Lestari Puji, Van Kyujung, Kim Moon Young, Lee Byun-Woo, Lee Suk-Ha
Department of Plant Science, Seoul National University, Seoul 151-921, Korea.
Can J Microbiol. 2006 Apr;52(4):328-35. doi: 10.1139/w05-127.
Supernodulating soybean (Glycine max L. Merr.) mutant SS2-2 and its wild-type counterpart, Sinpaldalkong 2, were examined for the microstructural events associated with nodule formation and development. SS2-2 produced a substantially higher percentage of curled root hairs than the wild type, especially at 14 days after inoculation with Bradyrhizobium japonicum. In addition, there was new evidence that in SS2-2, B. japonicum also entered through fissures created by the emerging adventitious root primordia. Early steps of nodule ontogeny were faster in SS2-2, and continued development of initiated nodules was more frequent and occurred at a higher frequency than in the wild type. These data suggest that the early expression of autoregulation is facilitated by decreasing the speed of cortical cell development, leading to the subsequent termination of less-developed nodules. The nodules of SS2-2 developed into spherical nodules like those formed on the wild type. In both the wild type and supernodulating mutant, vascular bundles bifurcate from root stele and branch off in the nodule cortex to surround the central infected zone. These findings indicate that SS2-2 has complete endosymbiosis and forms completely developed nodule vascular bundles like the wild type, but that the speed of nodule ontogeny differs between the wild type and SS2-2. Thus, SS2-2 has a novel symbiotic phenotype with regard to nodule organogenesis.
对超结瘤大豆(Glycine max L. Merr.)突变体SS2-2及其野生型对照品种Sinpaldalkong 2进行了与根瘤形成和发育相关的微观结构研究。与野生型相比,SS2-2产生卷曲根毛的比例显著更高,尤其是在接种日本慢生根瘤菌14天后。此外,有新证据表明,在SS2-2中,日本慢生根瘤菌也通过不定根原基出现时产生的裂缝进入。SS2-2中根瘤个体发育的早期步骤更快,已起始根瘤的持续发育比野生型更频繁且发生率更高。这些数据表明,通过降低皮层细胞发育速度促进了自调节的早期表达,从而导致发育较差的根瘤随后终止。SS2-2的根瘤发育成与野生型相似的球形根瘤。在野生型和超结瘤突变体中,维管束均从根中柱分叉并在根瘤皮层中分支,以包围中央感染区。这些发现表明,SS2-2具有完全的内共生关系,并且像野生型一样形成完全发育的根瘤维管束,但野生型和SS2-2之间根瘤个体发育的速度不同。因此,在根瘤器官发生方面,SS2-2具有一种新的共生表型。