首页> 外文期刊>中国海洋湖沼学报(英文版) >Morphological and molecular diagnoses of Polydora brevipalpa Zachs, 1933 (Annelida: Spionidae) from the shellfish along the coast of China
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Morphological and molecular diagnoses of Polydora brevipalpa Zachs, 1933 (Annelida: Spionidae) from the shellfish along the coast of China

机译:1933年中国沿海贝类Poly(Polydora brevipalpa Zachs)(Annelida:Spionidae)的形态和分子诊断

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摘要

Shell-boring species Polydora brevipalpa Zachs, 1933 is redescribed based on morphological observations and molecular approach for future unambiguous identification. Genetic distance analyses showed that the interspecific polydorid variation (16.7%–25.6%) was at least 15 times higher than the intraspecific one (0.2%–0.9%) based on the cytochrome c oxidase subunit I (CO1) gene sequences of polydorids. However, 18S rDNA variation pattern demonstrated a rather narrow barcoding gap, with the interspecific polydorid variation (0.5%–5.6%) being very close to the intraspecific one (0.0%–0.4%). As such, the CO1 gene exhibited better DNA barcode for identification of polydorids than the 18S rDNA gene because of the sufficiently large barcoding gaps. Analysis of molecular variance results based on CO1 gene sequences showed that most variations in sequences (97.79%) lay within groups of adult worms and egg capsules rather than between them. This indicated that egg capsules from Crassostrea gigas (Thunberg, 1793) in Ningbo and Nantong were related to the adult worms from Patinopecten yessoensis (Jay, 1857) in Dalian, and both of them belonged to P. brevipalpa. This result was further supported by parsimony network analysis, which showed that egg capsules collected from different localities and adult worms shared a single haplotype. This study was the first to report both P. brevipalpa infestation on C. gigas and to utilise the known CO1 sequences of the adult polydorids to validate morphologically unidentified egg capsules or early larvae. P. brevipalpa was most possibly brought to Chinese waters through transportation of Pa. yessoensis brood stock from Japan.
机译:基于形态观察和分子方法,对无壳壳物种Polydora brevipalpa Zachs,1933年进行了重新描述,以进行未来的明确鉴定。遗传距离分析表明,基于多齿型的细胞色素C氧化酶亚基I(CO1)基因序列,种间多齿型变异(16.7%–25.6%)比种内多齿型变异(0.2%〜0.9%)高至少15倍。然而,18S rDNA变异模式显示出一个较窄的条形码缺口,种间多聚体变异(0.5%–5.6%)非常接近种内变异(0.0%–0.4%)。这样,由于足够大的条形码缺口,CO1基因比18S rDNA基因显示出更好的DNA条形码以鉴定多聚腺苷。基于CO1基因序列的分子变异结果分析表明,序列的大多数变异(97.79%)位于成虫和卵囊的组内,而不是在它们之间。这表明宁波和南通的Crassostrea gigas(Thunberg,1793)的卵囊与大连的Patinopecten yessoensis(Jay,1857)的成虫有关,它们都属于短小P. brevipalpa。简约网络分析进一步支持了该结果,该网络分析表明,从不同地区和成虫体内收集的卵囊具有相同的单倍型。这项研究是第一个报道长满假单胞菌的短尾念珠菌侵染并利用成年多虫类的已知CO1序列来验证形态学上未鉴定的卵囊或早期幼虫的研究。 brevipalpa极有可能是通过从日本运来的Yessoensis亲鱼种群而带到中国水域的。

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  • 来源
    《中国海洋湖沼学报(英文版)》 |2019年第2期|713-723|共11页
  • 作者单位

    Key Laboratory of Aquatic Product Processing Key Laboratory of South China Sea Fishery Resources Exploitation &Utilization, Ministry of Agriculture South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510300, China;

    Key Laboratory of Aquatic Product Processing Key Laboratory of South China Sea Fishery Resources Exploitation &Utilization, Ministry of Agriculture South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510300, China;

    Key Laboratory of Aquatic Product Processing Key Laboratory of South China Sea Fishery Resources Exploitation &Utilization, Ministry of Agriculture South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510300, China;

    Shanghai Ocean University, Shanghai 201306, China;

    Key Laboratory of Aquatic Product Processing Key Laboratory of South China Sea Fishery Resources Exploitation &Utilization, Ministry of Agriculture South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510300, China;

    Key Laboratory of Aquatic Product Processing Key Laboratory of South China Sea Fishery Resources Exploitation &Utilization, Ministry of Agriculture South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou 510300, China;

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