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Living deep-sea benthic foraminifera from the Cap de Creus Canyon(western Mediterranean):Faunal-geochemical interactions

机译:Cap de Creus峡谷(西地中海)的深海底栖有孔虫:植物-地球化学相互作用

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摘要

Rose-Bengal-stained benthic foraminifera were sampled along a depth transect from the Cap de Creus Canyon and the adjacent slope. Well-stained individuals were studied in the top 5 cm of sediment and the faunal abundances and assemblages were compared against pore-water geochemistry and biochemical composition of the sediment. Total standing stocks (TSS) of foraminifera were positively correlated with the chloroplastic pigment equivalents inventory (CPE_(inv); here interpreted as food quantity) and the ratio of chlorophyll-α and phaeopigment inventories (Chl-α_(inv)/PhaeO_(inv); here interpreted as food quality), suggesting food quality as well as quantity play an important role in structuring the foraminiferal community. Food quality and food quantity were also identified by detrended correspondence analyses (DCA) as being the most important environmental parameters shaping the foraminiferal community structure (abundance and faunal composition). In addition, sediment redox chemistry (based here on pore-water nitrate) played an important role in controlling the foraminiferal diversity (H') as a negative correlation was seen between this parameter and pore-water nitrate penetration depth (NPD). No conclusive evidence of intense physical disturbance on the benthic canyon community was observed, although it could be anticipated in the area due to shelf-water downwelling (SWD) and dense shelf-water cascading (DSWC). However, foraminiferal faunas living in the canyon head and upper canyon environments may profit from the higher organic-matter availability, which is likely to be related to SWD and DSWC. The similarity between the deeper canyon and slope faunas suggests that sediment characteristics and the associated organic-matter transported by SWC and DSWC do not have a permanent effect at these depths.
机译:沿孟加拉角(Cap de Creus Canyon)和相邻斜坡的深度断面对玫瑰-孟加拉染色的底栖有孔虫进行了采样。研究人员在沉积物的前5 cm处对染色良好的个体进行了研究,并比较了动物的丰度和组合与沉积物的孔隙水地球化学和生化组成。有孔虫的总存量(TSS)与叶绿素颜料当量清单(CPE_(inv);此处解释为食物数量)以及叶绿素-α和吞噬物清单的比例(Chl-α_(inv)/ PhaeO_(inv)正相关。 );这里解释为食品质量),表明食品质量和数量在有孔虫群落的构建中起着重要作用。通过去趋势对应分析(DCA)还确定了食品质量和食品数量,这是塑造有孔虫群落结构(丰富度和动物组成)的最重要的环境参数。此外,沉积物氧化还原化学(此处基于孔隙水硝酸盐)在控制有孔虫多样性(H')中起着重要作用,因为该参数与孔隙水硝酸盐渗透深度(NPD)之间存在负相关关系。尽管在该地区由于架子水下降井(SWD)和密集的架子水梯级(DSWC)可以预见到该区域,但没有观察到确凿的证据表明底栖峡谷群落发生强烈的物理扰动。但是,生活在峡谷顶部和峡谷上部环境中的有孔虫动物可能会受益于更高的有机物可用性,这可能与SWD和DSWC有关。更深的峡谷和斜坡动物区系之间的相似性表明,SWC和DSWC输送的沉积物特征和相关的有机物在这些深度上没有永久性的影响。

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  • 来源
    《Deep-Sea Research》 |2012年第6期|p.22-42|共21页
  • 作者单位

    Utrecht University, Department of Earth Sciences, Budapestlaan 4, 3584 CD Utrecht, The Netherlands Leibniz Center for Tropical Marine Research (ZMT),Fahrenheitstrasse 6, 28359 Bremen, Germany;

    Utrecht University, Department of Earth Sciences, Budapestlaan 4, 3584 CD Utrecht, The Netherlands;

    Utrecht University, Department of Earth Sciences, Budapestlaan 4, 3584 CD Utrecht, The Netherlands University of California Berkeley, Department of Integrated Biology/University of California Museum of Paleontology, 3060 Valley Life Sciences Building 3140,Berkeley, CA 94720, USA;

    Royal Netherlands Institute for Sea Research (NIOZ), Landsdiep 4, 1797 SZ 't Horntje (Texel), The Netherlands;

    Jacobs University Bremen, Campus Ring I, 28759 Bremen, Germany Department of Global Change Research, IMEDEA (CSIC-UIB)Institute Mediterraneo de Estudios Avanzados, Miquel Marques 21,07190 Esporles, Spain;

    Royal Netherlands Institute for Sea Research (NIOZ), Landsdiep 4, 1797 SZ 't Horntje (Texel), The Netherlands;

    Royal Netherlands Institute for Sea Research (NIOZ), Landsdiep 4, 1797 SZ 't Horntje (Texel), The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    benthic foraminifera; redox chemistry; submarine canyons; sedimentary phytopigments;

    机译:底栖有孔虫氧化还原化学海底峡谷沉积物;
  • 入库时间 2022-08-18 03:34:01

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