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首页> 外文期刊>Environmental microbiology >Light availability affects stream biofilm bacterial community composition and function, but not diversity
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Light availability affects stream biofilm bacterial community composition and function, but not diversity

机译:光的可用性影响流生物膜细菌群落组成和功能,但不影响多样性

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Changes in riparian vegetation or water turbidity and browning in streams alter the local light regime with potential implications for stream biofilms and ecosystem functioning. We experimented with biofilms in microcosms grown under a gradient of light intensities (range: 5-152 mu mole photons s(-1) m(-2)) and combined 454-pyrosequencing and enzymatic activity assays to evaluate the effects of light on biofilm structure and function. We observed a shift in bacterial community composition along the light gradient, whereas there was no apparent change in alpha diversity. Multifunctionality, based on extracellular enzymes, was highest under high light conditions and decoupled from bacterial diversity. Phenol oxidase activity, involved in the degradation of polyphenolic compounds, was twice as high on average under the lowest compared with the highest light condition. This suggests a shift in reliance of microbial heterotrophs on biofilm phototroph-derived organic matter under high light availability to more complex organic matter under low light. Furthermore, extracellular enzyme activities correlated with nutrient cycling and community respiration, supporting the link between biofilm structure-function and biogeochemical fluxes in streams. Our findings demonstrate that changes in light availability are likely to have significant impacts on biofilm structure and function, potentially affecting stream ecosystem processes.
机译:河岸河岸植被的变化或水的浑浊和褐变改变了当地的光照状况,对河流生物膜和生态系统功能具有潜在的影响。我们在光强度梯度(范围:5-152μmol光子s(-1)m(-2))下生长的微观世界中对生物膜进行了实验,并结合了454-焦磷酸测序和酶活性测定法来评估光对生物膜的影响结构和功能。我们观察到细菌群落组成沿光梯度发生变化,而α多样性没有明显变化。基于细胞外酶的多功能性在强光条件下最高,并且与细菌多样性脱钩。与最高光照条件相比,在最低的条件下,参与多酚化合物降解的苯酚氧化酶活性平均要高两倍。这表明在高光利用率下,微生物异养生物对生物膜光养生物衍生有机物的依赖向低光照下更复杂的有机物转移。此外,细胞外酶活性与养分循环和群落呼吸有关,支持生物膜结构功能与河流中生物地球化学通量之间的联系。我们的发现表明,可用光的变化可能会对生物膜的结构和功能产生重大影响,并可能影响河流生态系统过程。

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