首页> 美国卫生研究院文献>International Journal for Parasitology: Parasites and Wildlife >Pathobiology and first report of larval nematodes (Ascaridomorpha sp.) infecting freshwater mussels (Villosa nebulosa Unionidae) including an inventory of nematode infections in freshwater and marine bivalves
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Pathobiology and first report of larval nematodes (Ascaridomorpha sp.) infecting freshwater mussels (Villosa nebulosa Unionidae) including an inventory of nematode infections in freshwater and marine bivalves

机译:感染淡水贻贝(Villosa nebulosaUnionidae)的幼虫线虫(Ascaridomorpha sp。)的病理生物学和首次报道包括淡水和海洋双壳类的线虫感染清单

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摘要

Little information is available on host-parasite relationships between bivalves and larval nematodes. Herein, we describe nematode larvae (likely stage 2) in the infraorder Ascaridomorpha infecting the foot, intestine, and mantle of a freshwater mussel (Alabama rainbow, Villosa nebulosa [Conrad, 1834]) and detail histopathological changes to infected tissues. A total of 43 live mussels from the South Fork of Terrapin Creek, Alabama, were collected between 2010 and 2014, with 14 sectioned for histopathology and 29 dissected. Of the 14 sectioned mussels, 5 appeared to be uninfected, and 7, 1, and 1 had histozoic infections observed in the foot and intestine, intestine only, and mantle edge and foot, respectively. Twenty-three of 29 (79%) of the mussels dissected were infected by live nematodes, and mean nematode abundance was 8.3 (CL = 5.23–13), with 2 mussels infected with >100 nematodes each. Thus, with a total of 32 of the 43 collected mussels observed with nematodes, overall infection prevalence was 74.4% (CL = 0.594–0.855). The 18S rDNA of this nematode was 99% similar to that of several ascaridids (species of Kathlaniidae Lane, 1914 and Quimperiidae Baylis, 1930) that mature in aquatic/semi-aquatic vertebrates; the recovered 18S phylogenetic tree indicated this nematode from V. nebulosa shares a recent common ancestor with Ichthyobronema hamulatum (Ascaridomorpha: Quimperiidae; GenBank Accession Number ). Pathological changes to tissue associated with these infections comprised focal tissue damage, but a cellular response was not evident. The Alabama rainbow possibly represents an intermediate or paratenic host. Given these results, the nematode is likely not pathogenic under normal stream conditions; however, high intensity infections in the foot could inhibit pedal extension and retraction; which would have demonstrable health consequences to a freshwater mussel. Based on our review of the bivalve mollusc parasite literature, a collective biodiversity of 61 nematodes reportedly exhibit some degree of symbiosis (from commensal to parasitic) with 21 bivalves (28 nematode spp. from 17 marine bivalve spp.; 33 nematode spp. from 4 freshwater bivalve spp.); only four records exist of putatively parasitic nematodes from Unionida. The present study represents the first description of a nematode species that invades the tissues of a Unionidae species.
机译:关于双壳类和幼虫线虫之间的宿主-寄生虫关系的信息很少。在本文中,我们描述了侵染淡水贻贝(阿拉巴马州彩虹,Villosa nebulosa [Conrad,1834])的脚,肠和地幔的基础A虫的线虫幼虫(可能是第2阶段),并详细介绍了感染组织的组织病理学变化。在2010年至2014年之间,共从阿拉巴马州Terrapin Creek南叉收集了43份活贻贝,其中14份进行了组织病理学检查,29份进行了解剖。在14个切片的贻贝中,有5个似乎未受到感染,分别在脚和肠中,仅在肠中以及在地幔边缘和脚中观察到了7、1,和1个组织感染。在解剖的贻贝中,有29个中有23个被活的线虫感染,平均线虫丰度为8.3(CL = 5.23-13),其中2个贻贝每个都感染了100多个线虫。因此,在观察到的线虫贻贝中,共有43个贻贝中有32个,总体感染率为74.4%(CL = 0.594–0.855)。该线虫的18S rDNA与在水生/半水生脊椎动物中成熟的几种a虫(1914年的Kathlaniidae Lane物种和1930年的Quimperiidae Baylis物种)相似。恢复的18S系统发育树表明,这种来自V.nebulosa的线虫与Hachatum(H.Ascaridomorpha:Quimperiidae; GenBank登录号)共享一个最近的祖先。与这些感染相关的组织的病理变化包括局灶性组织损伤,但细胞反应并不明显。阿拉巴马州的彩虹可能代表着中间或腹足宿主。鉴于这些结果,线虫在正常水流条件下可能不是致病的。但是,脚上的高强度感染会抑制踏板的伸展和收缩;这将对淡水贻贝产生明显的健康影响。根据我们对双壳软体动物寄生虫文献的回顾,据报道,共有61个线虫的共生生物具有一定程度的共生(从共生到寄生),其中21个双壳动物(28个线虫来自17个海洋双壳虫; 33个线虫来自4个)。淡水双壳类);仅有四个记录存在于Unionida的推定寄生线虫。本研究代表了入侵线虫物种组织的线虫物种的首次描述。

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