Chen Hui-Xia, Zhang Lu-Ping, Nakao Minoru, Li Liang
Key Laboratory of Animal Physiology, Biochemistry and Molecular Biology of Hebei Province, College of Life Sciences, Hebei Normal University, 20 East Road of 2nd South Ring, Yuhua District, Shijiazhuang, 050024, Hebei Province, People's Republic of China.
Department of Parasitology, Asahikawa Medical University, Asahikawa, Hokkaido, 078-8510, Japan.
Parasitol Res. 2018 Jun;117(6):1857-1864. doi: 10.1007/s00436-018-5877-8. Epub 2018 Apr 21.
A new cosmocercid species, Cosmocercoides qingtianensis sp. n., collected from the intestine of the Asiatic toad Bufo gargarizans Cantor (Amphibia: Anura) is described using integrated approaches, including light and scanning electron microscopy, and sequencing and analyzing the ribosomal [small ribosomal DNA (18S) and internal transcribed spacer (ITS)] and mitochondrial [cytochrome c oxidase subunit 1 (cox1)] target regions, respectively. The new species can be distinguished from its congeners by the combination of the following morphological characters, including the large body size, the presence of lateral alae and somatic papillae in both sexes, the length of spicules, the particular morphology and length of gubernaculum, the number, arrangement and morphology of caudal rosettes, the presence of large medioventral precloacal papilla and the long tail. Our molecular analysis revealed the level of intraspecific genetic variation of C. qingtianensis sp. n. distinctly lower than that of the interspecific genetic variation in the ITS and cox1 regions. However, there are some overlaps in the range of intra- and interspecific 18S sequence divergence between the new species and some closely related species. The results of molecular analysis supported the validity of the new species based on the morphological observations. The 18S, ITS, and cox1 regions of C. pulcher collected from Bufo japonicus formosus in Japan were also sequenced and analyzed. The results showed a low level of intraspecific genetic variation in 18S and ITS regions (0-0.12% and 0-0.23% nucleotide differences, respectively), but a relatively high level of intraspecific genetic variation in cox1 region (0.78-4.69% nucleotide differences). In addition, it seems more powerful and practical to use the cox1 region as a genetic marker for the accurate identification and differentiation of species of Cosmocercoides than the 18S and ITS regions, especially for the closely related species.
利用包括光学显微镜和扫描电子显微镜,以及分别对核糖体[小核糖体DNA(18S)和内部转录间隔区(ITS)]和线粒体[细胞色素c氧化酶亚基1(cox1)]目标区域进行测序和分析等综合方法,描述了从中华大蟾蜍(两栖纲:无尾目)肠道中采集到的一种新的四棱线虫属物种——青田四棱线虫(Cosmocercoides qingtianensis sp. n.)。该新物种可通过以下形态特征组合与同属其他物种相区分,包括体型较大、两性均有侧翼和体乳突、交合刺长度、引带的特殊形态和长度、尾环的数量、排列和形态、大的泄殖腔前中腹乳突的存在以及长尾。我们的分子分析表明,青田四棱线虫种内遗传变异水平明显低于ITS和cox1区域的种间遗传变异水平。然而,新物种与一些近缘物种之间的种内和种间18S序列分歧范围存在一些重叠。分子分析结果基于形态学观察支持了新物种的有效性。对从日本的日本林蛙中采集到的美丽四棱线虫(Cosmocercoides pulcher)的18S、ITS和cox1区域也进行了测序和分析。结果显示,18S和ITS区域的种内遗传变异水平较低(核苷酸差异分别为0 - 0.12%和0 - 0.23%), 但cox1区域的种内遗传变异水平相对较高(核苷酸差异为0.78 - 4.69%). 此外,与18S和ITS区域相比,使用cox1区域作为遗传标记来准确鉴定和区分四棱线虫属物种似乎更有效和实用,尤其是对于近缘物种。