(17):5566. doi: 10.3390/molecules27175566.

Abstract

Endophytes and their elicitors can all be utilized in regulating crop biochemical qualities. However, living endophytes and their derived elicitors are always applied separately; little is known about the similarities and differences of their effects. To increase the efficiency of this system when applied in practice, the present work profiled simultaneously the metabolomes in grape cells exposed to endophytic fungi (EF) and their corresponding fungal extracts (CFE). As expected, grape cells exposed separately to different fungi, or to different fungi derived extracts, each exhibited different modifications of metabolite patterns. The metabolic profiles of certain EF- and CFE-exposed grape cells were also differently influenced to certain degrees, owing to the presence of differentially responding metabolites (DRMs). However, the detected majority proportions of coordinately responding metabolites (CRMs) in both the EF- and the CFE-exposed grape cells, as well as the significantly influenced metabolites (SIMs) which are specific to certain fungal strains, clearly indicate coordinative changes in metabolites in grape cells exposed to EF and CFEs. The coordinative changes in metabolites in EF- and CFE-treated grape cells appeared to be fungal strain-dependent. Notably, several of those fungal strain-specific CRMs and DRMs are metabolites and belong to amino acids, lipids, organic acids, phenolic acids, flavonoids, and others, which are major contributors to the biochemistry and sensory qualities of grapes and wines. This research clarifies the detailed responses of metabolites in grape cells exposed to EF and CFEs. It also demonstrates how endophytes can be selectively used in the form of extracts to produce functions as CRMs of the living fungus with increased eco-safety, or separately applied to the living microbes or elicitors to emphasize those effects related to their specifically initiated SIMs and DRMs.

摘要

内生菌及其诱导子均可用于调节作物的生化品质。然而,活体内生菌及其衍生的诱导子通常是分开使用的;对于它们的作用的相似性和差异性知之甚少。为了在实际应用中提高该系统的效率,本工作同时分析了暴露于内生真菌(EF)及其相应真菌提取物(CFE)的葡萄细胞的代谢组。正如预期的那样,单独暴露于不同真菌或不同真菌衍生提取物的葡萄细胞,其代谢物模式都有不同程度的改变。由于存在不同响应的代谢物(DRMs),某些 EF 和 CFE 暴露的葡萄细胞的代谢谱也受到不同程度的影响。然而,在 EF 和 CFE 暴露的葡萄细胞中检测到的大多数协调响应代谢物(CRMs),以及特定真菌菌株特有的显著影响代谢物(SIMs),清楚地表明了暴露于 EF 和 CFEs 的葡萄细胞中代谢物的协调变化。EF 和 CFE 处理的葡萄细胞中代谢物的协调变化似乎依赖于真菌菌株。值得注意的是,其中一些真菌菌株特异性的 CRM 和 DRM 是代谢物,属于氨基酸、脂质、有机酸、酚酸、类黄酮等,它们是葡萄和葡萄酒生化和感官品质的主要贡献者。本研究阐明了暴露于 EF 和 CFE 的葡萄细胞中代谢物的详细响应。它还表明了内生菌如何可以以提取物的形式选择性地使用,以产生具有增加生态安全性的活体真菌的 CRM,或者单独应用于活体微生物或诱导子,以强调与它们特定引发的 SIM 和 DRM 相关的那些作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4872/9458220/704711645dbe/molecules-27-05566-g001.jpg

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