Aridity drives the variability of desert soil microbiomes across north-western China

干旱 生态学 生物 生态系统 生物扩散 沙漠气候 生态位 微生物生态学 气候变化 栖息地 细菌 人口 遗传学 人口学 社会学
作者
Lei Dong,Meixiang Li,Shuai Li,Ling-Xiang Yue,Mukhtiar Ali,Jia-Rui Han,Wen-Hui Lian,Chao-Jian Hu,Zhiliang Lin,Guo-Yuan Shi,Pandeng Wang,Shao‐Ming Gao,Zheng‐Han Lian,Ting-Ting She,Qi-Chuang Wei,Qi-Qi Deng,Hu Qian,Jialiang Xiong,Yonghong Liu,Li Li,Osama Abdalla Abdelshafy,Wen‐Jun Li
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:907: 168048-168048 被引量:8
标识
DOI:10.1016/j.scitotenv.2023.168048
摘要

Dryland covers >35 % of the terrestrial surface and the global extent of dryland increases due to the forecasted increase in aridity driven by climate change. Due to the climate change-driven aridity ecosystems, deserts provide one of the most hostile environments for microbial life and survival. Therefore, a detailed study was carried out to explore the deserts with different aridity levels (exposed to severe climate change) influence on microbial (bacteria, fungi, and protist) diversity patterns, assembly processes, and co-occurrence. The results revealed that the aridity (semi-arid, arid, and hyper-arid) patterns caused distinct changes in environmental heterogeneity in desert ecosystems. Similarly, microbial diversities were also reduced with increasing the aridity pattern, and it was found that environmental heterogeneity is highly involved in affecting microbial diversities under different ecological niches. Interestingly, it was found that certain microbes, including bacterial (Firmicutes), fungal (Sordariomycetes), and protistan (Ciliophora) abundance increased with increasing aridity levels, indicating that these microbes might possess the capability to tolerate the environmental stress conditions. Moreover, microbial community turnover analysis revealed that bacterial diversities followed homogenous selection, whereas fungi and protists were mostly driven by the dispersal limitation pattern. Co-occurrence network analysis showed that hyper-arid and arid conditions tightened the bacterial and fungal communities and had more positive associations compared to protistan. In conclusion, multiple lines of evidence were provided to shed light on the habitat specialization impact on microbial (bacteria, fungi, and protists) communities and composition under different desert ecosystems.
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