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沿广泛土壤盐分梯度的微生物群落结构和共现网络的变化

Shifts in Microbial Community Structure and Co-occurrence Network along a Wide Soil Salinity Gradient.

作者信息

Li Yan, Wang Juan, Li Eryang, Yang Xiaodong, Yang Jianjun

机构信息

College of Ecology and Environment, Xinjiang University, Urumqi 830017, China.

Key Laboratory of Oasis Ecology, Ministry of Education, Urumqi 830017, China.

出版信息

Microorganisms. 2024 Jun 22;12(7):1268. doi: 10.3390/microorganisms12071268.

Abstract

The response of microbiomes to salinity has been clarified in different geographic scales or ecosystems. However, how soil microbial community structure and interaction respond to salinity across wide salinity range and climatic region is still unclearly resolved. To address this issue, we examined the microbial community's composition in saline soils from two climatic regions (coastal wetland and arid desert). Our research confirms that soil salinity had a negative effect on soil nutrient content. Salinity decreased the relative abundance of bacteria, but increased archaea abundance, leading to the shifts from bacteria dominant community to archaea dominant community. Low-water medium-salinity soil (LWMS) had the most complex archaeal community network, whereas for bacteria, the most complex bacterial community network was observed in low-water high-salinity soils (LWHS). Key microbial taxa differed in three salinity gradients. Salinity, soil water content, pH, total nitrogen (TN), and soil organic carbon (SOC) were the main driving factors for the composition of archaeal and bacterial community. Salinity directly affected archaeal community, but indirectly influenced bacteria community through SOC; pH affected archaeal community indirectly through TN, but directly affected bacterial community. Our study suggests that soil salinity dramatically influences diversity, composition, and interactions within the microbial community.

摘要

微生物群落对盐度的响应已在不同地理尺度或生态系统中得到阐明。然而,在广泛的盐度范围和气候区域内,土壤微生物群落结构和相互作用如何响应盐度仍未得到明确解决。为了解决这个问题,我们研究了来自两个气候区域(沿海湿地和干旱沙漠)的盐渍土壤中微生物群落的组成。我们的研究证实,土壤盐度对土壤养分含量有负面影响。盐度降低了细菌的相对丰度,但增加了古菌的丰度,导致群落从细菌主导转变为古菌主导。低水-中盐土壤(LWMS)具有最复杂的古菌群落网络,而对于细菌来说,在低水-高盐土壤(LWHS)中观察到最复杂的细菌群落网络。关键微生物类群在三个盐度梯度上存在差异。盐度、土壤含水量、pH值、总氮(TN)和土壤有机碳(SOC)是古菌和细菌群落组成的主要驱动因素。盐度直接影响古菌群落,但通过SOC间接影响细菌群落;pH值通过TN间接影响古菌群落,但直接影响细菌群落。我们的研究表明,土壤盐度显著影响微生物群落的多样性、组成和相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b318/11278679/ce26d012d04f/microorganisms-12-01268-g001.jpg

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