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Fossils, molecules and embryos: new perspectives on the Cambrian explosion.

机译:化石,分子和胚胎:关于寒武纪爆炸的新观点。

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The Cambrian explosion is named for the geologically sudden appearance of numerous metazoan body plans (many of living phyla) between about 530 and 520 million years ago, only 1.7% of the duration of the fossil record of animals. Earlier indications of metazoans are found in the Neoproterozic; minute trails suggesting bilaterian activity date from about 600 million years ago. Larger and more elaborate fossil burrows appear near 543 million years ago, the beginning of the Cambrian Period. Evidence of metazoan activity in both trace and body fossils then increased during the 13 million years leading to the explosion. All living phyla may have originated by the end of the explosion. Molecular divergences among lineages leading to phyla record speciation events that have been earlier than the origins of the new body plans, which can arise many tens of millions of years after an initial branching. Various attempts to date those branchings by using molecular clocks have disagreed widely. While the timing of the evolution of the developmental systems of living metazoan body plans is still uncertain, the distribution of Hox and other developmental control genes among metazoans indicates that an extensive patterning system was in place prior to the Cambrian. However, it is likely that much genomic repatterning occurred during the Early Cambrian, involving both key control genes and regulators within their downstream cascades, as novel body plans evolved.
机译:寒武纪爆炸的命名是在大约530至5.2亿年前的许多后生动物身体计划(许多活门)的地质突然出现,仅占动物化石记录持续时间的1.7%。在新元古代发现了后生动物的早期迹象。暗示双边活动的分钟记录可追溯到大约6亿年前。更大和更精细的化石洞穴出现在大约5.43亿年前,即寒武纪开始。在导致爆炸的1300万年中,痕量化石和人体化石中后生动物活动的证据随后增加。爆炸结束后,所有活的门都可能起源。世系间的分子分歧导致了门系的物种形成事件,其发生时间早于新的人体计划的起源,而新的身体计划的起源可能在最初分支后的几千万年中出现。通过使用分子钟来对那些分支定日期的各种尝试已广泛地不同。虽然活后生动物身体计划的发育系统的演化时间尚不确定,但Hox和其他发育控制基因在后生动物之间的分布表明,广泛的构图系统早于寒武纪。然而,随着新的人体计划的发展,在寒武纪早期可能发生了许多基因组重新分布,涉及关键控制基因和下游下游级联的调节子。

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