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Impacts of bioturbation on temporal variation in bacterial and archaeal nitrogen-cycling gene abundance in coastal sediments

机译:生物扰动对沿海沉积物中细菌和古细菌氮循环基因丰度的时间变化的影响

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摘要

In marine environments, macrofauna living in or on the sediment surface may alter the structure, diversity and function of benthic microbial communities. In particular, microbial nitrogen (N)-cycling processes may be enhanced by the activity of large bioturbating organisms. Here, we study the effect of the burrowing mud shrimp Upogebia deltaura upon temporal variation in the abundance of genes representing key N-cycling functional guilds. The abundance of bacterial genes representing different N-cycling guilds displayed different temporal patterns in burrow sediments in comparison with surface sediments, suggesting that the burrow provides a unique environment where bacterial gene abundances are influenced directly by macrofaunal activity. In contrast, the abundances of archaeal ammonia oxidizers varied temporally but were not affected by bioturbation, indicating differential responses between bacterial and archaeal ammonia oxidizers to environmental physicochemical controls. This study highlights the importance of bioturbation as a control over the temporal variation in nitrogen-cycling microbial community dynamics within coastal sediments.
机译:在海洋环境中,生活在沉积物表面或其上的大型动物可能会改变底栖微生物群落的结构,多样性和功能。特别是,微生物氮(N)循环过程可以通过大型生物扰动生物的活动来增强。在这里,我们研究穴居泥虾Upogebia deltaura对代表关键N循环功能行会的基因丰度的时间变化的影响。与地表沉积物相比,代表不同N循环行会的细菌基因的丰度在洞穴沉积物中表现出不同的时间模式,这表明该洞穴提供了独特的环境,其中细菌基因的丰度直接受到大型动物活动的影响。相反,古细菌氨氧化剂的含量随时间变化,但不受生物扰动的影响,这表明细菌和古细菌氨氧化剂对环境物理化学控制的响应不同。这项研究强调了生物扰动作为控制沿海沉积物中氮循环微生物群落动态随时间变化的重要性。

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