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Evolution of cis elements in the differential expression of two Hoxa2 coparalogous genes in pufferfish (Takifugu rubripes)

机译:河豚(Takifugu rubripes)中两个Hoxa2同源基因差异表达中顺式元件的进化

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摘要

Sequence divergence in cis-regulatory elements is an important mechanism contributing to functional diversity of genes during evolution. Gene duplication and divergence provide an opportunity for selectively preserving initial functions and evolving new activities. Many vertebrates have 39 Hox genes organized into four clusters (Hoxa–Hoxd); however, some ray-finned fishes have extra Hox clusters. There is a single Hoxa2 gene in most vertebrates, whereas fugu (Takifugu rubripes) and medaka (Oryzias latipes) have two coparalogous genes [Hoxa2(a) and Hoxa2(b)]. In the hindbrain, both genes are expressed in rhombomere (r) 2, but only Hoxa2(b) is expressed in r3, r4, and r5. Multiple regulatory modules directing segmental expression of chicken and mouse Hoxa2 genes have been identified, and each module is composed of a series of discrete elements. We used these modules to investigate the basis of differential expression of duplicated Hoxa2 genes, as a model for understanding the divergence of cis-regulatory elements. Therefore, we cloned putative regulatory regions of the fugu and medaka Hoxa2(a) and -(b) genes and assayed their activity. We found that these modules direct reporter expression in a chicken assay, in a manner corresponding to their endogenous expression pattern in fugu. Although sequence comparisons reveal many differences between the two coparalogous genes, specific subtle changes in seven cis elements of the Hoxa2(a) gene restore segmental regulatory activity. Therefore, drift in subsets of the elements in the regulatory modules is responsible for the differential expression of the two coparalogous genes, thus providing insight into the evolution of cis elements.
机译:顺式调控元件中的序列差异是在进化过程中促进基因功能多样性的重要机制。基因复制和分化为选择性保留初始功能和发展新活动提供了机会。许多脊椎动物有39个Hox基因组成四个簇(Hoxa–Hoxd)。但是,有些鱼鳍鱼有多余的Hox簇。大多数脊椎动物中只有一个Hoxa2基因,而河豚(Takifugu rubripes)和and(Oryzias latipes)具有两个同系同源基因[Hoxa2(a)和Hoxa2(b)]。在后脑中,两个基因均在rhombomere(r)2中表达,但仅Hoxa2(b)在r3,r4和r5中表达。已经确定了指导鸡和小鼠Hoxa2基因分段表达的多个调控模块,并且每个模块由一系列离散元件组成。我们使用这些模块来调查重复的Hoxa2基因差异表达的基础,作为理解顺式调控元件差异的模型。因此,我们克隆了fugu和medaka Hoxa2(a)和-(b)基因的推定调控区,并分析了它们的活性。我们发现这些模块以对应于它们在河豚中的内源表达模式的方式指导鸡测定中的报告基因表达。虽然序列比较揭示了两个同系同源基因之间的许多差异,但是Hoxa2(a)基因的七个顺式元件中的特定细微变化恢复了部分调节活性。因此,调节模块中元素子集的漂移是导致两个共同源基因差异表达的原因,从而提供了对顺式元素进化的了解。

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