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Identification of the orphan gene Prod 1 in basal and other salamander families

机译:在基础和其他sal科中鉴定孤儿基因Prod 1

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Background The urodele amphibians (salamanders) are the only adult tetrapods able to regenerate the limb. It is unclear if this is an ancestral property that is retained in salamanders but lost in other tetrapods or if it evolved in salamanders. The three-finger protein Prod 1 is implicated in the mechanism of newt limb regeneration, and no orthologs have been found in other vertebrates, thus providing evidence for the second viewpoint. It has also been suggested that this protein could play a role in salamander-specific aspects of limb development. There are ten families of extant salamanders, and Prod 1 has only been identified in two of them to date. It is important to determine if it is present in other families and, particularly, the basal group of two families which diverged approximately 200 MYA. Findings We have used polymerase chain reaction (PCR) to identify Prod 1 in a Chinese hynobiid species Batrachuperus longdongensis. We obtained an intestinal transcriptome of the plethodontid Aneides lugubris and, from this, identified a primer which allowed PCR of two Prod 1 genes from this species. All known Prod 1 sequences from nine species in four families have been aligned, and a phylogenetic tree has been derived. Conclusions Prod 1 is found in basal salamanders of the family Hynobiidae, and in at least three other families, so it may be present in all extant salamanders. It remains a plausible candidate to have been involved in the origins of limb regeneration, as well as the apomorphic aspects of limb development.
机译:背景技术urodele两栖动物(salamander)是唯一能够再生肢体的成年四足动物。目前尚不清楚这是否是sal中保留的祖先特性,而在其他四足动物中却消失了,还是在sal中进化了。三指蛋白Prod 1与new肢再生的机制有关,在其他脊椎动物中未发现直系同源物,因此为第二观点提供了证据。也有人提出,这种蛋白质可能在sal的肢体发育的特定方面发挥作用。现有十个sal科,而Prod 1迄今仅在其中两个中被发现。重要的是要确定它是否存在于其他家庭中,尤其是两个家庭的基数相差约200 MYA。研究结果我们已经使用聚合酶链反应(PCR)来鉴定中国hy族物种Batrachuperus longdongensis中的Prod 1。我们获得了猪齿形拟南芥肠小肠的转录组,并由此鉴定出了一个引物,该引物允许对该物种的两个Prod 1基因进行PCR。已对来自四个科的九个物种的所有已知Prod 1序列进行了比对,并得出了系统发育树。结论Prod 1存在于Hynobiidae的基底sal中,并且至少存在于其他三个家族中,因此它可能存在于所有现存的sal中。它仍然是参与肢体再生的起源以及肢体发育的无性形态方面的一个可能的候选者。

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