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Shifts in composition of microbial communities of subtidal sandy sediments maximise retention of nutrients

机译:潮下沙质沉积物微生物群落组成的变化最大程度地保留了养分

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摘要

The density and composition of microbial communities of subtidal sandy sediments determines their role in the cycling of nutrients in coastal waters. It has previously been found that sediments disturbed by waves and currents have reduced biomass, greater productivity to respiration (P/R) ratios and a tendency to take up nutrients. Conversely, with shelter and greater biomass, P/R ratios were smaller and nutrients released. This study, in warm temperate waters, examined the consequences of high and low levels of hydrodynamic energy on the microbial community structure and biogeochemistry at two locations at different times of year. Measurements included biomarkers, sediment properties and exchanges of gases and nutrients. Microbial communities were dominated by diatoms and bacteria. Exposed sites, relative to paired sheltered sites, had smaller ratios of bacteria to benthic microalgae (BMA), larger C/N ratios, smaller indices of diagenetic activity, but smaller P/R ratios. The bacteria in exposed sediments exhibited biomass-normalised rates of respiration almost double those in sheltered sediments. This increased activity was most likely fuelled by elevated concentrations of photosynthates, secreted by BMA attached to sand grains. Changes in community composition owing to different levels of disturbance led to shifts in functioning that resulted in consistently small exchanges of nutrients.
机译:潮下沙质沉积物微生物群落的密度和组成决定了它们在沿海水域养分循环中的作用。以前已经发现,被海浪和水流干扰的沉积物减少了生物量,提高了呼吸效率(P / R),并吸收了养分。相反,随着庇护所和生物量的增加,P / R比值变小,养分释放。这项研究在温暖的温带水域中,研究了一年中不同时间两个位置的水动力能高低对微生物群落结构和生物地球化学的影响。测量包括生物标记,沉积物性质以及气体和营养物的交换。微生物群落以硅藻和细菌为主。相对于成对的庇护场所,暴露场所的细菌与底栖微藻(BMA)比率较小,C / N比率较大,成岩活性指数较小,但P / R比率较小。暴露的沉积物中的细菌表现出生物量归一化的呼吸速率,几乎是庇护沉积物中细菌的两倍。这种增加的活性最有可能是由附着在沙粒上的BMA分泌的光合产物浓度升高所推动的。由于干扰程度不同,社区组成发生变化,导致功能发生变化,导致营养素交换量始终较小。

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