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长时间的水分限制会使土壤微生物组从富营养型转变为贫营养型,在苏格兰松中体现为中观尺度的生活方式。

Prolonged water limitation shifts the soil microbiome from copiotrophic to oligotrophic lifestyles in Scots pine mesocosms.

机构信息

Sustainable Agroecosystems Group, Department of Environmental Systems Science, ETH Zurich, Zurich, Switzerland.

Helmholtz Centre for Environmental Research-UFZ, Leipzig, Germany.

出版信息

Environ Microbiol Rep. 2024 Feb;16(1):e13211. doi: 10.1111/1758-2229.13211. Epub 2023 Nov 22.

Abstract

Reductions in soil moisture due to prolonged episodes of drought can potentially affect whole forest ecosystems, including soil microorganisms and their functions. We investigated how the composition of soil microbial communities is affected by prolonged episodes of water limitation. In a mesocosm experiment with Scots pine saplings and natural forest soil maintained at different levels of soil water content over 2 years, we assessed shifts in prokaryotic and fungal communities and related these to changes in plant development and soil properties. Prolonged water limitation induced progressive changes in soil microbial community composition. The dissimilarity between prokaryotic communities at different levels of water limitation increased over time regardless of the recurrent seasons, while fungal communities were less affected by prolonged water limitation. Under low soil water contents, desiccation-tolerant groups outcompeted less adapted, and the lifestyle of prokaryotic taxa shifted from copiotrophic to oligotrophic. While the abundance of saprotrophic and ligninolytic groups increased alongside an accumulation of dead plant material, the abundance of symbiotic and nutrient-cycling taxa decreased, likely impairing the development of the trees. Overall, prolonged episodes of drought appeared to continuously alter the structure of microbial communities, pointing to a potential loss of critical functions provided by the soil microbiome.

摘要

由于长时间的干旱事件,土壤水分减少可能会影响整个森林生态系统,包括土壤微生物及其功能。我们研究了长时间的水分限制如何影响土壤微生物群落的组成。在一项为期 2 年的针阔混交林幼苗和天然林土壤的中尺度实验中,我们评估了原核生物和真菌群落的变化,并将其与植物发育和土壤特性的变化联系起来。长时间的水分限制导致土壤微生物群落组成的渐进变化。无论反复的季节如何,不同水分限制水平下的原核生物群落之间的不相似性随着时间的推移而增加,而真菌群落受长时间水分限制的影响较小。在低土壤含水量下,耐旱群体会胜过适应能力较低的群,原核生物类群的生活方式从富营养型转变为寡营养型。随着死植物物质的积累,腐生和木质素分解菌的丰度增加,而共生和养分循环菌的丰度减少,这可能会损害树木的生长。总的来说,长时间的干旱事件似乎持续改变了微生物群落的结构,这表明土壤微生物组提供的关键功能可能会丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2137/10866073/4861f7c01144/EMI4-16-e13211-g003.jpg

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