Xu Minjie, Zhu Xunzhi, Chen Shiping, Pang Shuang, Liu Wei, Gao Lili, Yang Wei, Li Tingting, Zhang Yuhan, Luo Chun, He Dandan, Wang Zhiping, Fan Yi, Han Xingguo, Zhang Ximei
Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.
iScience. 2022 Feb 8;25(3):103893. doi: 10.1016/j.isci.2022.103893. eCollection 2022 Mar 18.
Precipitation may increase or decrease by different intensities, but the pattern and mechanism of soil microbial community assembly under various precipitation changes remain relatively underexplored. Here, although ±30% precipitation caused a small decrease (∼19%) in the within-treatment taxonomic compositional dissimilarity through the deterministic competitive exclusion process in a steppe ecosystem, ±60% precipitation caused a large increase (∼35%) in the dissimilarity through the stochastic ecological drift process (random birth/death), which was in contrast with the traditional thought that increasing the magnitude of environmental changes (e.g., from +30% to +60%) would elevate the importance of deterministic relative to stochastic processes. The increased taxonomic dissimilarity/stochasticity under ±60% precipitation translated into functional dissimilarity/stochasticity at the gene, protein, and enzyme levels. Overall, our results revealed the distinctive pattern and mechanism of precipitation changes affecting soil microbial community assembly and demonstrated the need to integrate microbial taxonomic information to better predict their functional responses to precipitation changes.
降水量可能会以不同强度增加或减少,但在各种降水变化下土壤微生物群落组装的模式和机制仍相对未得到充分探索。在这里,尽管在草原生态系统中,±30% 的降水量通过确定性竞争排斥过程导致处理内分类组成差异略有下降(约19%),但±60% 的降水量通过随机生态漂变过程(随机出生/死亡)导致差异大幅增加(约35%),这与传统观点相反,即增加环境变化的幅度(例如,从 +30% 到 +60%)会提高确定性过程相对于随机过程的重要性。±60% 降水量下分类差异/随机性的增加转化为基因、蛋白质和酶水平上的功能差异/随机性。总体而言,我们的结果揭示了降水变化影响土壤微生物群落组装的独特模式和机制,并表明需要整合微生物分类信息以更好地预测它们对降水变化的功能响应。