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Distribution patterns of living benthic foraminifera from Cap Breton canyon, Bay of Biscay: Faunal response to sediment instability

机译:布雷顿角峡谷,比斯开湾生活底栖有孔虫的分布格局:动物对沉积物不稳定性的响应

摘要

Analysis of living (Rose Bengal-stained) benthic foraminifera in 13 multicorer samples taken along the Cap Breton canyon (Bay of Biscay) revealed that the combination of organic-rich material and sediment instability provides very specific benthic ecosystem conditions. The active canyon hosts different foraminiferal assemblages that appear to be determined by different types and frequencies of environmental disturbance at the sites. Most of them are strongly dominated by shallow-infaunal living taxa that combine a tolerance for low-quality organic matter with a high reproductive potential. Foraminiferal assemblages characterized by high densities, very superficially living taxa and strong dominance of bolivinids and buliminids, follow a poor pioneer fauna dominated by Technitella melo. These assemblages are observed in the narrow canyon axis, where frequent sediment resuspension occurs and affects habitat stability. Assemblages studied from sites outside the canyon axis are still dominated by shallow-infaunal species but show lower foraminiferal densities and higher diversities. Deep-infaunal taxa are only present in some inner meanders and more distal stations. These assemblages are typical for ecological niches that are relatively stable and unaffected by re-sedimentation processes. They have attained a more advanced stage of ecosystem stability. They are influenced by neither lateral sediment nor enriched organic matter input.
机译:对沿布雷顿角峡谷(比斯开湾)采集的13个多角样品中活的(孟加拉红染色的)底栖有孔虫进行的分析表明,富含有机物的物质和沉积物的不稳定性共同提供了非常特殊的底栖生态系统条件。活跃的峡谷拥有不同的有孔虫类组合,这些组合似乎是由站点上不同类型和频率的环境干扰所决定的。它们中的大多数被浅层真菌生活类群所主导,该类群对低质量有机物的耐受性与高繁殖潜能相结合。有孔虫组合以高密度,表面上非常活泼的类群和玻利尼维斯和蓝绿色植物的强烈优势为特征,随后出现了以Technitella melo为主的不良先驱动物群。在狭窄的峡谷轴线上观察到这些组合,在那里频繁发生沉积物重悬并影响栖息地的稳定性。从峡谷轴外的地点研究的组合仍然是浅无真菌的物种的主导,但有孔虫的密度较低,多样性较高。感染深处的生物分类仅存在于一些内部蜿蜒和更远端的站中。这些组件是相对稳定且不受重新沉降过程影响的生态位的典型代表。他们已经达到了生态系统稳定的更高阶段。它们既不受侧向沉积物的影响,也不受丰富的有机物输入的影响。

著录项

  • 作者

    S. Hess; F. Jorissen;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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