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无根浮萍(浮萍)相关细菌群落的结构和功能特性及其对浮萍生长的影响。

Structural and functional properties of bacterial communities associated with rootless duckweed (Wolffia globosa) and their effect on the Wolffia growth.

作者信息

Saimee Yuparat, Kuwai Kousuke, Ishizawa Hidehiro, Inoue Daisuke, Thamchaipenet Arinthip, Ike Michihiko

机构信息

Division of Sustainable Energy and Environmental Engineering, The University of Osaka, 2-1 Yamadaoka, Suita, Osaka, 565-0871, Japan.

Department of Applied Chemistry, University of Hyogo, 2167 Shosha, Himeji, Hyogo, 671-2280, Japan.

出版信息

Environ Microbiome. 2025 Aug 7;20(1):102. doi: 10.1186/s40793-025-00759-6.

Abstract

BACKGROUND

Rootless duckweed, Wolffia globosa, is emerging as a high-protein and starch biomass resource for various applications. However, the microbiomes and functional properties associated with Wolffia across a wide range of microbial sources remain largely unexamined. This study investigates the structure and functioning of the Wolffia microbiome and its impact on plant growth.

RESULTS

A co-cultivation experiment with axenic W. globosa and bacterial communities derived from various sources revealed varied effects, that municipal wastewater-derived bacterial communities had a more pronounced positive effect on growth of W. globosa compared to those from pond water. 16S rRNA amplicon sequencing found that Beijerinckiaceae, Caulobacteraceae, Comamonadaceae, Methylophilaceae, Rhizobiaceae, and Sphingomonadaceae were consistently conserved and identified as core taxa in the Wolffia microbiome. Functional profiling indicated that genes related to bacterial colonization and adaptation to the rootless morphology contribute to selective microbiome recruitment, with enriched functions in motility, chemotaxis, flagella assembly, quorum sensing, and ABC transporters. In addition, it was found that Bdellovibrionaceae, Beijerinckiaceae, and Sphingomonadaceae may act as "hub microorganisms" and "keystone taxa," shaping community structure and directly or indirectly influencing Wolffia growth.

CONCLUSION

Collectively, the results of this study unveiled the robust core taxa and functional profiles of the Wolffia microbiome across diverse microbial sources, with certain taxa differing from those in rooted duckweed. This study comprehensively characterizes the Wolffia microbiome and enhances understanding of it, providing insights for developing efficient biomass production systems.

摘要

背景

无根浮萍,即无根紫萍,正成为一种用于各种应用的高蛋白和淀粉生物质资源。然而,与无根浮萍相关的微生物群落及其在广泛微生物来源中的功能特性在很大程度上仍未得到研究。本研究调查了无根浮萍微生物群落的结构和功能及其对植物生长的影响。

结果

用无菌的无根紫萍与来自各种来源的细菌群落进行共培养实验,结果显示出不同的影响,与来自池塘水的细菌群落相比,来自城市污水的细菌群落对无根紫萍的生长有更明显的积极影响。16S rRNA扩增子测序发现,拜叶林克氏菌科、柄杆菌科、丛毛单胞菌科、嗜甲基菌科、根瘤菌科和鞘脂单胞菌科一直保持保守,并被确定为无根浮萍微生物群落的核心分类群。功能分析表明,与细菌定殖和适应无根形态相关的基因有助于选择性微生物群落的招募,在运动性、趋化性、鞭毛组装、群体感应和ABC转运蛋白方面功能丰富。此外,还发现蛭弧菌科、拜叶林克氏菌科和鞘脂单胞菌科可能作为“枢纽微生物”和“关键分类群”,塑造群落结构并直接或间接影响无根浮萍的生长。

结论

总体而言,本研究结果揭示了无根浮萍微生物群落在不同微生物来源中的强大核心分类群和功能概况,某些分类群与有根浮萍中的不同。本研究全面表征了无根浮萍微生物群落并增进了对其的理解,为开发高效生物质生产系统提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/157e/12329958/5a0bfe09e212/40793_2025_759_Fig1_HTML.jpg

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