Böhm Melanie, Hurek Thomas, Reinhold-Hurek Barbara
Laboratory of General Microbiology, University Bremen, P.O. Box 33 04 40, D-28334 Bremen, Germany.
Mol Plant Microbe Interact. 2007 May;20(5):526-33. doi: 10.1094/MPMI-20-5-0526.
Azoarcus sp. strain BH72, as an endophyte of grasses, depends on successful host colonization. Type IV pili are essential for mediating the initial interaction with rice roots. In the genome sequence analysis, the pilT gene was identified, which encodes for a putative type IV pilus retraction protein. PilT of Azoarcus sp. BH72 shares high similarity to PilT of the human pathogen Pseudomonas aeruginosa PAO1 (77% amino acid sequence identity) and contains a predicted nucleotide-binding motif. To gain more insights into the role of the type IV pili in the colonization process of Azoarcus spp., we constructed an insertional mutant of pilT and a deletion mutant of pilA, the major structural component of the pilus structure. The pilT mutant, as the pilin deletion mutant deltapilA, was abolished in twitching motility. Western blot analyses and electron microscopy studies demonstrated an enhanced piliation of the Azoarcus pilT mutant strain compared with the wild type, indicating that, indeed, PilT has a role in pilus retraction. Studies on rice root colonization in gnotobiotic cultures revealed that the establishment of microcolonies on the root surface was strongly reduced in the deltapilA mutant, whereas the surface colonization was reduced by only 50% in the nontwitching pilT mutant. However, endophytic colonization of rice roots was strongly reduced in both mutants. These results demonstrate that the retractile force mediated by PilT is not essential for the bacterial colonization of the plant surface, but that twitching motility is necessary for invasion of and establishment inside the plant. Thus, a novel determinant for endophytic interactions with grasses was identified.
固氮弧菌属菌株BH72作为一种禾本科植物内生菌,依赖于成功定殖于宿主。IV型菌毛对于介导与水稻根的初始相互作用至关重要。在基因组序列分析中,鉴定出了pilT基因,其编码一种假定的IV型菌毛收缩蛋白。固氮弧菌属BH72的PilT与人类病原体铜绿假单胞菌PAO1的PilT具有高度相似性(氨基酸序列同一性为77%),并含有一个预测的核苷酸结合基序。为了更深入了解IV型菌毛在固氮弧菌属定殖过程中的作用,我们构建了pilT插入突变体和菌毛结构主要结构成分pilA的缺失突变体。pilT突变体与菌毛蛋白缺失突变体deltapilA一样,丧失了摆动运动能力。蛋白质免疫印迹分析和电子显微镜研究表明,与野生型相比,固氮弧菌pilT突变株的菌毛形成增强,这表明PilT确实在菌毛收缩中发挥作用。在无菌培养中对水稻根定殖的研究表明,deltapilA突变体在根表面形成微菌落的能力显著降低,而在非摆动性pilT突变体中,表面定殖仅降低了50%。然而,两个突变体中水稻根的内生定殖均显著降低。这些结果表明,PilT介导的收缩力对于细菌在植物表面的定殖并非必不可少,但摆动运动对于细菌侵入植物并在植物内部定殖是必要的。因此,确定了一种与禾本科植物内生相互作用的新决定因素。