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河花蜉科(昆虫纲:蜉蝣目)系统发育关系及分歧时间分析的线粒体基因组比较

Comparative Mitogenome of Phylogenetic Relationships and Divergence Time Analysis within Potamanthidae (Insecta: Ephemeroptera).

作者信息

Guo Zhi-Qiang, Gao Ya-Jie, Chen Yu-Xin, Zhan Le-Mei, Storey Kenneth B, Yu Dan-Na, Zhang Jia-Yong

机构信息

College of Life Sciences, Zhejiang Normal University, Jinhua 321004, China.

School of Bioengineering, Aksu Vocational Technical College, Aksu 843000, China.

出版信息

Insects. 2024 May 15;15(5):357. doi: 10.3390/insects15050357.

Abstract

Potamanthidae belongs to the superfamily Ephemeroidea but has no complete mt genome released in the NCBI (except for two unchecked and one partial mt genome). Since the sister clade to Potamanthidae has always been controversial, we sequenced seven mt genomes of Potamanthidae (two species from and five species from ) in order to rebuild the phylogenetic relationships of Potamanthidae in this study. The divergence time of Potamanthidae was also investigated by utilizing five fossil calibration points because of the indeterminate origin time. In addition, because and are always in low-temperature environments, we aimed to explore whether these two species were under positive selection at the mt genome level. Amongst the 13 PCGs, CGA was used as the start codon in COX1, whereas other genes conformed to initiating with an ATN start codon. From this analysis, UUA (L), AUU (I), and UUU (F) had the highest usage. Furthermore, the DHU arm was absent in the secondary structure of S1 in all species. By combining the 13 PCGs and 2 rRNAs, we reconstructed the phylogenetic relationship of Potamanthidae within Ephemeroptera. The monophyly of Potamanthidae and the monophyly of and were supported in the results. The phylogenetic relationship of Potamanthidae + (Ephemeridae + Polymitarcyidae) was also recovered with a high prior probability. The divergence times of Potamanthidae were traced to be 90.44 Mya (95% HPD, 62.80-121.74 Mya), and the divergence times of and originated at approximately 64.77 Mya (95% HPD, 43.82-88.68 Mya), thus belonging to the late Pliocene Epoch or early Miocene Epoch. In addition, the data indicated that was under negative selection and that ATP8 and ND2 in Potamanthidae had a high evolutionary rate.

摘要

溪蟌科属于蜉蝣总科,但在NCBI中尚未发布完整的线粒体基因组(除了两个未经检查的和一个部分线粒体基因组)。由于溪蟌科的姐妹分支一直存在争议,我们对溪蟌科的七个线粒体基因组(来自[具体地区1]的两个物种和来自[具体地区2]的五个物种)进行了测序,以便在本研究中重建溪蟌科的系统发育关系。由于起源时间不确定,还利用五个化石校准点研究了溪蟌科的分歧时间。此外,由于[物种1]和[物种2]一直处于低温环境中,我们旨在探讨这两个物种在mt基因组水平上是否受到正选择。在13个蛋白质编码基因中,COX1使用CGA作为起始密码子,而其他基因则符合以ATN起始密码子开始。通过该分析,UUA(L)、AUU(I)和UUU(F)的使用频率最高。此外,所有物种的S1二级结构中均不存在DHU臂。通过结合13个蛋白质编码基因和2个核糖体RNA,我们重建了蜉蝣目内溪蟌科的系统发育关系。结果支持了溪蟌科的单系性以及[物种1]和[物种2]的单系性。溪蟌科 + (蜉蝣科 + 多脉蜉科)的系统发育关系也以较高的先验概率得到恢复。溪蟌科的分歧时间追溯到9044万年前(95% HPD,6280 - 12174万年前),[物种1]和[物种2]的分歧时间约起源于6477万年前(95% HPD,4382 - 8868万年前),因此属于上新世晚期或中新世早期。此外,数据表明[物种1]处于负选择之下,并且溪蟌科中的ATP8和ND2具有较高的进化速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e3d/11122660/a68baaa565d7/insects-15-00357-g001.jpg

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