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欧洲食用鸟蛤体内寄生吸虫种类的形态学和分子鉴定

Morphological . molecular identification of trematode species infecting the edible cockle across Europe.

作者信息

Stout Leslie, Daffe Guillemine, Chambouvet Aurélie, Correia Simão, Culloty Sarah, Freitas Rosa, Iglesias David, Jensen K Thomas, Joaquim Sandra, Lynch Sharon, Magalhães Luisa, Mahony Kate, Malham Shelagh K, Matias Domitilia, Rocroy Mélanie, Thieltges David W, de Montaudouin Xavier

机构信息

Univ. Bordeaux, CNRS, Bordeaux INP, EPOC, UMR, 5805, Station Marine d'Arcachon, Arcachon, France.

Univ. Bordeaux, CNRS, OASU, UAR, 2567, POREA, Pessac, France.

出版信息

Int J Parasitol Parasites Wildl. 2024 Nov 14;25:101019. doi: 10.1016/j.ijppaw.2024.101019. eCollection 2024 Dec.

Abstract

Identifying marine trematode parasites in host tissue can be complicated when there is limited morphological differentiation between species infecting the same host species. This poses a challenge for regular surveys of the parasite communities in species of socio-economic and ecological importance. Our study focused on identifying digenean trematode species infecting the marine bivalve across Europe by comparing morphological and molecular species identification methods. Cockles were sampled from ten locations to observe the trematode parasites under a stereomicroscope (morphological identification) and to isolate individuals for phylogenetic analyses using two gene markers, the small sub-unit ribosomal (18S) RNA gene (SSU rDNA) and the mitochondrial cytochrome oxidase subunit 1 (cox1). For the first time, we compared both morphological identification and phylogenetic analyses for each of the 13 originally identified species. First, we identified a group of five species for which morphological identification matched molecular results (, , , , ). Second, we identified a group of six species for which molecular results revealed either misidentifications or cryptic diversity (, , , , , . ). Third, our analyses showed that all sequences of two expected species, and , matched between the two, strongly suggesting that only is present in the studied area. Our study clearly demonstrates that molecular tools are necessary to validate the trematode species composition. However, with 17 distinct genetic lineages detected, some of which are not fully identified, future studies are needed to clarify the identity and status (regular accidental infection) of some of these cryptic trematode species.

摘要

当感染同一宿主物种的不同种类之间形态分化有限时,在宿主组织中识别海洋吸虫寄生虫可能会很复杂。这对具有社会经济和生态重要性的物种的寄生虫群落进行定期调查构成了挑战。我们的研究重点是通过比较形态学和分子物种识别方法,来识别感染欧洲海洋双壳贝类的复殖吸虫种类。从十个地点采集鸟蛤样本,以便在体视显微镜下观察吸虫寄生虫(形态学识别),并分离个体以使用两个基因标记进行系统发育分析,这两个基因标记分别是小亚基核糖体(18S)RNA基因(SSU rDNA)和线粒体细胞色素氧化酶亚基1(cox1)。我们首次对最初鉴定的13个物种中的每一个都进行了形态学识别和系统发育分析的比较。首先,我们鉴定出一组五个物种,其形态学识别与分子结果相匹配( 、 、 、 、 )。其次,我们鉴定出一组六个物种,其分子结果显示存在错误识别或隐秘多样性( 、 、 、 、 、 )。第三,我们的分析表明,两个预期物种 和 的所有序列在两者之间相匹配,强烈表明在所研究区域仅存在 。我们的研究清楚地表明,分子工具对于验证吸虫物种组成是必要的。然而,检测到17个不同的遗传谱系,其中一些尚未完全鉴定,未来需要进一步研究以阐明其中一些隐秘吸虫物种的身份和地位(常规感染 偶然感染)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7074/11648788/3ceca009fd88/ga1.jpg

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