内生菌
生物
生物逆境
病菌
生物成分
干旱胁迫
生态学
植物
非生物成分
非生物胁迫
微生物学
遗传学
基因
作者
Peng‐Lei Chen,Qingyi Yu,Cong Wang,Liliam Montoya,Patrick T. West,Ling Xu,Nelle Varoquaux,Benjamin Cole,Kim Hixson,Young‐Mo Kim,Ling Liu,Baodan Zhang,Jie Zhang,Baiyang Li,Elizabeth Purdom,John P. Vogel,Christer Jansson,Robert B. Hutmacher,Jeffery Dahlberg,Devin Coleman‐Derr
出处
期刊:PubMed
日期:2025-04-18
摘要
Holo-omics provide a novel opportunity to study the interactions among fungi from different functional guilds in host plants in field conditions. We address the entangled responses of plant pathogenic and endophytic fungi associated with sorghum when droughted through the assembly of the most abundant fungal, endophyte genome from rhizospheric metagenomic sequences followed by a comparison of its metatranscriptome with the host plant metabolome and transcriptome. The rise in relative abundance of endophytic Acremonium persicinum (operational taxonomic unit 5 (OTU5)) in drought co-occurs with a rise in fungal membrane dynamics and plant metabolites, led by ethanolamine, a key phospholipid membrane component. The negative association between endophytic A. persicinum (OTU5) and plant pathogenic fungi co-occurs with a rise in expression of the endophyte's biosynthetic gene clusters coding for secondary compounds. Endophytic A. persicinum (OTU5) and plant pathogenic fungi are negatively associated under preflowering drought but not under postflowering drought, likely a consequence of variation in fungal fitness responses to changes in the availability of water and niche space caused by plant maturation over the growing season. Our findings suggest that the dynamic biotic interactions among host, beneficial and harmful microbiota in a changing environment can be disentangled by a blending of field observation, laboratory validation, holo-omics and ecological modelling.
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