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基于 GeoChip 5.0 检测到的功能基因研究红树林参与生物地球化学循环的细菌生态角色

Ecological Role of Bacteria Involved in the Biogeochemical Cycles of Mangroves Based on Functional Genes Detected through GeoChip 5.0.

机构信息

Department of Biology, Shantou Universitygrid.263451.7, Shantou, Guangdong, People's Republic of China.

Environmental Science and Engineering Research Group, Guangdong Technion-Israel Institute of Technology, Shantou, Guangdong, People's Republic of China.

出版信息

mSphere. 2022 Feb 23;7(1):e0093621. doi: 10.1128/msphere.00936-21. Epub 2022 Jan 12.

Abstract

Mangroves provide a variety of ecosystem services and contribute greatly to the global biogeochemical cycle. Microorganisms play important roles in biogeochemical cycles and maintain the dynamic balance of mangroves. However, the roles of bacteria in the biogeochemical cycles of mangroves and their ecological distribution and functions remain largely uncharacterized. This study thus sought to analyze and compare the ecological distributions and potential roles of bacteria in typical mangroves using 16S rRNA gene amplicon sequencing and GeoChip. Interestingly, the bacterial community compositions were largely similar in the studied mangroves, including Shenzhen, Yunxiao, Zhanjiang, Hainan, Hongkong, Fangchenggang, and Beihai mangroves. Moreover, and were the most abundant microorganisms in the mangroves. Furthermore, most of the bacterial communities were significantly correlated with phosphorus levels (0.05; -0.93 <  < 0.93), suggesting that this nutrient is a vital driver of bacterial community composition. Additionally, GeoChip analysis indicated that the functional genes , , , and were highly abundant in the studied mangroves, suggesting that carbon degradation, denitrification, sulfite reduction, and polyphosphate degradation are crucial processes in typical mangroves. Moreover, several genera were found to synergistically participate in biogeochemical cycles in mangroves. For instance, , , , , and were synergistically involved in the carbon, nitrogen, and sulfur cycles, whereas and Treponema were synergistically involved in the nitrogen cycle and the sulfur cycle. Taken together, our findings provide novel insights into the ecological roles of bacteria in the biogeochemical cycles of mangroves. Bacteria have important functions in biogeochemical cycles, but studies on their function in an important ecosystem, mangroves, are still limited. Here, we investigated the ecological role of bacteria involved in biogeochemical cycles in seven representative mangroves of southern China. Furthermore, various functional genes from bacteria involved in biogeochemical cycles were identified by GeoChip 5.0. The functional genes associated with the carbon cycle (particularly carbon degradation) were the most abundant, suggesting that carbon degradation is the most active process in mangroves. Additionally, some high-abundance bacterial populations were found to synergistically mediate key biogeochemical cycles in the mangroves, including , Pseudomonas, Treponema, , and . In a word, our study gives novel insights into the function of bacteria in biogeochemical cycles in mangroves.

摘要

红树林提供了多种生态系统服务,对全球生物地球化学循环做出了巨大贡献。微生物在生物地球化学循环中发挥着重要作用,维持着红树林的动态平衡。然而,细菌在红树林生物地球化学循环中的作用及其生态分布和功能在很大程度上仍未被阐明。因此,本研究采用 16S rRNA 基因扩增子测序和 GeoChip 技术,分析和比较了典型红树林中细菌的生态分布和潜在作用。有趣的是,在所研究的红树林中,包括深圳、云霄、湛江、海南、香港、防城港和北海红树林,细菌群落组成在很大程度上是相似的。此外,和 是红树林中最丰富的微生物。此外,大多数细菌群落与磷水平显著相关(0.05;-0.93< < <0.93),表明这种养分是细菌群落组成的重要驱动因素。此外,GeoChip 分析表明,在所研究的红树林中,功能基因 、 、 、 高度丰富,表明碳降解、反硝化、亚硫酸盐还原和多磷酸盐降解是典型红树林中的关键过程。此外,发现几个属协同参与了红树林的生物地球化学循环。例如, 、 、 、 、 和 协同参与了碳、氮和硫循环,而 和 Treponema 协同参与了氮循环和硫循环。总之,我们的研究结果为细菌在红树林生物地球化学循环中的生态作用提供了新的见解。 细菌在生物地球化学循环中具有重要功能,但关于它们在重要生态系统——红树林中的功能的研究仍然有限。在这里,我们调查了中国南方七个有代表性的红树林中参与生物地球化学循环的细菌的生态作用。此外,还通过 GeoChip 5.0 鉴定了与细菌参与生物地球化学循环相关的各种功能基因。与碳循环(特别是碳降解)相关的功能基因最为丰富,表明碳降解是红树林中最活跃的过程。此外,还发现一些高丰度的细菌种群协同调节红树林中的关键生物地球化学循环,包括 、Pseudomonas、Treponema、、和 。总之,我们的研究为细菌在红树林生物地球化学循环中的功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16d4/8754168/2c564a648b6e/msphere.00936-21-f001.jpg

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