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Experimental insights in taxon-specific functional responses to droughts in glacier-fed stream biofilms

底栖区 生态系统 光养 生态学 优势(遗传学) 生物 异养 生物膜 附生植物 生物量(生态学) 硅藻 环境科学 中观 微生物 浮游生物 微生物种群生物学 干旱胁迫 缺氧(环境) 溪流 水生生态系统 初级生产 丰度(生态学) 气候变化
作者
David Touchette,Grégoire Michoud,Martin Boutroux,Martina Gonzalez Mateu,Florian Baier,Ianina Altshuler,Hannes Peter,Tom Battin
出处
期刊: [Figshare (United Kingdom)]
标识
DOI:10.6084/m9.figshare.c.8305286
摘要

Abstract Background Glacier-fed streams are predicted to face increasingly frequent and intense droughts. However, the impacts of drought events on benthic biofilm, including bacteria, eukaryotes, and viruses, the dominating life form in glacier-fed streams, remain poorly understood. Results Using streamside flume mesocosms in the Swiss Alps, we grew glacier-fed stream biofilms over 103 days and exposed them to three droughts. Using a multi-omics approach (metagenomics, metatranscriptomics, and metaproteomics), we assessed the effects of a series of droughts on the taxonomy and metabolic activity of bacterial, eukaryotic, and viral metagenome-assembled genomes (MAGs). We found that the first drought (6 h) caused only minor changes, including mild upregulation of heterotrophic metabolism and signs of stress in diatoms. In contrast, the second drought (24 h) significantly altered both the composition and functionality of the microbiome, shifting phototrophic dominance from diatoms to Cyanobacteriota, while maintaining overall phototropic biomass and further upregulating the heterotrophic metabolism. Interestingly, a third 24 h drought had no detectable transcriptomic effect between pre- and post-drought conditions, suggesting a certain level of adaptive responses to droughts, but with the low diatom abundance being maintained. Conclusions These findings indicate that glacier-fed biofilm microorganisms initially resisted short-term drought, but a second longer drought caused important shifts in their community structure, activity, and function. Climate-induced increases in drought frequency or duration may therefore have a lasting impact on microbial ecosystem functioning in glacier-fed streams. Video Abstract

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