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How Hox genes can shed light on the place of echinoderms among the deuterostomes

机译:Hox基因如何阐明氘吻口中棘皮动物的位置

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Background The Hox gene cluster ranks among the greatest of biological discoveries of the past 30 years. Morphogenetic patterning genes are remarkable for the systems they regulate during major ontogenetic events, and for their expressions of molecular, temporal, and spatial colinearity. Recent descriptions of exceptions to these colinearities are suggesting deep phylogenetic signal that can be used to explore origins of entire deuterostome phyla. Among the most enigmatic of these deuterostomes in terms of unique body patterning are the echinoderms. However, there remains no overall synthesis of the correlation between this signal and the variations observable in the presence/absence and expression patterns of Hox genes. Results Recent data from Hox cluster analyses shed light on how the bizarre shift from bilateral larvae to radial adults during echinoderm ontogeny can be accomplished by equally radical modifications within the Hox cluster. In order to explore this more fully, a compilation of observations on the genetic patterns among deuterostomes is integrated with the body patterning trajectories seen across the deuterostome clade. Conclusions Synthesis of available data helps to explain morphogenesis along the anterior/posterior axis of echinoderms, delineating the origins and fate of that axis during ontogeny. From this, it is easy to distinguish between ‘seriality’ along echinoderm rays and true A/P axis phenomena such as colinearity within the somatocoels, and the ontogenetic outcomes of the unique translocation and inversion of the anterior Hox class found within the Echinodermata. An up-to-date summary and integration of the disparate lines of research so far produced on the relationship between Hox genes and pattern formation for all deuterostomes allows for development of a phylogeny and scenario for the evolution of deuterostomes in general, and the Echinodermata in particular.
机译:背景Hox基因簇是过去30年来最大的生物学发现之一。形态遗传模式基因对于它们在主要个体发生事件中所调控的系统以及它们在分子,时间和空间上的共线性的表达而言是卓越的。这些共线性的异常的最新描述表明,深的系统发育信号可用于探索整个氘核系统门的起源。就独特的身体形态而言,这些氘代口吻中最具神秘色彩的是棘皮动物。然而,在Hox基因的存在/不存在和表达模式下,该信号与可观察到的变异之间的相关性没有完整的综合。结果来自Hox聚类分析的最新数据揭示了如何通过Hox聚类内的同等根本性修饰来实现棘皮动物个体发育过程中从双侧幼虫向放射状成虫的怪异转变。为了更充分地探索这一点,将有关氘吻口的遗传模式的观察结果与贯穿氘吻口进化枝的人体模式轨迹结合在一起。结论现有数据的综合有助于解释沿棘皮动物前/后轴的形态发生,描绘了个体发育过程中该轴的起源和命运。由此,很容易区分沿棘皮层射线的“衰老”和真正的A / P轴现象,例如体腔内的共线性,以及在棘皮动物内发现的前Hox类的独特移位和倒置的个体发育结果。迄今为止,对所有氘化口罩的Hox基因与模式形成之间的关系进行的最新研究的最新摘要和整合,可以为整个氘化口罩和Echinodermata的系统发育和进化发展提供条件。特定。

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