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日本刺口吸虫 Morishita, 1926(旋尾目:旋尾科)的形态、超微结构和分子特征,来自黑斑蛙(Hallowell)(两栖纲:蛙科)。

Morphology, ultrastructure and molecular characterisation of Spiroxys japonica Morishita, 1926 (Spirurida: Gnathostomatidae) from Pelophylax nigromaculatus (Hallowell) (Amphibia: Ranidae).

机构信息

Key Laboratory of Animal Physiology, Biochemistry and Molecular Biology of Hebei Province, College of Life Science, Hebei Normal University, 20 East Road of 2nd South Ring, Yuhua District, 050024, Shijiazhuang, Hebei Province, People's Republic of China,

出版信息

Parasitol Res. 2014 Mar;113(3):893-901. doi: 10.1007/s00436-013-3720-9. Epub 2013 Dec 8.

Abstract

Gnathostomatid nematodes identified morphologically as Spiroxys japonica Morishita, 1926 were collected from the dark-spotted frog Pelophylax nigromaculatus (Hallowell) (Amphibia: Ranidae) in China. Light and scanning electron microscopy were used to study the morphology of this species in detail. Previously unreported morphological features are revealed and others corrected. In addition, adult nematodes of S. japonica collected from P. nigromaculatus and Spiroxys hanzaki Hasegawa, Miyata & Doi, 1998 collected from Andrias japonicus (Temminck) (Caudata: Cryptobranchidae) in China and Japan, respectively, and the third-stage larva of S. japonica collected from Lithobates catesbeianus (Shaw) (Anura: Ranidae) in Japan, were characterised using molecular methods by sequencing and analysing ribosomal [large ribosomal DNA (18S) and internal transcribed space] and mitochondrial [cytochrome c oxidase subunit 1] target regions, respectively. The new morphological and genetic data contributes to a more accurate diagnosis of this hitherto little known nematode genus.

摘要

从中国黑斑蛙(Pelophylax nigromaculatus (Hallowell))(两栖纲:蛙科)中采集到的形态上被鉴定为日本旋口线虫(Spiroxys japonica Morishita, 1926)的颚口线虫。利用光镜和扫描电子显微镜详细研究了该物种的形态。揭示了以前未报道的形态特征,并纠正了其他特征。此外,分别从中国和日本的黑斑蛙(Pelophylax nigromaculatus)和日本大鲵(Andrias japonicus (Temminck))(有尾目:隐鳃鲵科)中采集到的日本旋口线虫成年线虫和日本牛蛙(Lithobates catesbeianus (Shaw))(无尾目:蛙科)的第三期幼虫,通过测序和分析核糖体[大亚基 DNA(18S)和内部转录间隔区]和线粒体[细胞色素 c 氧化酶亚基 1]靶区域,分别使用分子方法进行了特征描述。新的形态学和遗传学数据有助于更准确地诊断这个迄今为止知之甚少的线虫属。

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