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The first complete mitochondrial genome of the Indian Tent Turtle Pangshura tentoria (Testudines: Geoemydidae): Characterization and comparative analysis

机译:印度帐篷龟Pangshura tentoria(Testudines:Geoemydidae)的第一个完整的线粒体基因组:表征和比较分析

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摘要

The characterization of a complete mitogenome is widely used in genomics studies for systematics and evolutionary research. However, the sequences and structural motifs contained within the mitogenome of Testudines taxa have rarely been examined. The present study decodes the first complete mitochondrial genome of the Indian Tent Turtle, Pangshura tentoria (16,657 bp) by using next‐generation sequencing. This denovo assembly encodes 37 genes: 13 protein‐coding genes (PCGs), 22 transfer RNA (tRNAs), two ribosomal RNA, and one control region (CR). Most of the genes were encoded on majority strand, except for one PCG (NADH dehydrogenase subunit 6) and eight tRNAs. Most of the PCGs were started with an ATG initiation codon, except for Cytochrome oxidase subunit 1 with “GTG” and NADH dehydrogenase subunit 5 with “ATA.” The termination codons, “TAA” and “AGA” were observed in two subunits of NADH dehydrogenase gene. The relative synonymous codon usage analysis revealed the maximum abundance of alanine, isoleucine, leucine, and threonine. The nonsynonymous/synonymous ratios were <1 in all PCGs, which indicates strong negative selection among all Geoemydid species. The study also found the typical cloverleaf secondary structure in most of the tRNA genes, except for serine with the lack of the conventional DHU arm. The comparative study of Geoemydid mitogenomes revealed the occurrence of tandem repeats was frequent in the 3′ end of CR. Further, two copies of a unique tandem repeat “TTCTCTTT” were identified in P. tentoria. The Bayesian and maximum‐likelihood phylogenetic trees using concatenation of 13 PCGs revealed the close relationships of P. tentoria with Batagur trivittata in the studied dataset. All the Geoemydid species showed distinct clustering with high bootstrap support congruent with previous evolutionary hypotheses. We suggest that the generations of more mitogenomes of Geoemydid species are required, to improve our understanding of their in‐depth phylogenetic and evolutionary relationships.
机译:完整的有丝分裂基因组的表征已广泛用于系统学和进化研究的基因组学研究中。但是,很少检查睾丸类的有丝分裂基因组中包含的序列和结构基序。本研究使用下一代测序技术对印度帐篷龟(Pangshura tentoria,16,657bp)的第一个完整的线粒体基因组进行了解码。该denovo装配体编码37个基因:13个蛋白质编码基因(PCG),22个转移RNA(tRNA),两个核糖体RNA和一个控制区(CR)。除一个PCG(NADH脱氢酶亚基6)和八个tRNA外,大多数基因编码在多数链上。除带有“ GTG”的细胞色素氧化酶亚基1和带有“ ATA”的NADH脱氢酶亚基5外,大多数PCG均以ATG起始密码子开始。在NADH脱氢酶基因的两个亚基中观察到终止密码子“ TAA”和“ AGA”。相对同义的密码子使用分析揭示了丙氨酸,异亮氨酸,亮氨酸和苏氨酸的最大丰度。在所有PCG中,非同义词/同义词比率均小于1,这表明在所有Geoemydid物种中都有强烈的否定选择。该研究还发现,除了缺乏常规DHU臂的丝氨酸外,大多数tRNA基因都具有典型的苜蓿叶形二级结构。对大地蝇类有丝分裂基因组的比较研究表明,串联重复在CR的3'端频繁发生。此外,在滕氏假单胞菌中鉴定出两个独特的串联重复序列“ TTCTCTTT”。使用13个PCG串联的贝叶斯和最大似然系统树表明,在研究的数据集中,ten.P.tentoria与Batagur trivittata密切相关。与先前的进化假说一致,所有的土生动物物种都表现出明显的聚集,并具有较高的自举支持。我们建议需要更多代的大裂殖体物种的有丝分裂基因组,以增进我们对它们深入的系统发育和进化关系的理解。

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