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附着在沉水植物叶片上生物膜的特性及其季节性变化。

Characterization and seasonal variation in biofilms attached to leaves of submerged plant.

机构信息

Department of Environmental Science and Engineering, Fudan Unersity, Shanghai, 200433, P.R. China.

Shanghai Shifang Ecology and Landscape Co., Ltd, Shanghai, 200233, P.R. China.

出版信息

World J Microbiol Biotechnol. 2023 Nov 23;40(1):19. doi: 10.1007/s11274-023-03832-9.

Abstract

The microorganisms and functional predictions of leaf biofilms on submerged plants (Vallisneria natans (Val)) and in water samples (surface water (S) and bottom water (B)) in different seasons were evaluated in this study. S and B groups had 3249 identical operational taxonomic units (OTUs) (50.03%), while the Val group only had 1201 (18.49%) unique OTUs. There was significant overlap between microbial communities of S and B groups in the same season, while Val group showed the greater diversity. The dominant microbial clades were Proteobacteria (18.2-47.3%), Cyanobacteria (3.74-39.3%), Actinobacteria (1.64-29.3%), Bacteroidetes (1.31-21.7%), and Firmicutes (1.10-15.72%). Furthermore, there was a significant relationship between total organic carbon and the distribution of microbial taxa (p = 0.047), and TN may have altered the status of Cyanobacteria by affecting its biological nitrogen fixation capacity and reproductive capacity. The correlation network analysis results showed that the whole system consisted of 249 positive correlations and 111 negative correlations, indicating strong interactions between microbial communities. Functional predictions indicated that microbial functions were related to seasonal variation. These findings would guide the use of submerged plants to improve the diversity and stability of wetland microbial communities.

摘要

本研究评估了不同季节下沉水植物(苦草)叶片生物膜和水样(表层水(S)和底层水(B))中的微生物组成和功能预测。S 和 B 组具有 3249 个相同的操作分类单元(OTUs)(50.03%),而 Val 组只有 1201 个(18.49%)独特的 OTUs。同一季节 S 和 B 组的微生物群落之间存在显著重叠,而 Val 组显示出更大的多样性。优势微生物类群为变形菌门(18.2-47.3%)、蓝藻门(3.74-39.3%)、放线菌门(1.64-29.3%)、拟杆菌门(1.31-21.7%)和厚壁菌门(1.10-15.72%)。此外,总有机碳与微生物分类群的分布之间存在显著关系(p=0.047),TN 可能通过影响其生物固氮能力和繁殖能力改变蓝藻的地位。相关网络分析结果表明,整个系统由 249 个正相关和 111 个负相关组成,表明微生物群落之间存在强烈的相互作用。功能预测表明微生物功能与季节性变化有关。这些发现将指导使用沉水植物来提高湿地微生物群落的多样性和稳定性。

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