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Fatty acid metabolites of Dendrobium nobile were positively correlated with representative endophytic fungi at altitude

生物 内生真菌在植物防御中的应用 植物 石斛 高度(三角形) 食品科学 菌根真菌 化学 微生物学 园艺 接种 几何学 数学
作者
Yongxia Zhao,Qin Lin,Daopeng Tan,Di Wu,Xingdong Wu,Qingjie Fan,Chaojun Bai,Jiyong Yang,Jian Xie,Yuqi He
出处
期刊:Frontiers in Microbiology [Frontiers Media]
卷期号:14: 1128956-1128956 被引量:17
标识
DOI:10.3389/fmicb.2023.1128956
摘要

Introduction Altitude, as a comprehensive ecological factor, regulates the growth and development of plants and microbial distribution. Dendrobium nobile (D. nobile) planted in habitats at different elevations in Chishui city, also shows metabolic differences and endophytes diversity. What is the triangular relationship between altitude, endophytes, and metabolites? Methods In this study, the diversity and species of endophytic fungi were tested by ITS sequencing and metabolic differences in plants were tested by UPLC–ESI–MS/MS. Elevation regulated the colonization of plant endophytic fungal species and fatty acid metabolites in D. nobile . Results The results indicate that and high altitude was better for the accumulation of fatty acid metabolites. Therefore, the high-altitude characteristic endophytic floras were screened, and the correlation with fatty acid metabolites of plants was built. The colonization of T. rubrigenum, P. Incertae sedis unclassified, Phoma. cf. nebulosa JZG 2008 and Basidiomycota unclassified showed a significantly positive correlation with fatty acid metabolites, especially 18-carbon-chain fatty acids, such as (6Z,9Z,12Z)-octadeca-6,9,12-trienoic acid, 3,7,11,15-tetramethyl-12-oxohexadeca-2,4-dienoic acid and Octadec-9-en-12-ynoic acid. What is more fascinating is these fatty acids are the essential substrates of plant hormones. Discussion Consequently, it was speculated that the D. nobile - colonizing endophytic fungi stimulated or upregulated the synthesis of fatty acid metabolites and even some plant hormones, thus affecting the metabolism and development of D. nobile .
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