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脊椎动物骨盆缩小的平行遗传起源。

Parallel genetic origins of pelvic reduction in vertebrates.

作者信息

Shapiro Michael D, Bell Michael A, Kingsley David M

机构信息

Department of Developmental Biology and Howard Hughes Medical Institute, Stanford University School of Medicine, Stanford, CA 94305.

出版信息

Proc Natl Acad Sci U S A. 2006 Sep 12;103(37):13753-8. doi: 10.1073/pnas.0604706103. Epub 2006 Aug 31.

Abstract

Despite longstanding interest in parallel evolution, little is known about the genes that control similar traits in different lineages of vertebrates. Pelvic reduction in stickleback fish (family Gasterosteidae) provides a striking example of parallel evolution in a genetically tractable system. Previous studies suggest that cis-acting regulatory changes at the Pitx1 locus control pelvic reduction in a population of threespine sticklebacks (Gasterosteus aculeatus). In this study, progeny from intergeneric crosses between pelvic-reduced threespine and ninespine (Pungitius pungitius) sticklebacks also showed severe pelvic reduction, implicating a similar genetic origin for this trait in both genera. Comparative sequencing studies in complete and pelvic-reduced Pungitius revealed no differences in the Pitx1 coding sequences, but Pitx1 expression was absent from the prospective pelvic region of larvae from pelvic-reduced parents. A much more phylogenetically distant example of pelvic reduction, loss of hindlimbs in manatees, shows a similar left-right size bias that is a morphological signature of Pitx1-mediated pelvic reduction in both sticklebacks and mice. These multiple lines of evidence suggest that changes in Pitx1 may represent a key mechanism of morphological evolution in multiple populations, species, and genera of sticklebacks, as well as in distantly related vertebrate lineages.

摘要

尽管长期以来人们对平行进化很感兴趣,但对于控制不同脊椎动物谱系中相似性状的基因却知之甚少。棘鱼(刺鱼科)的骨盆退化是在一个易于进行遗传学研究的系统中平行进化的一个显著例子。先前的研究表明,Pitx1基因座的顺式作用调控变化控制着三刺鱼(Gasterosteus aculeatus)群体中的骨盆退化。在本研究中,骨盆退化的三刺鱼与九刺鱼(Pungitius pungitius)进行属间杂交产生的后代也表现出严重的骨盆退化,这意味着这两个属中该性状的遗传起源相似。对完整的和骨盆退化的九刺鱼进行的比较测序研究表明,Pitx1编码序列没有差异,但来自骨盆退化亲本的幼虫预期骨盆区域中没有Pitx1表达。一个在系统发育上更为遥远的骨盆退化例子,即海牛后肢的缺失,显示出类似的左右大小偏差,这是棘鱼和小鼠中Pitx1介导的骨盆退化的形态学特征。这些多条证据表明,Pitx1的变化可能代表了棘鱼的多个种群、物种和属以及远缘脊椎动物谱系中形态进化的关键机制。

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