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赤拟谷盗偶数跳动直系同源物的分子特征及胚胎表达

Molecular characterization and embryonic expression of the even-skipped ortholog of Tribolium castaneum.

作者信息

Brown S J, Parrish J K, Beeman R W, Denell R E

机构信息

Division of Biology, Kansas State University, Manhattan 66506-4901, USA.

出版信息

Mech Dev. 1997 Jan;61(1-2):165-73. doi: 10.1016/s0925-4773(96)00642-9.

Abstract

In short germ insects, the procephalon and presumptive anterior segments comprise most of the embryonic rudiment which lengthens as posterior segments are added during development (Sander, K. (1976) Adv. Insect Physiol. 12, 125-238). The expression pattern of a grasshopper ortholog of the primary pair-rule gene even-skipped (eve) suggests that it is not relevant to segmentation in this short germ insect (Patel, N.H., Ball, E.E. and Goodman, C.S. (1992) Nature 357, 339-342). However in Drosophila, a long germ insect that forms all segments simultaneously, eve plays a vital role in segment formation (Nüsslein-Volhard, C., Wieschaus, E. and Klüding, H. (1984) Roux's Arch. Dev. Biol. 193, 267-282). We have characterized the eve ortholog of the beetle Tribolium castaneum. The homeodomain sequence is highly conserved between beetle, fly, and grasshopper eve orthologs. Tc eve is expressed in stripes during segmentation, but in a pattern differing in some details from that of the fly gene. This pattern is coincident with that detected with a cross-reacting antibody (Patel, N.H., Condron, B.G. and Zinn, K. (1994) Nature 367, 429-434). Thus, an ancestral even-skipped gene appears to have evolved a role in segmentation in a common ancestor of flies and beetles. Unlike vertebrate orthologs but similar to eve, Tc eve is not linked to the homeotic complex.

摘要

在短胚昆虫中,前脑和假定的前部体节构成了胚胎原基的大部分,随着发育过程中后部体节的增加,胚胎原基会变长(桑德,K.(1976年)《昆虫生理学进展》12卷,125 - 238页)。初级成对规则基因even - skipped(eve)的蝗虫直系同源基因的表达模式表明,它与这种短胚昆虫的体节形成无关(帕特尔,N.H.、鲍尔,E.E.和古德曼,C.S.(1992年)《自然》357卷,339 - 342页)。然而,在果蝇这种同时形成所有体节的长胚昆虫中,eve在体节形成中起着至关重要的作用(努斯莱因 - 福尔哈德,C.、维绍斯,E.和克吕丁,H.(1984年)《鲁克斯发育生物学文献》193卷,267 - 282页)。我们已经对甲虫赤拟谷盗的eve直系同源基因进行了特征描述。甲虫、果蝇和蝗虫的eve直系同源基因的同源结构域序列高度保守。Tc eve在体节形成过程中以条纹形式表达,但在某些细节上与果蝇基因的表达模式不同。这种模式与用交叉反应抗体检测到的模式一致(帕特尔,N.H.、康德伦,B.G.和津恩,K.(1994年)《自然》367卷,429 - 434页)。因此,一个古老的even - skipped基因似乎在果蝇和甲虫的共同祖先中进化出了在体节形成中的作用。与脊椎动物直系同源基因不同但与eve相似,Tc eve不与同源异型复合体相连。

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