Wang Lei, Wang Yixuan, Dong Zimei, Chen Guangwen, Sluys Ronald, Liu Dezeng
College of Life Science, Henan Normal University, Xinxiang, China.
Medical College, Xinxiang University, Xinxiang, China.
Integr Zool. 2022 Nov;17(6):1193-1214. doi: 10.1111/1749-4877.12605. Epub 2021 Dec 15.
A new species of Dugesia (Platyhelminthes, Tricladida, Dugesiidae) from northern China is described on the basis of an integrative approach, involving morphology, karyology, histology, molecular distance, molecular phylogeny, and mitochondrial gene order. Here, we present the complete mitogenome of the new species Dugesia constrictiva Chen & Dong, sp. nov. This new species is mainly characterized by the presence of the following features: asymmetrical openings of the oviducts; large, cuboidal copulatory bursa; vasa deferentia opening through the ventro-lateral wall of the seminal vesicle; laterally compressed seminal vesicle; ventrally displaced ejaculatory duct, opening at the blunt tip of the penis papilla; long duct intercalated between seminal vesicle and diaphragm; chromosome complement diploid, with 16 metacentric chromosomes; mitochondrial gene order as follows: cox1-E-nad6-nad5-S2-D-R-cox3-I-Q-K-atp6-V-nad1-W-cox2-P-nad3-A-nad2-M-H-F-rrnS-L1-Y-G-S1-rrnL-L2-T-atp8-C-N-cob-nad4l-nad4. In triclads, mitochondrial gene order is considerably conserved between freshwater planarians and land flatworms, whereas it is variable between marine planarians and both freshwater and land flatworms. The secondary structures of tRNAs are all equipped with 4 arms, excepting tRNA S1 and tRNA S2, which lack the D arm and have excessively enlarged loops. Numerous transpositions of tRNA are present between D. constrictiva and its congeners. Mitochondrial gene arrangements may form a new, additional tool for taxonomic studies. The phylogenetic tree based on analysis of the mitochondrial genome basically corroborates current classification of the higher taxa of planarian flatworms.
基于综合方法,包括形态学、核型学、组织学、分子距离、分子系统发育和线粒体基因顺序,描述了一种来自中国北方的新的三角涡虫属(扁形动物门,三肠目,三角涡虫科)物种。在此,我们展示了新物种缢缩三角涡虫(Dugesia constrictiva Chen & Dong, sp. nov.)的完整线粒体基因组。该新物种的主要特征如下:输卵管开口不对称;交配囊大且呈立方形;输精管通过精囊腹侧壁开口;精囊侧面压缩;射精管腹侧移位,在阴茎乳头钝端开口;精囊与横膈之间有长管插入;染色体组为二倍体,有16条中着丝粒染色体;线粒体基因顺序如下:cox1 - E - nad6 - nad5 - S2 - D - R - cox3 - I - Q - K - atp6 - V - nad1 - W - cox2 - P - nad3 - A - nad2 - M - H - F - rrnS - L1 - Y - G - S1 - rrnL - L2 - T - atp8 - C - N - cob - nad4l - nad4。在三肠目中,淡水涡虫和陆地扁虫之间的线粒体基因顺序相当保守,而海洋涡虫与淡水和陆地扁虫之间则有所不同。除了缺乏D臂且环过度增大的tRNA S1和tRNA S2外,tRNA的二级结构均有4个臂。缢缩三角涡虫与其同属物种之间存在大量tRNA转位。线粒体基因排列可能为分类学研究形成一种新的额外工具。基于线粒体基因组分析构建的系统发育树基本证实了目前涡虫扁虫高级分类单元的分类情况。