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Elevated CO2 and nitrogen addition affect the microbial abundance but not the community structure in salt marsh ecosystem

机译:升高的二氧化碳和氮气增加影响微生物丰富,但不是盐沼生态系统的群落结构

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摘要

With unique and important characteristics, salt marsh ecosystems are expected to be affected by elevated CO2 and N enrichment. Although various studies have assessed the effects of those changes on the vegetation of salt marshes, little information is available about their impact on microbes. In this study, we comprehensively analyzed the microbial community structure of soils responding to elevated CO2 (eCO(2)) and N addition (N) over 3 years in salt marsh ecosystem. We employed pyrosequencing, T-RFLP analysis, and quantitative PCR to study the bacterial, archaeal, and fungal communities. The overall results indicated that 1) eCO(2) and N affected the microbial abundance but not community structure significantly in salt marsh system, 2) due to their different ecophysiology, the responses of the three different microbial communities to eCO(2) and/or N addition varied with each group, 3) the composition (C3/C4 or diversity) of the plant community was important in structuring the microbial community of salt marsh ecosystems, which generally have low plant diversity, 4) the archaeal and fungal communities responded more strongly to eCO(2) and/or N addition than the bacterial community. This study represents the first comprehensive report of the effects of eCO(2) and/or N addition on the diverse microbial community structures of tidal marsh systems. It suggests that single or combined effect of eCO(2) and N on microbial abundance in salt marsh was obvious, and that the key groups playing an important role in the biogeochemical process can be shifted.
机译:由于独特而重要的特征,预计盐沼生态系统受到二氧化碳升高和浓缩的影响。虽然各种研究已经评估了这些变化对盐沼的植被的影响,但很少的信息可以获得对微生物的影响。在这项研究中,我们在盐沼生态系统中全面分析了响应于升高的CO 2(Eco(2))和N添加(N)的土壤的微生物群落结构。我们使用焦塞,T-RFLP分析和定量PCR来研究细菌,古老和真菌社区。总结果表明,1)生态(2)和N影响微生物系统,2)由于其不同的生态学,三种不同的微生物共和国对ECO(2)和/或N添加变化各组,3)植物群落的组合物(C3 / C4或多样性)在构建盐沼生态系统的微生物群落中是重要的,这通常具有低植物多样性,4)古老和真菌社区的作出反应比细菌群落更强烈地向Eco(2)和/或添加。本研究代表了ECO(2)和/或N添加对潮汐系统不同微生物群落结构的综合报告。它表明Eco(2)和N在盐沼中的单一或综合作用显而易见的是,在生物地理过程中发挥重要作用的关键群体可以转移。

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