通才与专种
生物
生态学
扩增子测序
系统发育树
分类单元
生物多样性
16S核糖体RNA
寄主(生物学)
核糖体RNA
栖息地
群落结构
系统发育学
生态网络
理论(学习稳定性)
进化生物学
社区
基因组
全球生物多样性
作者
Shuaishuai Zhang,Y C Zhu,Zhang Y,Yanyan Ni,S Liu,Muhammad Farooq Mustafa,Sai Xu
标识
DOI:10.1111/1462-2920.70382
摘要
ABSTRACT Deciphering the intrinsic coexistence mechanisms of generalists and specialists is crucial for maintaining biodiversity. However, how these taxa seasonally turn over to sustain the stability of bacterial communities remains poorly understood in river sediments. Here, we employed 16S rRNA gene amplicon sequencing and statistical analyses to investigate the diversity, assembly processes, and ecological state conversion of bacterial generalists and specialists in river ecosystems. Our results revealed that generalists exhibited significantly higher phylogenetic species variability ( p < 0.001), whereas specialists demonstrated a stronger phylogenetic signal in ecological preferences ( p < 0.05). Specialists were mainly shaped by stochastic processes (wet season: 91%; dry season: 86%), while the impact of stochasticity on generalists was distinct across different seasons (wet season: 65%; dry season: 35%). Co‐occurrence network analysis revealed that generalists played a more important role than specialists in maintaining the stability of bacterial communities, with generalist communities (robustness: 0.46; vulnerability: 0.0059) themselves exhibiting higher stability than specialist communities (robustness: 0.34; vulnerability: 0.13). Nevertheless, ecological state conversion from specialists to generalists (conversion rate: 43.01) ensured the maintenance of stable biodiversity. Collectively, these findings underscore the importance of dynamic trade‐offs between generalists and specialists in sustaining the stability of bacterial communities in river ecosystems.
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