Molecular evidence for phylogenetic affinities of Rhabdochona coronacauda (Thelazioidea: Rhabdochonidae) with other spiruromorph nematodes.

IF 1.6 3区 生物学 Q4 PARASITOLOGY
K S Vainutis, A N Voronova, V P Belyaev, N E Zyumchenko, M E Shapovalov
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引用次数: 0

Abstract

The nematodes isolated from three species of Chanodichthys were completely consistent with the morphological description of Rhabdochona coronacauda. We provide new morphometric data for R. coronacauda, which slightly differ from those of the original description. For the first time, we performed a phylogenetic analysis by using both primary (linear) and secondary (folded structures) sequences of the complete 18S rRNA gene for three superfamilies of Spiruromorpha. The interspecific genetic distances within the genus Rhabdochona were 0.13%-3.06% between 18 species. Rhabdochona coronacauda was sister to a sub-group consisting of the type species R. denudata, R. hospeti, R. hellichi, and R. turkestanica. The secondary structures reconstructed for 35 species of three superfamilies from the order Spiruromorpha comprised 16 conformations of the region including helix 39 and expansion segment 9, and two conformations of helix 17. Helix 39 can be used to differentiate single species or separate species groups of Rhabdochona. The structures of helix 39 in both Rhabdochonidae and Cystidicolidae with Salmonema had an identical 39a domain but differed in the 39b domain and expansion segment 9. In addition, the structure of the helix 39-expansion segment 9 domain within and between families of different superfamilies and their resolution on the phylogenetic tree in combination did not correspond to the accepted classification of spiruromorph nematodes. Helix 17 did not differ within Rhabdochona, or between Rhabdochonidae and Cystidicolidae. At the superfamily level, helix 17 can distinguish Thelazioidea, Spiruroidea, and Habronematoidea from Rhabdochonidae, and Cystidicolidae from Spirocercidae, Thelaziidae, and Pneumospiruridae.

冠状横纹肌线虫与其他螺旋体线虫系统发育亲缘关系的分子证据。
从三种棘毛虫中分离到的线虫与冠状横纹肌线虫的形态描述完全一致。我们提供了与原始描述略有不同的新的冠状棘猴形态计量数据。我们首次利用螺旋藻三个超家族的18S rRNA全基因的一级(线性)和二级(折叠结构)序列进行了系统发育分析。18个种间的种间遗传距离为0.13% ~ 3.06%。冠状Rhabdochona coronacauda是由denudata、hospeti、hellichi和turkestanica组成的一个亚群的姐妹。螺旋形目3个超科35种的二级结构包括螺旋39和膨胀段9 16个构象,螺旋17 2个构象。螺旋39可以用来区分横纹肌单种或单独的种群。带沙门氏菌的横纹肌科和囊蝗科的螺旋39结构具有相同的39a结构域,但在39b结构域和扩展段9上存在差异。此外,不同超科内和科间的螺旋39-扩展段9结构域的结构及其在系统发育树上的组合分辨率与公认的螺旋形线虫分类不一致。螺旋17在横纹肌科内和横纹肌科与囊虫科之间没有差异。在超科水平上,螺旋17可以区分横纹肌科的Thelazioidea、Spiruroidea和Habronematoidea,以及Spirocercidae、Thelaziidae和pneumspiruridae的Cystidicolidae。
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来源期刊
Journal of Helminthology
Journal of Helminthology 生物-动物学
CiteScore
2.80
自引率
12.50%
发文量
127
审稿时长
3 months
期刊介绍: Journal of Helminthology publishes original papers and review articles on all aspects of pure and applied helminthology, particularly those helminth parasites of environmental health, medical or veterinary importance. Research papers on helminths in wildlife hosts, including plant and insect parasites, are also published along with taxonomic papers contributing to the systematics of a group. The journal will be of interest to academics and researchers involved in the fields of human and veterinary parasitology, public health, microbiology, ecology and biochemistry.
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