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首页> 外文期刊>Journal of Crustacean Biology >EVOLUTIONARY RELATIONSHIPS WITHIN TRIOPS (BRANCHIOPODA: NOTOSTRACA) USING COMPLETE MITOCHONDRIAL GENOMES
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EVOLUTIONARY RELATIONSHIPS WITHIN TRIOPS (BRANCHIOPODA: NOTOSTRACA) USING COMPLETE MITOCHONDRIAL GENOMES

机译:使用完整的线粒体基因组在小圈内的进化关系(支脚足类:非骨科)

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摘要

The tadpole shrimp (Notostraca: Triops) have been called living fossils with conserved morphology, but subtle morphological variations within and between species has yielded confused taxonomic assignments. To aid in cryptic species detection of tadpole shrimp from southern New Mexico, USA, the first complete mitochondrial genomes for three putative species (T. longicaudatus "long," T. l. "short," T. newberryi) are reported. The genomes ranged in length from 15,058 bp to 15,060 bp with 13 coding genes, 22 tRNA genes, 2 rRNA genes and a control region. Phylogenetic trees were constructed using previously sequenced Triops-genomes to assess genetic relationships within the genus. The T. longicaudatus-genomes from Genbank were consistent with our genomes for T. newberryi and T. l. "short." Variation in mitochondrial genes were identified that will aid future identification of cryptic lineages of tadpole shrimp. Genetic differentiation among the genomes of Triops in New Mexico support elevation to species status.
机译:shrimp虾(Notostraca:Triops)被称为具有守恒形态的活化石,但是物种内部和物种之间的细微形态变化产生了混乱的分类学分配。为了帮助检测来自美国新墨西哥州南部的shrimp虾的隐性物种,报道了第三个完整的物种(T. longicaudatus“长”,T.l。“短”,T。newberryi)的第一个完整的线粒体基因组。基因组的长度在15058 bp到15060 bp之间,具有13个编码基因,22个tRNA基因,2个rRNA基因和一个控制区。使用先前测序的Triops基因组构建系统发育树,以评估属内的遗传关系。 Genbank的T. longicaudatus基因组与我们的T. newberryi和T.l.的基因组一致。 “短。”线粒体基因的变异被确定,这将有助于将来鉴定shrimp虾的隐性谱系。新墨西哥州Triops基因组之间的遗传分化支持物种地位的提高。

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