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Ancestral role of caudal genes in axis elongation and segmentation

机译:尾部基因在轴伸长和分割中的祖先作用

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caudal (cad/Cdx) genes are essential for the formation of posterior structures in Drosophila, Caenorhabditis elegans, and vertebrates. In contrast to Drosophila, the majority of arthropods generate their segments sequentially from a posteriorly located growth zone, a process known as short-germ development. caudal homologues are expressed in the growth zone of diverse short-germ arthropods, but until now their functional role in these animals had not been studied. Here, we use RNA interference to examine the function of caudal genes in two short-germ arthropods, the crustacean Artemia franciscana and the beetle Tribolium castaneum. We show that, in both species, caudal is required for the formation of most body segments. In animals with reduced levels of caudal expression, axis elongation stops, resulting in severe truncations that remove most trunk segments. We also show that caudal function is required for the early phases of segmentation and Hox gene expression. The observed phenotypes suggest that in arthropods caudal had an ancestral role in axis elongation and segmentation, and was required for the formation of most body segments. Similarities to the function of vertebrate Cdx genes in the presomitic mesoderm, from which somites are generated, indicate that this role may also predate the origin of the Bilateria.
机译:尾(cad / Cdx)基因对于果蝇,秀丽隐杆线虫和脊椎动物的后部结构形成至关重要。与果蝇相反,大多数节肢动物从位于后部的生长区顺序产生其节段,这一过程称为短细菌发育。尾部同源物在各种短胚节肢动物的生长区中表达,但是直到现在,还没有研究它们在这些动物中的功能。在这里,我们使用RNA干扰来检查两种短发节肢动物节肢动物中的甲壳动物Artemia franciscana和甲虫Tribolium castaneum的尾部基因的功能。我们表明,在这两个物种中,大多数身体节段的形成都需要尾部。在尾部表达水平降低的动物中,轴伸长停止,导致严重的截断,去除了大部分躯干节段。我们还表明,分段和Hox基因表达的早期阶段需要尾部功能。观察到的表型表明,在节肢动物中,尾aud在轴伸长和节段中起着祖先的作用,并且是大多数身体节段形成所必需的。与早熟中胚层中脊椎动物Cdx基因功能的相似之处(从中产生体节)表明,此作用也可能早于Bilateria的起源。

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