Department of Microbiology and Plant Pathology, Forestry Agriculture and Biotechnology Institute, University of Pretoria, Pretoria, South Africa.
Lett Appl Microbiol. 2013 Apr;56(4):258-63. doi: 10.1111/lam.12045. Epub 2013 Feb 22.
The study of plant parasitic nematodes such as Meloidogyne spp. and their interactions with phytopathogenic bacteria remains underexplored. One of the challenges towards establishing such interactions is the dependence on symptom development as a measure of interaction. In this study, mCherry was employed as a reporter protein to investigate the interaction between the soft rot Enterobacteriaceae (SRE) Pectobacterium carotovorum subsp. brasiliensis (Pcb) and root-knot nematode (M. incognita). Pectobacterium carotovorum subsp. brasiliensis was transformed with pMP7604 generating Pcb_mCherry strain. This strain was shown to attach to the surface coat of M.incognita J2 at the optimum temperature of 28°C. This suggests that RKN juveniles may play a role in disseminating Pcb in soils that are heavily infested with Pcb. The presence of RKN juveniles was shown to play a role in introducing Pcb_mCherry into potato tubers potentially acting as a source of latent tuber infections.
对植物寄生线虫(如根结线虫属)及其与植物病原菌细菌的相互作用的研究仍未得到充分探索。在建立这种相互作用的挑战之一是依赖症状发展作为相互作用的衡量标准。在这项研究中,mCherry 被用作报告蛋白来研究软腐欧文氏菌(SRE)果胶杆菌亚种。巴西软腐病菌(Pcb)与根结线虫(M. incognita)之间的相互作用。果胶杆菌亚种。巴西软腐病菌用 pMP7604 转化生成 Pcb_mCherry 菌株。该菌株在 28°C 的最适温度下显示出附着在 M.incognita J2 的表面涂层上。这表明 RKN 幼虫可能在 Pcb 严重侵染的土壤中传播 Pcb 方面发挥作用。已经表明 RKN 幼虫的存在在将 Pcb_mCherry 引入马铃薯块茎中发挥作用,马铃薯块茎可能充当潜伏块茎感染的来源。