Department of Plant Protection, College of Horticulture and Landscape, Tianjin Agricultural University, Tianjin, China.
College of Life Sciences, Nankai University, Tianjin, China.
Arch Insect Biochem Physiol. 2023 Oct;114(2):1-9. doi: 10.1002/arch.22051. Epub 2023 Sep 6.
The mitochondrial genome (mitogenome) has been widely used as a powerful marker in phylogenetic and evolutionary studies of various Dipteran groups. However, only a few mitogenomes from the Thienemanniella genus have been reported till now. Furthermore, there is still indeterminacy in the phylogenetic relationships of the genus Thienemanniella. In this study, mitogenomes of five Thienemanniella species were sequenced and analyzed newly. Combined with the published mitogenome of Thienemanniella nipponica, the obtained results showed that mitogenomes of Thienemanniella were conserved in structure, and all genes were observed to be arranged in the same gene order as the ancestral mitogenome. Nucleotide composition varied significantly among different genes, and the control region displayed the highest A + T content. All protein coding genes are subjected to purification selection, and the fastest evolving gene is ATP8. Maximum likelihood and Bayesian inference analyses showed the phylogeny of Thienemanniella which was supported in five topologies. Our present study provides valuable insight into the phylogenetic relationships of Thienemanniella species.
线粒体基因组(mitogenome)已被广泛用作各种双翅目群体系统发育和进化研究中的有力标记。然而,到目前为止,只有少数来自 Thienemanniella 属的线粒体基因组被报道。此外,Thienemanniella 属的系统发育关系仍然不确定。在这项研究中,我们新测序并分析了五个 Thienemanniella 物种的线粒体基因组。结合已发表的 Thienemanniella nipponica 的线粒体基因组,获得的结果表明 Thienemanniella 的线粒体基因组在结构上是保守的,所有基因都按照祖先线粒体基因组的相同基因顺序排列。不同基因之间的核苷酸组成差异显著,而控制区显示出最高的 A+T 含量。所有蛋白质编码基因都受到纯化选择,进化最快的基因是 ATP8。最大似然和贝叶斯推断分析显示了 Thienemanniella 的系统发育,这在五个最佳拓扑结构中得到了支持。本研究为 Thienemanniella 种的系统发育关系提供了有价值的见解。