保守基因家族的新颖性进化。

Gabriel V Markov, Ralf J Sommer
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引用次数: 6

摘要

当代进化生物学的主要目标之一是了解生物多样性的当前模式。这包括,首先,在生命的系统发育树的不同节点的特征分布的描述,其次,这些变化的功能解释。性状分布的分析在形态学和分子水平上都是一个强有力的工具。最近的高通量测序方法为在全基因组水平上研究生物体的遗传结构提供了新的机会。在真核生物中,一个重要的发现是基因数量和生物复杂性之间缺乏简单的相关性。相反,蛋白质的结构域结构正在成为大规模进化创新的中心焦点。在这里,我们回顾了昆虫和线虫保守基因家族中新颖性进化的例子。我们强调在没有全基因组复制的情况下如何产生分子新颖性,基因家族成员如何在不同的机制水平上多样化,以及基因表达如何在多种监管机制创新的背景下维持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The evolution of novelty in conserved gene families.

The evolution of novelty in conserved gene families.

The evolution of novelty in conserved gene families.

One of the major aims of contemporary evolutionary biology is the understanding of the current pattern of biological diversity. This involves, first, the description of character distribution at various nodes of the phylogenetic tree of life and, second, the functional explanation of such changes. The analysis of character distribution is a powerful tool at both the morphological and molecular levels. Recent high-throughput sequencing approaches provide new opportunities to study the genetic architecture of organisms at the genome-wide level. In eukaryotes, one overarching finding is the absence of simple correlations of gene count and biological complexity. Instead, the domain architecture of proteins is becoming a central focus for large-scale evolutionary innovations. Here, we review examples of the evolution of novelty in conserved gene families in insects and nematodes. We highlight how in the absence of whole-genome duplications molecular novelty can arise, how members of gene families have diversified at distinct mechanistic levels, and how gene expression can be maintained in the context of multiple innovations in regulatory mechanisms.

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