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Salamander Hox clusters contain repetitive DNA and expanded non-coding regions: a typical Hox structure for non-mammalian tetrapod vertebrates?

机译:Ho Hox簇包含重复的DNA和扩展的非编码区:非哺乳动物四足动物脊椎动物的典型Hox结构?

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Hox genes encode transcription factors that regulate embryonic and post-embryonic developmental processes. The expression of Hox genes is regulated in part by the tight, spatial arrangement of conserved coding and non-coding sequences. The potential for evolutionary changes in Hox cluster structure is thought to be low among vertebrates; however, recent studies of a few non-mammalian taxa suggest greater variation than originally thought. Using next generation sequencing of large genomic fragments (>100 kb) from the red spotted newt ( Notophthalamus viridescens ), we found that the arrangement of Hox cluster genes was conserved relative to orthologous regions from other vertebrates, but the length of introns and intergenic regions varied. In particular, the distance between hoxd13 and hoxd11 is longer in newt than orthologous regions from vertebrate species with expanded Hox clusters and is predicted to exceed the length of the entire HoxD clusters ( hoxd13 – hoxd4 ) of humans, mice, and frogs. Many repetitive DNA sequences were identified for newt Hox clusters, including an enrichment of DNA transposon-like sequences relative to non-coding genomic fragments. Our results suggest that Hox cluster expansion and transposon accumulation are common features of non-mammalian tetrapod vertebrates.
机译:Hox基因编码调节胚胎和胚后发育过程的转录因子。 Hox基因的表达部分受保守的编码和非编码序列的紧密空间排列的调节。人们认为,脊椎动物中Hox簇结构发生进化变化的可能性很小。但是,最近对一些非哺乳动物类群的研究表明,其变异程度超过了最初的想法。使用来自红色斑点new(Notophthalamus viridescens)的大基因组片段的下一代测序(> 100 kb),我们发现Hox簇基因的排列相对于其他脊椎动物的直系同源区域而言是保守的,但内含子和基因间区域的长度却相对保守多变。特别地,在new中hoxd13和hoxd11之间的距离比带有扩大Hox簇的脊椎动物物种的直系同源区域更长,并且预计将超过人类,小鼠和青蛙的整个HoxD簇(hoxd13 – hoxd4)的长度。已为new Hox簇鉴定出许多重复的DNA序列,包括相对于非编码基因组片段而言,DNA转座子样序列的富集。我们的结果表明,Hox簇扩展和转座子积累是非哺乳动物四足动物脊椎动物的共同特征。

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