Renewed perspectives on the sedentary-pelagic last common bilaterian ancestor

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2022-08-11 DOI:10.1163/18759866-bja10034
A. Martynov, T. Korshunova
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引用次数: 1

Abstract

Various evaluations of the last common bilaterian ancestor (lcba) currently suggest that it resembled either a microscopic, non-segmented motile adult; or, on the contrary, a complex segmented adult motile urbilaterian. These fundamental inconsistencies remain largely unexplained. A majority of multidisciplinary data regarding sedentary adult ancestral bilaterian organization is overlooked. The sedentary-pelagic model is supported now by a number of novel developmental, paleontological and molecular phylogenetic data: (1) data in support of sedentary sponges, in the adult stage, as sister to all other Metazoa; (2) a similarity of molecular developmental pathways in both adults and larvae across sedentary sponges, cnidarians, and bilaterians; (3) a cnidarian-bilaterian relationship, including a unique sharing of a bona fide Hox-gene cluster, of which the evolutionary appearance does not connect directly to a bilaterian motile organization; (4) the presence of sedentary and tube-dwelling representatives of the main bilaterian clades in the early Cambrian; (5) an absence of definite taxonomic attribution of Ediacaran taxa reconstructed as motile to any true bilaterian phyla; (6) a similarity of tube morphology (and the clear presence of a protoconch-like apical structure of the Ediacaran sedentary Cloudinidae) among shells of the early Cambrian, and later true bilaterians, such as semi-sedentary hyoliths and motile molluscs; (7) recent data that provide growing evidence for a complex urbilaterian, despite a continuous molecular phylogenetic controversy. The present review compares the main existing models and reconciles the sedentary model of an urbilaterian and the model of a larva-like lcba with a unified sedentary(adult)-pelagic(larva) model of the lcba.
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对静止-远洋最后的共同双边祖先的新观点
目前,对最后一个常见的双侧祖先(lcba)的各种评估表明,它类似于一个微观的、不分节的能动成虫;或者,恰恰相反,是一个复杂的分段的成年运动性涡轮侧索。这些根本的不一致在很大程度上仍然无法解释。大多数关于久坐的成人祖先双侧组织的多学科数据被忽视了。定居的浮游动物模型现在得到了一些新的发育、古生物学和分子系统发育数据的支持:(1)支持成年阶段定居海绵作为所有其他后生动物的姐妹的数据;(2) 成虫和幼虫的分子发育途径在久坐海绵、线虫和双边动物中的相似性;(3) cnidarian双边关系,包括真正的Hox基因簇的独特共享,其进化外观与双边能动组织没有直接联系;(4) 寒武纪早期主要双边分支的定居和管栖代表的存在;(5) 埃迪卡拉纪分类群缺乏明确的分类归属,被重建为任何真正的双边门;(6) 早寒武纪和后来的真正双边动物(如半定居舌石和活动软体动物)的外壳之间的管状形态相似(以及埃迪卡拉纪定居云科明显存在原球茎状顶端结构);(7) 尽管存在持续的分子系统发育争议,但最近的数据为复杂的涡虫提供了越来越多的证据。本综述比较了现有的主要模型,并将涡虫的定居模型和幼虫样lcba的模型与lcba的统一定居(成年)-浮游(幼虫)模型进行了协调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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