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首页> 外文期刊>PLoS Genetics >Novel Function of Distal-less as a Gap Gene during Spider Segmentation
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Novel Function of Distal-less as a Gap Gene during Spider Segmentation

机译:无远距离作为蜘蛛分割过程中的缺口基因的新功能

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Despite many aspects of the regulation of segmentation being conserved among arthropods, the evolution of novel gene functions has played an important role in the evolution of developmental regulation and the emergence of new segmental structures. Moreover the study of such novel gene functions can be informative with respect to the patterns and direction of evolutionary changes in developmental programs. The homeobox gene Distal-less (Dll) is known for its conserved function in appendage development in metazoans. In arthropods, Dll is required for the specification of distal appendage structures. Here we describe a novel and unexpected role of Dll in the spider Achaearanea tepidariorum. We detect At-Dll transcripts not only in the appendages, but unexpectedly also in an anterior domain during early development, prior to the specification of the limb primordia. A similar early Dll domain is present in the distantly related spider Pholcus phalangioides. In A. tepidariorum this early At-Dll expression is required for head segmentation. RNA interference results in spiders that lack either the first or the first and the second walking leg segments. The early At-Dll expression is also required for the activation of the segment polarity genes engrailed and hedgehog in this region. Our work identifies the Distal-less gene as a novel factor in anterior spider segmentation with a gap gene-like function. This novel role of Dll is interesting because Dll expression is reduced in this region in crustaceans and the homologous insect segment, the mandible segment, does not express Dll and does not require this gene for patterning. We therefore discuss the possible implications of our results for understanding the evolution and diversification of the mandible segment.
机译:尽管节肢动物中节段调节的许多方面得以保留,但新型基因功能的进化在发育调节的进化和新节段结构的出现中仍发挥了重要作用。此外,对这类新型基因功能的研究对于发育程序中进化变化的模式和方向可能是有益的。同源盒基因Distal-less(Dll)因其在后生动物附肢发育中的保守功能而闻名。在节肢动物中,Dll是远端附件结构的规格要求。在这里,我们描述了Dll在蜘蛛蜘蛛甲中的一种新颖而出乎意料的作用。我们在肢体原基的规格之前,不仅在附件中检测到At-Dll转录本,而且在早期发育过程中也意外地在前域中检测到。相似的早期Dll结构域存在于远缘相关的蜘蛛Phphacus phalangioides中。在拟南芥中,这种早期的At-Dll表达是头部分割所必需的。 RNA干扰导致蜘蛛缺少第一个或第一个和第二个步行腿节。还需要早期的At-Dll表达来激活该区域中卷入和刺猬的节段极性基因。我们的工作将无Distal基因鉴定为具有间隙基因样功能的前蜘蛛节段中的新因素。 Dll的这种新作用很有趣,因为在甲壳类动物的该区域中Dll的表达降低了,而同源昆虫部分(下颌骨部分)不表达Dll,并且不需要该基因来进行图案化。因此,我们讨论了我们的结果可能对理解下颌骨部分的演变和多样化的潜在影响。

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