首页> 外文期刊>Progress in Oceanography >Cold seep and oxygen minimum zone associated sources of margin heterogeneity affect benthic assemblages, diversity and nutrition at the Cascadian margin (NE Pacific Ocean)
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Cold seep and oxygen minimum zone associated sources of margin heterogeneity affect benthic assemblages, diversity and nutrition at the Cascadian margin (NE Pacific Ocean)

机译:冷渗流和氧气最小区域相关的边缘异质性源影响卡斯卡迪尔边缘(东北太平洋)的底栖组合,多样性和营养

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摘要

Hydrate Ridge (HR), located on the northeastern Pacific margin off Oregon, is characterized by the presence of outcropping hydrates and active methane seepage. Additionally, permanent low oxygen conditions overlay the benthic realm. This study evaluated the relative influence of both seepage and oxygen minima as sources of habitat heterogeneity and potential stress-inducing features on the bathyal metazoan benthos (primarily nematodes) at three different seep and non-seep HR locations, exposed to decreasing bottom-water oxygen concentrations with increasing water depth. The nematode seep communities at HR exhibited low diversity with dominance of only one or two genera (Daptonema and Metadesmolaimus), elevated average individual biomass and δ~(13)C evidence for strong dependance on chemosynthesis-derived carbon, resembling deep-sea seeps worldwide. Although the HR seep habitats harbored a distinct nematode community like in other known seep communities, they differed from deep-sea seeps in well-oxygenated waters based on that they shared the dominant genera with the surrounding non-seep sediments overlain by oxygen-deficient bottom water. The homogenizing effect of the oxygen minimum zone on the seep nematode assemblages and surrounding sediments was constant with increasing water depth and concomitant greater oxygen-deficiency, resulting in a loss of habitat heterogeneity.
机译:水合物岭(HR)位于俄勒冈州东北太平洋边缘,其特征是存在露头水合物和活跃的甲烷渗漏。此外,永久性的低氧条件覆盖了底栖生物领域。这项研究评估了在三个不同的渗水和非渗水HR位置,暴露于底水氧气减少的情况下,作为栖息地异质性来源和潜在胁迫诱导特征的渗漏和氧极小值的相对影响,它们对水生后生动物底栖动物(主要是线虫)浓度随水深的增加而增加。 HR的线虫渗漏群落表现出低多样性,仅占一个或两个属(Daptonema和Metadesmolaimus)的优势,平均个体生物量和δ〜(13)C升高,证明对化学合成来源的碳有很强的依赖性,类似于全世界的深海渗漏。 。尽管HR渗漏生境像其他已知的渗漏群落一样具有独特的线虫群落,但它们与含氧量较高的水域中的深海渗漏有所不同,因为它们与周围的非深层沉积物共有优势属,并被缺氧的底部覆盖水。随着水深的增加和最小缺氧量的增加,最小氧区对渗透线虫和周围沉积物的均质作用是恒定的,从而导致栖息地异质性的丧失。

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  • 来源
    《Progress in Oceanography》 |2012年第1期|p.77-92|共16页
  • 作者单位

    Biology Department, Marine Biology Section, Ghent University, Krijgslaan 281/Stem S8, 9000 Cent, Belgium;

    Integrative Oceanography Division, Scripps Institution of Oceanography, 9500 Gilman Drive, La Jolla, CA 92093-0218, USA;

    Biology Department, Marine Biology Section, Ghent University, Krijgslaan 281/Stem S8, 9000 Cent, Belgium;

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