Tansengco Myra L, Hayashi Makoto, Kawaguchi Masayoshi, Imaizumi-Anraku Haruko, Murooka Yoshikatsu
Osaka University, Graduate School of Engineering, Department of Biotechnology, Yamadaoka 2-1, Suita, Osaka 565-0871, Japan.
Plant Physiol. 2003 Mar;131(3):1054-63. doi: 10.1104/pp.102.017020.
To elucidate the mechanisms involved in Rhizobium-legume symbiosis, we examined a novel symbiotic mutant, crinkle (Ljsym79), from the model legume Lotus japonicus. On nitrogen-starved medium, crinkle mutants inoculated with the symbiont bacterium Mesorhizobium loti MAFF 303099 showed severe nitrogen deficiency symptoms. This mutant was characterized by the production of many bumps and small, white, uninfected nodule-like structures. Few nodules were pale-pink and irregularly shaped with nitrogen-fixing bacteroids and expressing leghemoglobin mRNA. Morphological analysis of infected roots showed that nodulation in crinkle mutants is blocked at the stage of the infection process. Confocal microscopy and histological examination of crinkle nodules revealed that infection threads were arrested upon penetrating the epidermal cells. Starch accumulation in uninfected cells and undeveloped vascular bundles were also noted in crinkle nodules. Results suggest that the Crinkle gene controls the infection process that is crucial during the early stage of nodule organogenesis. Aside from the symbiotic phenotypes, crinkle mutants also developed morphological alterations, such as crinkly or wavy trichomes, short seedpods with aborted embryos, and swollen root hairs. crinkle is therefore required for symbiotic nodule development and for other aspects of plant development.
为了阐明根瘤菌与豆科植物共生所涉及的机制,我们研究了模式豆科植物百脉根的一个新型共生突变体——皱叶突变体(Ljsym79)。在缺氮培养基上,接种共生细菌中慢生根瘤菌MAFF 303099的皱叶突变体表现出严重的氮缺乏症状。该突变体的特征是产生许多瘤状突起以及小的、白色的、未被感染的类根瘤结构。很少有根瘤呈淡粉色,形状不规则,含有固氮类菌体并表达豆血红蛋白mRNA。对受感染根的形态学分析表明,皱叶突变体的根瘤形成在感染过程阶段受阻。对皱叶根瘤的共聚焦显微镜检查和组织学检查显示,感染丝在穿透表皮细胞时停滞。在皱叶根瘤中还观察到未感染细胞中的淀粉积累和未发育的维管束。结果表明,Crinkle基因控制着在根瘤器官发生早期至关重要的感染过程。除了共生表型外,皱叶突变体还出现了形态改变,如卷曲或波浪状的毛状体、带有败育胚的短豆荚以及肿胀的根毛。因此,Crinkle基因对于共生根瘤发育以及植物发育的其他方面都是必需的。