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首页> 外文期刊>BioEssays : >Shaping animal body plans in development and evolution by modulation of Hox expression patterns.
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Shaping animal body plans in development and evolution by modulation of Hox expression patterns.

机译:通过调节Hox表达模式在发育和进化中塑造动物身体计划。

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摘要

Most animals exhibit distinctive and diverse morphological features on their anterior-posterior body axis. However, underneath the variation in design and developmental strategies lies a shared ancient structural blueprint that is based on the expression patterns of Hox genes. Both the establishment and maintenance of the spatial and temporal distribution of Hox transcripts play an important role in determining axial pattern. The study of many animal systems, both vertebrate and invertebrate, suggests that the mechanisms used to establish Hox transcription are nearly as diverse as the body plans they specify. The strategies for maintenance of Hox expression pattern seem more conserved among different phyla, and rely on the action of Pc and trx group genes as well as auto- and cross-regulation among Hox genes. In mice, the sharing of regulatory elements coupled with auto- and cross-regulation could explain the conservation of the clustered arrangement of Hox genes. In contrast, fly Hox genes seem to have evolved insulators or boundary elements to avoid sharing regulatory regions. Differences in Hox transcription patterns can be correlated with morphological modifications in different species, and it seems likely that evolutionary variation of Hox cis-regulatory elements has played a major role in the emergence of novel body plans in different taxa of the animal kingdom.
机译:大多数动物在其前后轴上都表现出独特而多样的形态特征。然而,在设计和开发策略的变化下,隐藏着一个共同的古老结构蓝图,该蓝图基于Hox基因的表达模式。 Hox转录本的时空分布的建立和维持在确定轴向模式中起着重要作用。对许多动物系统(包括脊椎动物和无脊椎动物)的研究表明,用于建立Hox转录的机制几乎与他们指定的身体计划一样多样。维持Hox表达模式的策略似乎在不同门之间更为保守,并且依赖于Pc和trx组基因的作用以及Hox基因之间的自动调控和交叉调控。在小鼠中,调控元件的共享以及自动调控和交叉调控可以解释Hox基因簇状排列的保守性。相比之下,fly Hox基因似乎已经进化出绝缘子或边界元件,以避免共享调控区域。 Hox转录模式的差异可能与不同物种的形态修饰相关,并且似乎Hox顺式调节元件的进化变异在动物界不同分类群中新的人体计划的出现中发挥了重要作用。

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