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共现关系和随机过程影响河口-海岸边缘沉积古菌和细菌群落的组装。

Co-Occurrence Relationship and Stochastic Processes Affect Sedimentary Archaeal and Bacterial Community Assembly in Estuarine-Coastal Margins.

作者信息

Yue Yihong, Tang Yi, Cai Ling, Yang Zhihong, Chen Xueping, Ouyang Yurong, Dai Juanjuan, Yang Ming

机构信息

School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, China.

Third Institute of Oceanography, Ministry of Natural Resources, Xiamen 361005, China.

出版信息

Microorganisms. 2022 Jul 1;10(7):1339. doi: 10.3390/microorganisms10071339.

Abstract

Sedimentary microorganisms play crucial roles in maintaining the functional stability of aquatic ecosystems. However, their taxonomic composition and assembly processes are not well known in estuarine−coastal margins because of their complex environment. We investigated microbial communities, co-occurrence relationships, and underlying mechanisms in 33 surface sediment samples collected in the Jiulong River Estuary and the Taiwan Strait to reveal their composition dynamics. The abundance, diversity, and composition of microorganisms demonstrated obvious spatial variables. Methanobacterium and Methanosarcina, as well as Candidatus_Nitrosopumilus and Nitrososphaeraceae were the main methanogenic and ammonia-oxidizing archaea, with an average abundance of more than 5.91% and 4.27%, respectively. Along with a salinity gradient increase, the relative abundance of methanogenic archaea (from 42.9% to 16.6%) contrasted with the trend of ammonia-oxidizing archaea (from 6.04% to 18.7%). The number of methanogenic archaea gradually decreased with increasing geographic distance (p < 0.05), whereas ammonia-oxidizing archaea showed no significant change (p > 0.05). In co-occurrence patterns, closer inter-taxa connections were observed among archaea−archaea and bacteria−bacteria than in archaea−bacteria, which indicated that coexistence within the same kingdom was greater than interaction between different kingdoms in shaping the community structure along the salinity gradient. Furthermore, null model analyses of the microbial community showed that undominated was the most prominent process, explaining over 44.9% of community variation, followed by heterogeneous selection and dispersal limitation, which contributed to 27.7% and 16.3%, respectively. We demonstrated that stochasticity, rather than determinism, regulates community assembly. These results further highlight that intra-kingdom co-occurrence and stochastic processes shape the structure and assembly of microbial communities in estuarine−coastal margins.

摘要

沉积微生物在维持水生生态系统的功能稳定性方面发挥着关键作用。然而,由于河口 - 海岸边缘环境复杂,其分类组成和组装过程尚不为人所知。我们调查了在九龙江河口和台湾海峡采集的33个表层沉积物样本中的微生物群落、共生关系及潜在机制,以揭示其组成动态。微生物的丰度、多样性和组成表现出明显的空间变量。甲烷杆菌属和甲烷八叠球菌属,以及硝化侏儒菌属和硝化球形菌科分别是主要的产甲烷古菌和氨氧化古菌,平均丰度分别超过5.91%和4.27%。随着盐度梯度增加,产甲烷古菌的相对丰度(从42.9%降至16.6%)与氨氧化古菌的趋势相反(从6.04%升至18.7%)。产甲烷古菌的数量随地理距离增加而逐渐减少(p < 0.05),而氨氧化古菌无显著变化(p > 0.05)。在共生模式中,古菌 - 古菌和细菌 - 细菌之间的类群间连接比古菌 - 细菌之间更紧密,这表明在沿盐度梯度塑造群落结构方面,同界内的共存大于不同界之间的相互作用。此外,微生物群落的零模型分析表明,非主导是最突出的过程,解释了超过44.9%的群落变异,其次是异质性选择和扩散限制,分别占27.7%和16.3%。我们证明了随机性而非确定性调节群落组装。这些结果进一步突出了界内共生和随机过程塑造了河口 - 海岸边缘微生物群落的结构和组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9b5/9318014/1147c1a5737a/microorganisms-10-01339-g001.jpg

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