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Molecular and Morphological Characterization and Biological Control Capabilities of a Pasteuria ssp. Parasitizing Rotylenchulus reniformis, the Reniform Nematode

机译:巴斯德氏菌属的分子和形态表征及生物控制能力。寄生于肾轮虫,肾形线虫

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Rotylenchulus reniformis is one of 10 described species of reniform nematodes and is considered the most economically significant pest within the genus, parasitizing a variety of important agricultural crops. Rotylenchulus reniformis collected from cotton fields in the Southeastern US were observed to have the nematode parasitic bacterium Pasteuria attached to their cuticles. Challenge with a Pasteuria-specific monoclonal antibody in live immuno-fluorescent assay (IFA) confirmed the discovery of Pasteuria infecting R. reniformis. Scanning and transmission electron microscopy were employed to observe endospore ultrastructure and sporogenesis within the host. Pasteuria were observed to infect and complete their life-cycle in juvenile, male and female R. reniformis. Molecular analysis using Pasteuria species-specific and degenerate primers for 16s rRNA and spoII, and subsequent phylogenetic assessment, placed the Pasteuria associated with R. reniformis in a distinct clade within established assemblages for the Pasteuria infecting phytopathogenic nematodes. A global phylogenetic assessment of Pasteuria 16s rDNA using the Neighbor-Joining method resulted in a clear branch with 100% boot-strap support that effectively partitioned the Pasteuria infecting phytopathogenic nematodes from the Pasteuria associated with bacterivorous nematodes. Phylogenetic analysis of the R. reniformis Pasteuria and Pasteuria spp. parasitizing a number of economically important plant parasitic nematodes revealed that Pasteuria with different host specificities are closely related and likely constitute biotypes of the same species. This suggests host preference, and thus effective differentiation and classification are most likely predicated by an influential virulence determinant(s) that has yet to be elucidated. Pasteuria Pr3 endospores produced by in vitro fermentation demonstrated efficacy as a commercial bionematicide to control R. reniformis on cotton in pot tests, when applied as a seed treatment and in a granular formulation. Population control was comparable to a seed-applied nematicide/insecticide (thiodicarb/imidacloprid) at a seed coating application rate of 1.0 x 10 8 spores/seed.
机译:轮虫轮虫是描述的10种肾形线虫之一,被认为是该属中最经济重要的害虫,寄生了多种重要的农作物。从美国东南部的棉田中收集到的轮状轮虫观察到线虫寄生细菌巴斯德氏菌附着在其表皮上。在活体免疫荧光分析法(IFA)中用巴斯德氏菌特异性单克隆抗体进行攻击,证实了感染巴斯德氏菌的肾形肾炎的发现。使用扫描和透射电子显微镜观察宿主内的孢子超微结构和孢子发生。观察到巴斯德氏菌在少年,男性和女性肾形念珠菌中感染并完成其生命周期。使用巴斯德氏菌物种特异性和简并引物进行16s rRNA和spoII的分子分析,以及随后的系统发育评估,将与R. reniformis相关的巴斯德氏菌置于已建立的巴斯德氏菌感染植物致病性线虫组合中的不同分支中。使用Neighbor-Joining方法对巴斯德氏菌16s rDNA进行的全面系统发育评估得出了一个清晰的分支,带有100%引导带支持,有效地将巴斯德氏菌感染的致病性线虫从与细菌性线虫相关的巴斯德氏菌中分离出来。 R. reniformis巴斯德氏菌和巴斯德氏菌属的系统发育分析。寄生了许多具有重要经济意义的植物寄生线虫后发现,具有不同宿主特异性的巴斯德氏菌密切相关,可能构成同一物种的生物型。这表明宿主偏好,因此有效的分化和分类最有可能由尚未阐明的有影响力的毒力决定因素决定。通过体外发酵生产的巴斯德氏菌Pr3内生孢子,作为种子处理剂和粒状制剂,在盆栽试验中证明了其作为商业杀虫剂的功效,可以控制棉花上的肾形杆菌。在1.0×10 8孢子/种子的种子包衣施用率下,种群控制与种子施用的杀线虫剂/杀虫剂(硫双威/吡虫啉)相当。

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