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MicroRNAs and metazoan macroevolution: insights into canalization, complexity, and the Cambrian explosion.

机译:MicroRNA和后生动物的进化:深入了解渠道,复杂性和寒武纪爆发。

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摘要

One of the most interesting challenges facing paleobiologists is explaining the Cambrian explosion, the dramatic appearance of most metazoan animal phyla in the Early Cambrian, and the subsequent stability of these body plans over the ensuing 530 million years. We propose that because phenotypic variation decreases through geologic time, because microRNAs (miRNAs) increase genic precision, by turning an imprecise number of mRNA transcripts into a more precise number of protein molecules, and because miRNAs are continuously being added to metazoan genomes through geologic time, miRNAs might be instrumental in the canalization of development. Further, miRNAs ultimately allow for natural selection to elaborate morphological complexity, because by reducing gene expression variability, miRNAs increase heritability, allowing selection to change characters more effectively. Hence, miRNAs might play an important role in shaping metazoan macroevolution, and might be part of the solution to the Cambrian conundrum.
机译:古生物学家面临的最有趣的挑战之一是解释寒武纪的爆炸,寒武纪初期大多数后生动物门的戏剧性出现以及这些人体计划在随后的5.3亿年中的稳定性。我们建议由于表型变异随着地质时间的推移而减少,因为microRNA(miRNA)通过将不精确数量的mRNA转录物转变为更精确数量的蛋白质分子来提高基因精度,并且因为miRNA通过地质时间不断地被添加到后生动物基因组中,miRNA可能在发展渠道中发挥了作用。此外,miRNA最终允许自然选择以阐明形态的复杂性,因为miRNA通过降低基因表达的变异性来提高遗传力,从而使选择更有效地改变性状。因此,miRNA可能在形成后生动物巨进化中起重要作用,并且可能是寒武纪难题解决方案的一部分。

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