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Environmental Control on Microbial Turnover of Leaf Carbon in Streams – Ecological Function of Phototrophic-Heterotrophic Interactions

机译:溪流中叶片碳的微生物周转的环境控制-光养-异养相互作用的生态功能

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摘要

In aquatic ecosystems, light availability can significantly influence microbial turnover of terrestrial organic matter through associated metabolic interactions between phototrophic and heterotrophic communities. However, particularly in streams, microbial functions vary significantly with the structure of the streambed, that is the distribution and spatial arrangement of sediment grains in the streambed. It is therefore essential to elucidate how environmental factors synergistically define the microbial turnover of terrestrial organic matter in order to better understand the ecological role of photo-heterotrophic interactions in stream ecosystem processes. In outdoor experimental streams, we examined how the structure of streambeds modifies the influence of light availability on microbial turnover of leaf carbon (C). Furthermore, we investigated whether the studied relationships of microbial leaf C turnover to environmental conditions are affected by flow intermittency commonly occurring in streams. We applied leaves enriched with a 13C-stable isotope tracer and combined quantitative and isotope analyses. We thereby elucidated whether treatment induced changes in C turnover were associated with altered use of leaf C within the microbial food web. Moreover, isotope analyses were combined with measurements of microbial community composition to determine whether changes in community function were associated with a change in community composition. In this study, we present evidence, that environmental factors interactively determine how phototrophs and heterotrophs contribute to leaf C turnover. Light availability promoted the utilization of leaf C within the microbial food web, which was likely associated with a promoted availability of highly bioavailable metabolites of phototrophic origin. However, our results additionally confirm that the structure of the streambed modifies light-related changes in microbial C turnover. From our observations, we conclude that the streambed structure influences the strength of photo-heterotrophic interactions by defining the spatial availability of algal metabolites in the streambed and the composition of microbial communities. Collectively, our multifactorial approach provides valuable insights into environmental controls on the functioning of stream ecosystems.
机译:在水生生态系统中,光的可利用性会通过光养性和异养性群落之间的相关代谢相互作用,极大地影响陆地有机物的微生物转化。但是,特别是在溪流中,微生物功能随河床的结构(即,河床中沉积物颗粒的分布和空间布置)而显着变化。因此,必须阐明环境因素如何协同作用来定义陆地有机物的微生物转化,以便更好地了解光-营养相互作用在河流生态系统过程中的生态作用。在室外实验溪流中,我们检查了河床的结构如何修改光利用率对叶片碳(C)微生物转化的影响。此外,我们调查了微生物叶片C周转率与环境条件之间的关系研究是否受溪流中经常发生的水流间歇性影响。我们应用富含 13 C稳定同位素示踪剂的叶片,并结合了定量分析和同位素分析。因此,我们阐明了处理引起的碳转换的变化是否与微生物食物网中叶碳的使用变化有关。此外,同位素分析与微生物群落组成的测量相结合,以确定群落功能的变化是否与群落组成的变化相关。在这项研究中,我们提供证据表明,环境因素相互作用决定了光养和异养如何促进叶片C的更新。光的可用性促进了微生物食物网中叶片C的利用,这很可能与光养性来源的高生物利用度代谢产物的可用性提高有关。但是,我们的结果还证实了流化床的结构可以改变微生物C周转中与光有关的变化。根据我们的观察,我们得出的结论是,流化床结构通过定义流化床中藻类代谢物的空间可用性和微生物群落组成来影响光-异养相互作用的强度。总的来说,我们的多因素方法为河流生态系统功能的环境控制提供了宝贵的见解。

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