Ab'/> Environmental covariation of metazoans and microbialites in the Lower Ordovician Boat Harbour Formation, Newfoundland
首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Environmental covariation of metazoans and microbialites in the Lower Ordovician Boat Harbour Formation, Newfoundland
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Environmental covariation of metazoans and microbialites in the Lower Ordovician Boat Harbour Formation, Newfoundland

机译:纽芬兰下奥莫瓦迪船港港港港麦芽素和微生物的环境变焦

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AbstractAn antagonistic view of the relationship between microbialites and metazoans has long been inferred, in part because of the large scale anticorrelation of these two groups through geologic time. The nexus of this relationship occurs in the Early Paleozoic Era: stromatolites declined in abundance as complex animals and algae diversified, but thrombolites, a type of microbialite little known before the Proterozoic-Cambrian boundary, proliferated for the first time. Well-preserved parasequences in the basal portion of the Lower Ordovician Boat Harbour Formation, western Newfoundland, contain a succession of stromatolites and thrombolites that permit an investigation into the role metazoans played in shaping the nature and abundance of microbialites in Early Paleozoic carbonate seas. Sessile benthic animals colonized thrombolite surfaces, but are nearly absent from stromatolites. Bioturbation rarely co-occurred with microbialites, but is widespread in clastic carbonates that lack microbialites. Our results, thus, support the hypothesis of ecological antagonism between microbial communities and motile benthic animals, but also demonstrate biological facilitation between thrombolites and both sessile benthic animals and nekton.Highlights?A
机译:<![cdata [ 抽象 Microbialites和Metazoans之间的关系的对抗视图长期被推断出来,部分原因是大规模的反作忍属通过地质时间的这两组。这种关系的Nexus发生在早期古生代时期:胚醇酸盐在丰满的动物和藻类多样化,但血栓凝集,一种棘手的微生物,在正常古代 - 寒武纪边界,第一次增殖。纽芬兰西部下奥莫瓦伊船船港港港组基部保存完好的假设含有脱麦盆种和血栓栓塞,允许调查塑造早期古生代碳酸盐海洋中微生物性的性质和丰度和丰富的角色。无柄底栖动物殖民溶栓表面,但几乎不存在胚醇橡胶。生物扰动很少与微生物矿石共同发生,但在缺乏微生物岩的碎屑碳酸盐中是普遍的。因此,我们的结果支持微生物社区和底栖动物之间生态拮抗作用的假设,也表明了血栓栓塞和无骨髓底栖动物和奈基尔顿之间的生物促进。 亮点 a

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