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首页> 外文期刊>Systematic Parasitology >Evidence for a new species of Anisakis Dujardin, 1845: morphological description and genetic relationships between congeners (Nematoda: Anisakidae)
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Evidence for a new species of Anisakis Dujardin, 1845: morphological description and genetic relationships between congeners (Nematoda: Anisakidae)

机译:一种新的Anisakis Dujardin物种的证据,1845年:同源物之间的形态描述和遗传关系(线虫:Anisakidae)

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摘要

In the present study, a new biological species of Anisakis Dujardin, 1845, was detected in Kogia breviceps and K. sima from West Atlantic waters (coast of Florida) on the basis of 19 (nuclear) structural genes studied by multilocus allozyme electrophoresis. Fixed allele differences at 11 enzyme loci were found between specimens of both adults and larvae of the new species and the other Anisakis spp. tested. Reproductive isolation from A. brevispiculata Dollfus, 1968 was demonstrated by the lack of hybrid or recombinant genotypes in mixed infections in K. breviceps. Genetic distance of the new species from its closest relative, A. brevispiculata, was D(Nei)=0.79. The new species is morphologically different from the other species which have been genetically characterised and from the other Anisakis retained by Davey (1971) as valid or as species inquirendae: the name of Anisakis paggiae n. sp. is proposed for the new taxon. Anisakis Type II larvae (sensu Berland, 1961) from the European hake Merluccius merluccius in the northeastern Atlantic Ocean (Galician coast) and from the scabbard fish Aphanopus carbo in Central Atlantic waters (off Madeira), were identified as A. paggiae n. sp. Its genetic relationships with respect to the seven species previously characterised (A. simplex (Rudolphi, 1809) sensu stricto), A. pegreffii Campana-Rouget & Biocca, 1955, A. simplex, (A. typica (Diesing, 1860), A. ziphidarum Paggi et al., 1998, A. physeteris Baylis, 1923 and A. brevispiculata) were also inferred. Overall, a low genetic identity was detected at allozyme level between the eight Anisakis species. Interspecific genetic identity ranged from I(Nei)=0.68, between the sibling species of the A. simplex complex, to I(Nei)=0.00 (no alleles shared at the considered loci) when A. physeteris, A. brevispiculata and the new species were compared with the other species of the genus. Concordant topologies were obtained using both UPGMA and NJ tree analyses for the considered species. In both analyses, A. paggiae n. sp. clustered with A. brevispiculata. They also indciated two main clades, the first including A. physeteris, A. brevispiculata and A. paggiae n. sp., the second containing all of the remaining species (i.e. A. simplex (s.s.), A. pegreffii, A. simplex, A. typica and A. ziphidarum). A deep separation between these two main Anisakis clades, also supported by high bootstrap values at the major nodes, was apparent. This is also supported by differences in adult and larval morphology, as well as with respect to their main definitive hosts. A morphological key for distinguishing adult A. paggiae n. sp., A. physeteris and A. brevispiculata is presented. Allozyme markers for the identification of any life-history stage of the Anisakis spp. so far studied, as well as ecological data on their definitive host preferences and geographical distribution, are updated.
机译:在本研究中,根据19个(核)结构基因的多位点同位酶电泳研究,在西大西洋水域(佛罗里达州海岸)的Kogia breviceps和K. sima中发现了一种新的Anisakis Dujardin生物物种。在新物种的成年和幼虫以及其他Anisakis spp的标本之间发现了11个酶基因座的固定等位基因差异。经过测试。短小拟南芥(A. brevispiculata Dollfus)于1968年从生殖中分离出来,这表明在短小K.breviceps混合感染中缺乏杂种或重组基因型。新物种与其最接近的亲缘种A. brevispiculata的遗传距离为D(Nei)= 0.79。新物种在形态上与其他经过遗传鉴定的物种以及由戴维(1971)保留为有效或被调查物种的其他Anisakis不同:Anisakis paggiae n。 sp。建议用于新的分类单元。来自东北大西洋(加利西亚海岸)欧洲无尾鳕Merluccius merluccius以及大西洋中部水域(马德拉群岛对开)的剑鞘鱼Aphanopus carbo的Anisakis II型幼虫(sensu Berland,1961)被鉴定为A. paggiae n。 sp。它与先前表征的七个物种(A. simplex(Rudolphi,1809)sensu stricto),A。pegreffii Campana-Rouget&Biocca,1955,A. simplex,(A. typica(Diesing,1860),A)的遗传关系也推论了Pasgi等人(1998年,A.physeteris Baylis,1923年和A.brevispiculata)。总体而言,在八种Anisakis物种之间的同工酶水平上检测到低遗传同一性。种间遗传同一性的范围从单基因拟南芥复合体的同胞物种之间的I(Nei)= 0.68到A.physeteris,A.brevispiculata和新的A.物种与该属的其他物种进行了比较。使用UPGMA和NJ树分析对所考虑的物种获得一致的拓扑。在两个分析中,A。paggiae n.。 sp。与短短芽孢杆菌成簇。他们还指出了两个主要分支,第一个包括physeteris,A。brevispiculata和paggiae n。 sp。,第二个包含所有其余物种(即A. simplex(s.s。),A。pegreffii,A。simplex,A。typica和A. ziphidarum)。很明显,这两个主要的Anisakis进化枝之间有很深的分离,并且在主要节点上也具有较高的bootstrap值。成年和幼体形态以及主要定宿主的差异也支持了这一点。区分成年A. paggiae n。的形态学关键。介绍了A. physeteris和A. brevispiculata。用于识别Anisakis spp的任何生命历史阶段的同工酶标记。到目前为止,已更新研究以及有关其最终宿主偏好和地理分布的生态数据。

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