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来自委内瑞拉的李氏丝虫属(线虫纲:盘尾丝虫科)一新种,寄生于棕榈稻鼠(啮齿目:仓鼠科:稻鼠亚科):描述、分子证据及嗜皮菌属沃尔巴克氏体检测

A new species of Litomosoides (Nematoda: Onchocercidae), parasite of Nectomys palmipes (Rodentia: Cricetidae: Sigmodontinae) from Venezuela: description, molecular evidence, Wolbachia pipientis screening.

作者信息

Guerrero Ricardo, Bain Odile, Martin Coralie, Barbuto Michela

机构信息

Laboratorio de Biologia de Vectores y Parisitos, Instituto de Zoologia y Ecologia Tropical, Universidad Central de Venezuela, P.O. Box 47058, Caracas, 1041A, Venezuela.

出版信息

Folia Parasitol (Praha). 2011 Jun;58(2):149-56. doi: 10.14411/fp.2011.014.

Abstract

Abstract: The onchocercid filaria Litomosoides taylori sp. n. is described from the sigmodontine cricetid Nectomys palmipes Allen et Chapman in northeast Venezuela. A voucher specimen of the new species was used for molecular analysis of the coxI and 12S rDNA genes, and screened for the presence of the endobacterium Wolbachia pipientis. Litomosoides taylori belongs to the "sigmodontis group" of Litomosoides and a combination of characters can be used to distinguish it from the remaining 18 species forming this group. Among the five Nectomys species, all living near running water, N. squamipes also harbours Litomosoides species, L. khonae in Brazil and L. navonae in Argentina. These three Litomosoides species of the "sigmodontis group" do not share any particular characters. Gene sequences of L. taylori differ from those of the five Litomosoides species available, the three of the "carinii group" being the most distant. The new species harbours W pipientis, which is concurrent with the great majority of Litomosoides species screened to date.

摘要

摘要

泰勒氏丝虫新种(Litomosoides taylori sp. n.)是从委内瑞拉东北部的稻鼠科仓鼠类动物棕榈鼠(Nectomys palmipes Allen et Chapman)中发现并描述的。新物种的一个凭证标本用于coxI和12S rDNA基因的分子分析,并检测了沃尔巴克氏体(Wolbachia pipientis)内共生菌的存在情况。泰勒氏丝虫属于丝虫属的“稻鼠丝虫组”,可通过一系列特征组合将其与构成该组的其他18个物种区分开来。在五个都生活在流水附近的稻鼠物种中,鳞足稻鼠(N. squamipes)也携带丝虫属物种,在巴西为科纳氏丝虫(L. khonae),在阿根廷为纳沃纳氏丝虫(L. navonae)。“稻鼠丝虫组”的这三个丝虫属物种没有共同的特定特征。泰勒氏丝虫的基因序列与现有的五个丝虫属物种不同,其中“卡里尼组”的三个物种差异最大。新物种携带沃尔巴克氏体,这与迄今为止检测的大多数丝虫属物种情况一致。

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