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Microbial decay analysis challenges interpretation of putative organ systems in Cambrian fuxianhuiids

机译:微生物衰减分析挑战寒武纪阜新水体假定器官系统的解释

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摘要

The Chengjiang fossil Lagerstätte (Cambrian Stage 3) from Yunnan, southern China is renowned for its soft-tissue preservation. Accordingly structures in fuxianhuiids, radiodontans and great appendage arthropods have been interpreted as the nervous and cardiovascular systems, including brains, hearts and blood vessels. That such delicate organ systems survive the fossilization process seems remarkable; given that this mode of preservation involves major taphonomic changes, such as flattening, microbial degradation, chemical alteration and replacement. Here, we document a range of taphonomic preservation states in numerous articulated individuals of Fuxianhuia protensa. We suggest that organic (partly iron mineral-replaced) bulbous structures in the head region, previously interpreted as brain tissue, along with sagittally located organic strands interpreted as part of the cardiovascular system or as nerve cords, may be better explained as microbial biofilms that developed following decomposition of the intestine, muscle and other connective tissues, forming halos surrounding the original organic remains.
机译:来自中国南方云南的澄江化石Lagerstätte(寒武纪3期)以软组织保存而闻名。相应地,阜新水体,放射性dontans和肢体节肢动物的结构已被解释为神经和心血管系统,包括大脑,心脏和血管。这种微妙的器官系统在化石过程中幸存下来似乎是非同寻常的。考虑到这种保存方式涉及重大的变相,例如变平,微生物降解,化学变化和置换。在这里,我们记录了在抚仙辉虾的许多关节个体中的一系列染色体保存状态。我们认为,头部区域中的有机(部分被铁矿物质替代的)球状结构,以前被解释为脑组织,以及矢状定位的有机链(被解释为心血管系统的一部分或神经索),可以更好地解释为微生物生物膜,在肠道,肌肉和其他结缔组织分解后发育,形成围绕原始有机残留物的光晕。

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