Functional redundancy buffers the effect of poly-extreme environmental conditions on Southern African dryland soil microbial communities.

IF 3.5 3区 生物学 Q2 MICROBIOLOGY FEMS microbiology ecology Pub Date : 2024-11-20 DOI:10.1093/femsec/fiae157
Tomás Sauma-Sánchez, Jaime Alcorta, Javier Tamayo-Leiva, Beatriz Díez, Hugo Bezuidenhout, Don A Cowan, Jean-Baptiste Ramond
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Abstract

Drylands' poly-extreme conditions limit edaphic microbial diversity and functionality. Furthermore, climate change exacerbates soil desiccation and salinity in most drylands. To better understand the potential effects of these changes on dryland microbial communities, we evaluated their taxonomic and functional diversities in two Southern African dryland soils with contrasting aridity and salinity. Fungal community structure was significantly influenced by aridity and salinity, while Bacteria and Archaea only by salinity. Deterministic homogeneous selection was significantly more important for bacterial and archaeal communities' assembly in hyperarid and saline soils when compared to those from arid soils. This suggests that niche partitioning drives bacterial and archaeal communities' assembly under the most extreme conditions. Conversely, stochastic dispersal limitations drove the assembly of fungal communities. Hyperarid and saline soil communities exhibited similar potential functional capacities, demonstrating a disconnect between microbial structure and function. Structure variations could be functionally compensated by different taxa with similar functions, as implied by the high levels of functional redundancy. Consequently, while environmental selective pressures shape the dryland microbial community assembly and structures, they do not influence their potential functionality. This suggest that they are functionally stable, and that they could be functional even under harsher conditions, such as those expected with climate change.

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功能冗余可缓冲多极端环境条件对南部非洲干旱地区土壤微生物群落的影响。
旱地的极端条件限制了土壤微生物的多样性和功能。此外,气候变化加剧了大多数旱地的土壤干燥和盐碱化。为了更好地了解这些变化对旱地微生物群落的潜在影响,我们评估了干旱和盐碱化程度截然不同的两种南部非洲旱地土壤中微生物群落的分类和功能多样性。真菌群落结构受到干旱度和盐度的显著影响,而细菌和古细菌只受到盐度的影响。与干旱土壤中的细菌和古细菌群落相比,确定性同质选择对超干旱和盐碱土壤中的细菌和古细菌群落的形成更为重要。这表明,在最极端的条件下,生态位分配推动了细菌和古细菌群落的集结。相反,随机扩散的限制推动了真菌群落的集结。超干旱和盐碱地群落表现出相似的潜在功能能力,表明微生物结构与功能之间存在脱节。结构的变化可以通过具有相似功能的不同类群来进行功能补偿,高度的功能冗余也说明了这一点。因此,虽然环境选择性压力塑造了旱地微生物群落的组合和结构,但并不影响它们的潜在功能。这表明它们在功能上是稳定的,即使在更恶劣的条件下,如预期的气候变化条件下,它们也能发挥功能。
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来源期刊
FEMS microbiology ecology
FEMS microbiology ecology 生物-微生物学
CiteScore
7.50
自引率
2.40%
发文量
132
审稿时长
3 months
期刊介绍: FEMS Microbiology Ecology aims to ensure efficient publication of high-quality papers that are original and provide a significant contribution to the understanding of microbial ecology. The journal contains Research Articles and MiniReviews on fundamental aspects of the ecology of microorganisms in natural soil, aquatic and atmospheric habitats, including extreme environments, and in artificial or managed environments. Research papers on pure cultures and in the areas of plant pathology and medical, food or veterinary microbiology will be published where they provide valuable generic information on microbial ecology. Papers can deal with culturable and non-culturable forms of any type of microorganism: bacteria, archaea, filamentous fungi, yeasts, protozoa, cyanobacteria, algae or viruses. In addition, the journal will publish Perspectives, Current Opinion and Controversy Articles, Commentaries and Letters to the Editor on topical issues in microbial ecology. - Application of ecological theory to microbial ecology - Interactions and signalling between microorganisms and with plants and animals - Interactions between microorganisms and their physicochemical enviornment - Microbial aspects of biogeochemical cycles and processes - Microbial community ecology - Phylogenetic and functional diversity of microbial communities - Evolutionary biology of microorganisms
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