N. Kim, S. J. Lim, H. Chae, Y. C. Park
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引用次数: 8

摘要

我们对黑龙江刺猬Erinaceus amurensis的有丝分裂全基因组(KX964606)进行了测序和鉴定,以期为Erinaceus属(erinaceae)有丝分裂基因组学的比较提供更多数据。amurensis的丝裂基因组是一个长16,941 bp的圆形分子,由一个控制区和一组37个保守基因组成,其中包含13个蛋白质编码基因、22个tRNA基因和2个rRNA基因(12S rRNA和16S rRNA)。阿穆氏有丝分裂基因组具有at偏性,其核苷酸组成分别为33.9% a、21.1% C、32.6% T和12.4% g。阿穆氏有丝分裂基因组与密切相关的刺猬物种欧洲刺猬(E. europaeus)除控制区(66.7%)外,序列相似性超过90%。根据来自5个属的6个有丝分裂基因组的属间关系,Erinaceinae亚科和Galericinae亚科被强烈支持为单系群,每个属都在自己的亚科中被很好地定位。在erinaceae亚科中,E. amurensis是E. europaeus的姐妹种,Hemiechinus和Erinaceus之间的关系得到了强有力的支持。在Galericinae亚科中,Hylomys + Neotetracus的分支与棘索龙(Echinosorex)的分支是姊妹分支,分支的支持值较高。本研究结果将有助于了解银蕨的密码子使用模式和分子进化,并为了解银蕨科的属间关系提供依据。在未来的研究中,包括其他属的有丝分裂基因组将大大提高我们对蚕科高等系统发育的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Complete mitochondrial genome of the Amur hedgehog Erinaceus amurensis (Erinaceidae) and higher phylogeny of the family Erinaceidae.
We sequenced and characterized the complete mitogenome (KX964606) of the Amur hedgehog Erinaceus amurensis to provide more data for comparative mitogenomics of the genus Erinaceus (Erinaceidae). The mitogenome of E. amurensis is a circular molecule 16,941 bp long, consisting of a control region and a conserved set of 37 genes containing 13 protein-coding genes, 22 tRNA genes, and two rRNA genes (12S rRNA and 16S rRNA). The mitogenome of E. amurensis is AT-biased, with a nucleotide composition of 33.9% A, 21.1% C, 32.6% T, and 12.4% G. The mitogenomes of E. amurensis and the closely related hedgehog species E. europaeus, excluding the control region (66.7%), share over 90% sequence similarity. According to the inter-generic relationship based on six mitogenomes described from five genera of Erinaceidae, the subfamilies Erinaceinae and Galericinae are strongly supported as monophyletic groups, with each genus well placed within its own subfamily. Within the subfamily Erinaceinae, E. amurensis is a sister species to E. europaeus, and the relationship between Hemiechinus and Erinaceus is strongly supported. Within the subfamily Galericinae, the clade of Hylomys + Neotetracus was sister to that of Echinosorex, with clades supported by high values. Our findings will help to understand the codon usage pattern and molecular evolution of E. amurensis, and provide insight into inter-generic relationships within the family Erinaceidae. In future studies, the inclusion of mitogenomes from other genera would greatly enhance our understanding of higher phylogeny within the Erinaceidae.
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