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Head patterning and Hox gene expression in an onychophoran and its implications for the arthropod head problem

机译:甲虫的头部模式和Hox基因表达及其对节肢动物头部问题的影响

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摘要

The arthropod head problem has puzzled zoologists for more than a century. The head of adult arthropods is a complex structure resulting from the modification, fusion and migration of an uncertain number of segments. In contrast, onychophorans, which are the probable sister group to the arthropods, have a rather simple head comprising three segments that are well defined during development, and give rise to the adult head with three pairs of appendages specialised for sensory and food capture/manipulative purposes. Based on the expression pattern of the anterior Hox genes labial, proboscipedia, Hox3 and Deformed, we show that the third of these onychophoran segments, bearing the slime papillae, can be correlated to the tritocerebrum, the most anterior Hox-expressing arthropod segment. This implies that both the onychophoran antennae and jaws are derived from a more anterior, Hox-free region corresponding to the proto and deutocerebrum of arthropods. Our data provide molecular support for the proposal that the onychophoran head possesses a well-developed appendage that corresponds to the anterior, apparently appendage-less region of the arthropod head.
机译:节肢动物的头部问题使动物学家困惑了一个多世纪。成年节肢动物的头是一个复杂的结构,是由于不确定数量的片段的修饰,融合和迁移而产生的。相比之下,甲节虫可能是节肢动物的姊妹组,其头部相当简单,包括在发育过程中明确定义的三个部分,并产生了成对的头部,并具有三对专门用于感觉和食物捕获/操纵的附肢。目的。基于前Hox基因的唇,原皮,Hox3和Deformed的表达模式,我们显示出这些甲虫骨节段中的第三个带有粘液乳头,可以与三角脑相关,这是最前端表达Hox的节肢动物节段。这意味着甲虫卵触角和颌骨均来自与节肢动物的原皮和十二脑相对应的更前,无霍克斯的区域。我们的数据为卵圆虫头部具有发达的附肢(与节肢动物头部的前部明显无附件区域相对应)提供了分子支持。

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