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在干草堆中找针:寄生在海洋浮游动物中的双腔科(吸虫纲:复殖目)幼虫期。

Finding a needle in a haystack: larval stages of Didymozoidae (Trematoda: Digenea) parasitizing marine zooplankton.

机构信息

Departamento de Hidrobiología, Universidad Autónoma Metropolitana, Unidad Iztapalapa, Av. Ferrocarril de San Rafael Atlixco 186, Col. Leyes de Reforma, 09310, Mexico City, Mexico.

Departamento de Plancton y Ecología Marina, Centro Interdisciplinario de Ciencias Marinas, Instituto Politécnico Nacional, Av. IPN s/n, 23096, La Paz, B.C.S, Mexico.

出版信息

Parasitol Res. 2022 Sep;121(9):2661-2672. doi: 10.1007/s00436-022-07593-6. Epub 2022 Jul 20.

Abstract

Larval didymozoids (Trematoda: Digenea) were discovered parasitizing the hemocoel of the heteropod Firoloida desmarestia (redia mean intensity = 13) and the chaetognaths Flaccisagitta enflata and Flaccisagitta hexaptera (metacercaria mean intensity = 1) during a 2014-2016 systematic study of parasites of zooplankton collected in the central and southern regions of the Gulf of California, Mexico. Didymozoid infection route during the early life cycle was inferred combining morphological (light microscopy) and molecular (mitochondrial cytochrome c oxidase subunit I gene, cox1) evidence. Didymozoid rediae parasitizing F. desmarestia were observed, just after field collection of the host, containing hundredths of completely developed cystophorous cercariae, releasing them though the birth pore at approximately one cercaria every 12 s. Cercariae lost their tails developing into a 'young metacercaria' in 1 d at 22 °C without need of an intermediate host. Molecular analysis of cox1 showed that rediae found in F. desmarestia belong to two distinct didymozoid species (Didymozoidae sp. 1 and sp. 2). Metacercariae parasitizing chaetognaths were morphologically identified as Didymozoidae type Monilicaecum and cox1 sequences showed that metacercariae of chaetognaths matched with these two Didymozoidae sp. 1, and sp. 2 species found parasitizing F. desmarestia, plus a third distinct Didymozoidae sp. 3. These are the first DNA sequences of cox1 gene from didymozoid larvae for any zooplankton taxonomic group in the world. We concluded that F. desmarestia is the first intermediate host of rediae and cercariae, and the chaetognaths are the second intermediate hosts where non-encysted metacercariae were found. The definitive host is still unknown because cox1 sequences of present study did not genetically match with any available cox1 sequence of adult didymozoid. Our results demonstrate a potential overlap in the distribution of two carnivorous zooplankton taxonomic groups that are intermediate hosts of didymozoids in the pelagic habitat. The didymozoid specimens were not identified to species level because any of the cox1 sequences generated here matched with the sequences of adult didymozoids currently available in GenBank and Bold System databases. This study provides baseline information for the future morphological and molecular understanding of the Didymozoidae larvae that has been previously based on the recognition of the 12 known morphotypes.

摘要

在 2014 年至 2016 年期间,对墨西哥加利福尼亚湾中部和南部地区采集的浮游动物寄生虫进行了系统研究,发现幼虫双腔吸虫(吸虫纲:双腔科)寄生在异足类 Firoloida desmarestia(红内期平均强度=13)和长尾毛颚类 Flaccisagitta enflata 和 Flaccisagitta hexaptera(囊蚴平均强度=1)的血腔中。通过形态学(光学显微镜)和分子学(线粒体细胞色素 c 氧化酶亚基 I 基因,cox1)证据推断双腔吸虫的早期生活史感染途径。在野外收集宿主后不久,观察到寄生在 F. desmarestia 中的双腔吸虫红内期,其中含有数百个完全发育的囊状尾蚴,通过出生孔每隔 12 秒释放一个尾蚴。尾蚴在 22°C 下失去尾巴,在 1 天内发育成“年轻的囊蚴”,无需中间宿主。cox1 的分子分析表明,在 F. desmarestia 中发现的红内期属于两种不同的双腔吸虫物种(双腔科 1 型和 2 型)。寄生在长尾毛颚类的囊蚴形态上被鉴定为双腔科 Monilicaecum 型,cox1 序列表明,长尾毛颚类的囊蚴与这两种双腔科 1 型和 2 型以及在 F. desmarestia 中寄生的第三种独特的双腔科 3 型相匹配。这是世界上任何浮游动物分类群的双腔吸虫幼虫 cox1 基因的第一个 DNA 序列。我们得出结论,F. desmarestia 是红内期和尾蚴的第一中间宿主,长尾毛颚类是未囊化囊蚴的第二中间宿主。最终宿主仍然未知,因为本研究的 cox1 序列与现有 GenBank 和 Bold System 数据库中成年双腔吸虫的 cox1 序列没有遗传匹配。我们的结果表明,在浮游生物栖息地中,两种肉食性浮游动物分类群是双腔吸虫的中间宿主,它们之间存在潜在的分布重叠。由于这里生成的任何 cox1 序列都与目前 GenBank 和 Bold System 数据库中可用的成年双腔吸虫的序列相匹配,因此无法将双腔吸虫标本鉴定到种的水平。本研究为未来基于对 12 种已知形态型的识别的双腔科幼虫的形态学和分子学理解提供了基线信息。

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