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Genetic and Immunological Comparison of the Cladoceran Parasite Pasteuria ramosa with the Nematode Parasite Pasteuria penetrans

机译:枝状线虫寄生的巴氏巴斯德氏菌与线虫寄生的巴氏巴斯德氏菌的遗传和免疫学比较

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摘要

Pasteuria penetrans, an obligate endospore-forming parasite of Meloidogyne spp. (root knot nematodes), has been identified as a promising agent for biocontrol of these destructive agricultural crop pests. Pasteuria ramosa, an obligate parasite of water fleas (Daphnia spp.), has been shown to modulate cladoceran populations in natural ecosystems. Selected sporulation genes and an epitope associated with the spore envelope of these related species were compared. The sigE and spoIIAA/spoIIAB genes differentiate the two species to a greater extent than 16S rRNA and may serve as probes to differentiate the species. Single-nucleotide variations were observed in several conserved genes of five distinct populations of P. ramosa, and while most of these variations are silent single-nucleotide polymorphisms, a few result in conservative amino acid substitutions. A monoclonal antibody directed against an adhesin epitope present on P. penetrans P20 endospores, previously determined to be specific for Pasteuria spp. associated with several phytopathogenic nematodes, also detects an epitope associated with P. ramosa endospores. Immunoblotting provided patterns that differentiate P. ramosa from other Pasteuria spp. This monoclonal antibody thus provides a probe with which to detect and discriminate endospores of different Pasteuria spp. The presence of a shared adhesin epitope in two species with such ecologically distant hosts suggests that there is an ancient and ecologically significant recognition process in these endospore-forming bacilli that contributes to the virulence of both species in their respective hosts.
机译:巴斯德氏巴斯德氏菌(Pastryia penetrans),是一种准直的形成内生孢子的Meloidogyne spp寄生虫。 (根结线虫)已被确认为对这些破坏性农作物害虫进行生物防治的有前途的药剂。巴斯德巴斯德氏菌是水蚤的专性寄生虫(水蚤),已被证明可以调节自然生态系统中的枝角类种群。比较了选定的孢子形成基因和与这些相关物种的孢子包膜相关的表位。 sigE和spoIIAA / spoIIAB基因与16S rRNA相比在更大程度上区分了这两个物种,可以用作区分该物种的探针。在五个不同的P. ramosa种群的几个保守基因中观察到单核苷酸变异,尽管这些变异中的大多数是沉默的单核苷酸多态性,但有少数会导致保守的氨基酸取代。针对P.transe P20内生孢子上存在的粘附素表位的单克隆抗体,先前已确定其对巴斯德氏菌具有特异性。与几个致病性线虫相关的表位,也可以检测与雷莫假单胞菌内生孢子相关的表位。免疫印迹提供了将拉美假单胞菌与其他巴斯德氏菌区分的模式。因此,这种单克隆抗体提供了一种探针,用于检测和区分不同巴斯德氏菌属的孢子。在具有这种生态距离远的宿主的两个物种中存在共有的粘附素表位,这表明在这些形成内生孢子的细菌中存在着古老且具有生态学意义的识别过程,这有助于这两个物种在其各自宿主中的毒性。

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