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Microbial activity and sediment disturbance modulate the vertical water flux in sandy sediments

机译:微生物活动和沉积物扰动调节沙质沉积物中的垂直水通量

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摘要

Little research has been conducted on the influence of microbial communities, sediment disturbances, and their interaction on the Vertical Water Flux (VWF) across a hydraulically complex streambed. Our study was aimed at the effects of microbial activity and shallow-sediment disturbance on VWF in sandbed flumes. We assessed the dynamics of VWF and the development of a microbial community during 30 d (June-July 2010) in 16 outdoor flumes with 2 types of bedform shape (level and ripple). We operated 8 flumes in constant darkness (no-light), and 8 in daylight to gain information on the relative significance of algae and heterotrophic microorganisms. We simulated a shallow-sediment disturbance after 21 d and compared microbial activity and VWF before and after the disturbance. We measured organic matter content, abundance of organisms, microbial activity, precipitation of CaCO3, and 02 bubbles resulting from primary production before and after the disturbance. VWF differed among treatments after 13 d. Algal and bacterial cells embedded in an extracellular polymer network, algal and microbial precipitation of CaCO3, and production of 02 bubbles in the uppermost sediment blocked the sediment pore space and disrupted VWF under daylight conditions, whereas bacterial cells and microbial precipitation of CaCO3 reduced VWF in no-light flumes. Microbial activity and organic matter were not affected by the shallow-sediment disturbance, but VWF was restored. VWF can be controlled by microbial activity and shallow-sediment disturbances and should be seen as spatially heterogeneous and fluctuating in time on small scales.
机译:关于微生物群落,沉积物扰动及其在整个复杂水力流床中对垂直水通量(VWF)的相互作用的研究很少。我们的研究旨在研究微生物活性和浅层沉积物扰动对沙床水槽中VWF的影响。我们评估了30天(2010年6月至2010年7月)期间VWF的动态变化以及微生物群落的发展情况,研究了16种室外水槽中的2种床形(水平和波纹)。我们在恒定的黑暗中(无光照)操作了8个水槽,在白天则操作了8个水槽,以获取有关藻类和异养微生物的相对重要性的信息。我们模拟了21天后的浅层沉积物扰动,并比较了扰动前后的微生物活性和VWF。我们测量了有机物含量,有机物含量,微生物活性,CaCO3的沉淀以及扰动前后一次生产产生的02气泡。 13 d后不同处理的VWF有所不同。藻类和细菌细胞嵌入细胞外聚合物网络中,CaCO3的藻类和微生物沉淀,以及最上层沉积物中02气泡的产生阻塞了沉积物的孔隙空间,并在日光条件下破坏了VWF,而细菌细胞和CaCO3的微生物沉淀降低了VCO中的VWF。没有灯光的水槽。浅层泥沙扰动并没有影响微生物的活动和有机质,但恢复了VWF。 VWF可以通过微生物活动和浅层沉积物的扰动来控制,应视为空间异质性并随时间在小范围内波动。

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