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间歇性溪流的底层带中有机碳处理的高比率。

High rates of organic carbon processing in the hyporheic zone of intermittent streams.

机构信息

Australian Rivers Institute, Griffith University, Nathan, Queensland, Australia.

Connected Waters Initiative Research Centre, UNSW Sydney, Australia.

出版信息

Sci Rep. 2017 Oct 16;7(1):13198. doi: 10.1038/s41598-017-12957-5.

Abstract

Organic carbon cycling is a fundamental process that underpins energy transfer through the biosphere. However, little is known about the rates of particulate organic carbon processing in the hyporheic zone of intermittent streams, which is often the only wetted environment remaining when surface flows cease. We used leaf litter and cotton decomposition assays, as well as rates of microbial respiration, to quantify rates of organic carbon processing in surface and hyporheic environments of intermittent and perennial streams under a range of substrate saturation conditions. Leaf litter processing was 48% greater, and cotton processing 124% greater, in the hyporheic zone compared to surface environments when calculated over multiple substrate saturation conditions. Processing was also greater in more saturated surface environments (i.e. pools). Further, rates of microbial respiration on incubated substrates in the hyporheic zone were similar to, or greater than, rates in surface environments. Our results highlight that intermittent streams are important locations for particulate organic carbon processing and that the hyporheic zone sustains this fundamental process even without surface flow. Not accounting for carbon processing in the hyporheic zone of intermittent streams may lead to an underestimation of its local ecological significance and collective contribution to landscape carbon processes.

摘要

有机碳循环是支撑生物圈内能量传递的基本过程。然而,对于间歇性溪流的下渗带中颗粒有机碳的处理速率,人们知之甚少,当下垫面水流停止时,下渗带往往是唯一的湿润环境。我们使用叶片凋落物和棉花分解实验以及微生物呼吸速率来量化在多种基质饱和条件下间歇性和常年性溪流的表层和下渗带环境中有机碳处理的速率。与表层环境相比,在多种基质饱和条件下计算时,下渗带的叶片凋落物处理速率高出 48%,棉花处理速率高出 124%。在更饱和的表层环境(即池塘)中,处理速率也更高。此外,下渗带中培养底物的微生物呼吸速率与表层环境中的速率相似或更高。我们的研究结果表明,间歇性溪流是颗粒有机碳处理的重要场所,即使没有表层水流,下渗带也能维持这一基本过程。如果不考虑间歇性溪流的下渗带中的碳处理,可能会低估其局部生态意义及其对景观碳过程的集体贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51ef/5643499/905ca5a528eb/41598_2017_12957_Fig1_HTML.jpg

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