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Variations in Soil Bacterial Composition and Diversity in Newly Formed Coastal Wetlands

机译:新近形成的沿海湿地土壤细菌组成和多样性的变化

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摘要

Coastal ecosystems experience some of the most active land–ocean interactions in the world, and they are characterized by high primary productivity and biological diversity in the sediment. Given the roles of microorganisms in soil biogeochemical cycling and their multifaceted influence on soil ecosystems, it is critical to understand the variations and drivers of soil microbial communities across coastal ecosystems. Here, we studied soil bacterial community dynamics at different sites (from seawater to freshwater) in the Yellow River Delta, China. Bacterial community composition and diversity over four seasons were analyzed through 16S rRNA genes. Notably, the bacterial community near the ocean had the lowest alpha-diversity when compared with the other sites. No significant differences in bacterial communities among seasons were found, indicating that seasonal variation in temperature had little influence on bacterial community in the newly formed wetlands in the Yellow River Delta. Bacterial community structure changed substantially along the salinity gradient, revealing a clear ecological replacement along the gradual transformation gradient from freshwater to seawater environment. Redundancy analysis revealed that salinity was the main driver of variations in bacterial community structure and explained 17.5% of the variability. Our study provides a better understanding of spatiotemporally determined bacterial community dynamics in coastal ecosystems.
机译:沿海生态系统经历了世界上一些最活跃的陆海相互作用,其特点是初级生产力高和沉积物中的生物多样性。鉴于微生物在土壤生物地球化学循环中的作用及其对土壤生态系统的多方面影响,了解沿海生态系统中土壤微生物群落的变化和驱动因素至关重要。在这里,我们研究了中国黄河三角洲不同地点(从海水到淡水)的土壤细菌群落动态。通过16S rRNA基因分析了四个季节的细菌群落组成和多样性。值得注意的是,与其他地点相比,海洋附近的细菌群落的α多样性最低。没有发现季节之间细菌群落的显着差异,这表明温度的季节变化对黄河三角洲新形成的湿地中的细菌群落影响很小。细菌群落结构沿盐度梯度发生了显着变化,揭示了从淡水到海水环境的逐步过渡梯度上明显的生态替代。冗余分析表明,盐度是细菌群落结构变化的主要驱动力,并解释了17.5%的变化。我们的研究为沿海生态系统中时空确定的细菌群落动态提供了更好的理解。

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