Poonguzhali S, Madhaiyan M, Yim Woo-Jong, Kim Kyoung-A, Sa Tong-Min
Department of Agricultural Chemistry, Chungbuk National University, Cheongju, Chungbuk, Republic of Korea.
Appl Microbiol Biotechnol. 2008 Apr;78(6):1033-43. doi: 10.1007/s00253-008-1398-1. Epub 2008 Mar 5.
The localization of bacterial cell, pattern of colonization, and survival of Methylobacterium suomiense CBMB120 in the rhizosphere of rice and tomato plants were followed by confocal laser scanning, scanning electron microscopy, and selective plating. M. suomiense CBMB120 was tagged with green fluorescent protein (gfp), and inoculation was carried out through seed source. The results clearly showed that the gfp marker is stably inherited and is expressed in planta allowing for easy visualization of M. suomiense CBMB120. The colonization differed in rice and tomato -- intercellular colonization of surface-sterilized root sections was visible in tomato but not in rice. In both rice and tomato, the cells were visible in the substomatal chambers of leaves. Furthermore, the strain was able to compete with the indigenous microorganisms and persist in the rhizosphere of tomato and rice, assessed through dilution plating on selective media. The detailed ultra-structural study on the rhizosphere colonization by Methylobacterium put forth conclusively that M. suomiense CBMB120 colonize the roots and leaf surfaces of the plants studied and is transmitted to the aerial plant parts from the seed source.
通过共聚焦激光扫描、扫描电子显微镜和选择性平板计数法,追踪了芬兰甲基杆菌CBMB120在水稻和番茄根际的细菌细胞定位、定殖模式及存活情况。芬兰甲基杆菌CBMB120用绿色荧光蛋白(gfp)标记,并通过种子源进行接种。结果清楚地表明,gfp标记能够稳定遗传并在植物中表达,便于观察芬兰甲基杆菌CBMB120。水稻和番茄中的定殖情况有所不同——在番茄中,表面消毒的根段细胞间定殖可见,而在水稻中则不可见。在水稻和番茄中,叶片的气孔下腔都可见到该细菌细胞。此外,通过在选择性培养基上进行稀释平板计数评估发现,该菌株能够与本土微生物竞争,并在番茄和水稻根际存活。对甲基杆菌根际定殖的详细超微结构研究最终得出结论,芬兰甲基杆菌CBMB120定殖在所研究植物的根和叶表面,并从种子源传播到植物地上部分。