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Genetic background of phenotypic variation

机译:表型变异的遗传背景

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A noteworthy feature of the living world is its bewildering variability. A key issue in several biological disciplines is the achievement of an understanding of the hereditary basis of this variability. Two opposing, but not necessarily irreconcilable conceptions attempt to explain the underlying mechanism. The gene function paradigm postulates that phenotypic variance is generated by the polymorphism in the coding sequences of genes. However, comparisons of a great number of homologous gene and protein sequences have revealed that they predominantly remained functionally conserved even across distantly related phylogenic taxa. Alternatively, the gene regulation paradigm assumes that differences in the cis-regulatory region of genes do account for phenotype variation within species. An extension of this latter concept is that phenotypic variability is generated by the polymorphism in the overall gene expression profiles of gene networks. In other words, the activity of a particular gene is a system property determined both by the cis-regulatory sequences of the given genes and by the other genes of a gene network, whose expressions vary among individuals, too. Novel proponents of gene function paradigm claim that functional genetic variance within the coding sequences of regulatory genes is critical for the generation of morphological polymorphism. Note, however, that these developmental genes play direct regulatory roles in the control of gene expression.
机译:生活世界的一个值得注意的特征是其令人困惑的可变性。在一些生物学学科中,一个关键问题是对这种变异的遗传基础的理解。两种对立的,但不一定是不可调和的概念试图解释这种潜在的机制。基因功能范例假设表型变异是由基因编码序列中的多态性产生的。但是,对大量同源基因和蛋白质序列的比较表明,即使在远缘的系统发生类群中,它们也基本上保持功能保守。或者,基因调控范例假设基因顺式调控区域的差异确实解释了物种内的表型变异。后一个概念的扩展是表型变异性是由基因网络的整体基因表达谱中的多态性产生的。换句话说,特定基因的活性是一种系统特性,既取决于给定基因的顺式调控序列,又取决于基因网络的其他基因,其表达在个体之间也有所不同。基因功能范式的新支持者声称,调节基因编码序列内的功能遗传变异对于形态多态性的产生至关重要。但是请注意,这些发育基因在基因表达的控制中起着直接的调节作用。

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