首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >The evolution of microbialite forms during the Early Triassic transgression: A case study in Chongyang of Hubei Province, South China
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The evolution of microbialite forms during the Early Triassic transgression: A case study in Chongyang of Hubei Province, South China

机译:南方湖北省崇阳中的微生物矿石形式的演变 - 以湖北省崇阳

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The widespread development of microbialites in shallow areas of the Tethys Ocean at the start of the Early Triassic reflects the deterioration of marine ecosystems in the aftermath of the extinction that marked the demise of the majority of Palaeozoic marine faunas. Here we present a study of the evolving microbialite forms and associated biotic assemblages of this pioneering microbialite interval from exposures at Chongyang, Hubei Province, China. This research provides a perspective on the effects of eustatic transgression on marine ecosystems as water depths increased at the beginning of Mesozoic, through the study of the changing forms, microfacies and distribution of microbialites. Microbialite forms evolved from stratiform stromatolites to a sequence of tabular thrombolites (with an intercalated layer of columnar stromatolites), followed by domical thrombolites that were overlain, in turn, by oolites. The stratiform stromatolites contain poorly preserved remains of calcified cyanobacteria, but microfossils with chambered structure can also be seen. Metazoan fossils increased from the base of the overlying tabular thrombolite, reflecting increasing biodiversity with deepening of seawater. The occurrence of columnar stromatolites within the tabular thrombolite may indicate a temporary sea-level shallowing. Foraminiferans and other metazoans are absent within the columnar stromatolites, but spherical cyanobacterial remains are extremely abundant. Well-preserved calcified cyanobacteria may reflect an absence of metazoan predation and/or carbonate supersaturation of seawater. As water deepened, domical thrombolites developed and the more complex seafloor relief created varied niches between and within the domes that harboured more ecologically diverse communities. During the process of transgression within the microbialite interval, carbon isotopes exhibit a negative relationship with biodiversity, implying that upwelling of anoxic deep-ocean water, if associated w
机译:早期三叠系开始的Thethys海洋浅地区的微生物岩层的广泛发展反映了海洋生态系统在灭绝之后的恶化,标志着大多数古生代海洋动物群的消亡。在这里,我们展示了从湖北省崇阳露出的曝光的这种开发的微生物间隔和相关生物组合的研究。本研究提供了对海洋生态系统对海洋生态系统的影响的看法,因为中生代的开始,通过研究变化的形式,微法和微生物矿石的分布。微生物石形式从层状脱盐胶质溶解到平板血栓栓塞序列(具有嵌入式柱状胶质抗体层),其次是抗鲕粒肋骨浸没的分子血栓栓塞。层状粒状醇酸盐含有良好保存的钙菌遗骸,但也可以看出具有腔室结构的微生物。美化的化石从覆盖的表格螺栓的基础增加,反映了海水深化的增加的生物多样性。板状血栓栓塞内的柱状粒盆种的发生可能表明临时海平浅。在柱状粒醇胶质盆内不存在对氨基苯胺和其他美唑烷,但球形蓝细菌仍然非常丰富。保存完好的钙化蓝藻可能反映海水的缺失和/或碳酸盐过饱和。随着水深加深的,巨大的血栓形成和越来越复杂的海底浮雕,在哈博尔统治着更生态的社区之间的圆顶之间的不同的利基。在微生物间隔内的迁移过程中,碳同位素与生物多样性表现出负面关系,这意味着缺氧深海水的升值,如果相关联

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