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了解专性重寄生细菌穿刺巴氏杆菌与其专性植物寄生线虫宿主根结线虫属之间的相互作用。

Understanding the interaction between an obligate hyperparasitic bacterium, Pasteuria penetrans and its obligate plant-parasitic nematode host, Meloidogyne spp.

作者信息

Davies Keith G

机构信息

Plant Pathology and Microbiology, Rothamsted Research, Harpenden, United Kingdom.

出版信息

Adv Parasitol. 2009;68:211-45. doi: 10.1016/S0065-308X(08)00609-X.

Abstract

Pasteuria penetrans is an endospore-forming bacterium, which is a hyperparasite of root-knot nematodes Meloidogyne spp. that are economically important pests of a wide range of crops. The life cycle of the bacterium and nematode are described with emphasis on the bacterium's potential as a biocontrol agent. Two aspects that currently prohibit the commercial development of the bacterium as a biocontrol agent are the inability to culture it outside its host and its host specificity. Vegetative growth of the bacterium is possible in vitro; however, getting the vegetative stages of the bacterium to enter sporogenesis has been problematic. Insights from genomic survey sequences regarding the role of cation concentration and the phosphorylation of Spo0F have proved useful in inducing vegetative bacteria to sporulate. Similarly, genomic data have also proved useful in understanding the attachment of endospores to the cuticle of infective nematode juveniles, and a Velcro-like model of spore attachment is proposed that involves collagen-like fibres on the surface of the endospore interacting with mucins on the nematode cuticle. Ecological studies of the interactions between Daphnia and Pasteuria ramosa are examined and similarities are drawn between the co-evolution of virulence in the Daphnia system and that of plant-parasitic nematodes.

摘要

穿刺巴氏杆菌是一种形成内生孢子的细菌,是根结线虫(Meloidogyne spp.)的超级寄生菌,而根结线虫是多种作物的重要经济害虫。文中描述了该细菌和线虫的生命周期,并重点强调了该细菌作为生物防治剂的潜力。目前阻碍该细菌作为生物防治剂进行商业开发的两个方面是无法在宿主外进行培养以及其宿主特异性。该细菌的营养生长在体外是可能的;然而,使该细菌的营养阶段进入孢子形成过程一直存在问题。基因组调查序列中关于阳离子浓度和Spo0F磷酸化作用的见解已被证明有助于诱导营养细菌形成孢子。同样,基因组数据在理解内生孢子与感染性线虫幼虫角质层的附着方面也很有用,并提出了一种类似维可牢尼龙搭扣的孢子附着模型,该模型涉及内生孢子表面的胶原样纤维与线虫角质层上的粘蛋白相互作用。文中研究了水蚤与枝状巴氏杆菌之间相互作用的生态学研究,并比较了水蚤系统中毒力的共同进化与植物寄生线虫的毒力共同进化之间的相似性。

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