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Novel use of burrow casting as a research tool in deep-sea ecology

机译:洞穴铸造作为深海生态学研究工具的新颖使用

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Although the deep sea is the largest ecosystem on Earth, its infaunal ecology remains poorly understood because of the logistical challenges. Here we report the morphology of relatively large burrows obtained by in situ burrow casting at a hydrocarbon-seep site and a non-seep site at water depths of 1173 and 1455 m, respectively. Deep and complex burrows are abundant at both sites, indicating that the burrows introduce oxygen-rich sea water into the deep reducing substrate, thereby influencing benthic metabolism and nutrient fluxes, and providing an oxic microhabitat for small organisms. Burrow castings reveal that the solemyid bivalve Acharax johnsoni mines sulphide from the sediment, as documented for related shallow-water species. To our knowledge, this is the first study to examine in situ burrow morphology in the deep sea by means of burrow casting, providing detailed information on burrow structure which will aid the interpretation of seabed processes in the deep sea.
机译:虽然深海是地球上最大的生态系统,但由于后勤挑战,其婴儿生态学仍然明显。 在这里,我们报告了通过在烃类渗透现场的原位洞穴铸造获得的相对大的挖掘的形态分别在1173和1455米的水深。 深层和复杂的洞穴在两个地点都是丰富的,表明洞穴将富氧海水引入深度还原基质,从而影响底栖代谢和营养素,并为小生物提供氧微藻。 洞穴铸件揭示了独一无二的双抗凯索·约翰逊从沉淀物中挖掘硫化物,如相关浅水物种。 为了我们的知识,这是第一次通过洞穴铸造在深海中审查深海的原位洞穴形态的研究,提供有关洞穴结构的详细信息,有助于解释深海海底过程。

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