Structure and Functions of Endophytic Bacterial Communities Associated with Sphagnum Mosses and Their Drivers in Two Different Nutrient Types of Peatlands

IF 3.3 3区 生物学 Q2 ECOLOGY Microbial Ecology Pub Date : 2024-02-26 DOI:10.1007/s00248-024-02355-6
Yue Wang, Dan Xue, Xuhui Chen, Qing Qiu, Huai Chen
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Abstract

Sphagnum mosses are keystone plant species in the peatland ecosystems that play a crucial role in the formation of peat, which shelters a broad diversity of endophytic bacteria with important ecological functions. In particular, methanotrophic and nitrogen-fixing endophytic bacteria benefit Sphagnum moss hosts by providing both carbon and nitrogen. However, the composition and abundance of endophytic bacteria from different species of Sphagnum moss in peatlands of different nutrient statuses and their drivers remain unclear. This study used 16S rRNA gene amplicon sequencing to examine endophytic bacterial communities in Sphagnum mosses and measured the activity of methanotrophic microbial by the 13C-CH4 oxidation rate. According to the results, the endophytic bacterial community structure varied among Sphagnum moss species and Sphagnum capillifolium had the highest endophytic bacterial alpha diversity. Moreover, chlorophyll, phenol oxidase, carbon contents, and water retention capacity strongly shaped the communities of endophytic bacteria. Finally, Sphagnum palustre in Hani (SP) had a higher methane oxidation rate than S. palustre in Taishanmiao. This result is associated with the higher average relative abundance of Methyloferula an obligate methanotroph in SP. In summary, this work highlights the effects of Sphagnum moss characteristics on the endophytic bacteriome. The endophytic bacteriome is important for Sphagnum moss productivity, as well as for carbon and nitrogen cycles in Sphagnum moss peatlands.

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两种不同营养类型泥炭地中与泥炭藓相关的内生细菌群落的结构和功能及其驱动因素
泥炭藓是泥炭地生态系统中的关键植物物种,在泥炭的形成过程中起着至关重要的作用。特别是,甲烷营养和固氮内生细菌通过提供碳和氮而使泥炭藓宿主受益。然而,不同营养状况泥炭地中不同种类斯帕格藓的内生细菌的组成和丰度及其驱动因素仍不清楚。本研究利用 16S rRNA 基因扩增片段测序技术研究了泥炭藓中的内生细菌群落,并通过 13C-CH4 氧化率测定了甲烷营养微生物的活性。结果表明,不同苔藓种类的内生细菌群落结构各不相同,其中霞糠藓的内生细菌α多样性最高。此外,叶绿素、酚氧化酶、碳含量和保水能力也对内生细菌群落有很大影响。最后,哈尼(SP)的泥炭藓甲烷氧化率高于泰山庙的泥炭藓甲烷氧化率。这一结果与哈尼(SP)地区甲烷必养菌(Methyloferula)的平均相对丰度较高有关。总之,这项研究强调了石炭藓特性对内生细菌群的影响。内生细菌群对泥炭藓的生产力以及泥炭藓泥炭地的碳和氮循环非常重要。
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来源期刊
Microbial Ecology
Microbial Ecology 生物-海洋与淡水生物学
CiteScore
6.90
自引率
2.80%
发文量
212
审稿时长
3-8 weeks
期刊介绍: The journal Microbial Ecology was founded more than 50 years ago by Dr. Ralph Mitchell, Gordon McKay Professor of Applied Biology at Harvard University in Cambridge, MA. The journal has evolved to become a premier location for the presentation of manuscripts that represent advances in the field of microbial ecology. The journal has become a dedicated international forum for the presentation of high-quality scientific investigations of how microorganisms interact with their environment, with each other and with their hosts. Microbial Ecology offers articles of original research in full paper and note formats, as well as brief reviews and topical position papers.
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