Senoo K, Solaiman M Z, Kawaguchi M, Imaizumi-Anraku H, Akao S, Tanaka A, Obata H
Faculty of Bioresources, Mie University, Tsu, Japan.
Plant Cell Physiol. 2000 Jun;41(6):726-32. doi: 10.1093/pcp/41.6.726.
Lotus japonicus has been proposed as a model plant for the molecular genetic study of plant-microbe interaction including Mesorhizobium loti and arbuscular mycorrhizal (AM) fungi. Non-mycorrhizal mutants of Lotus japonicus were screened from a collection of 12 mutants showing non-nodulating (Nod-), ineffectively nodulating (Fix-) and hypernodulating (Nod++) phenotypes with monogenic recessive inheritance induced by EMS (ethylmethane sulfonate) mutagenesis. Three mycorrhizal mutant lines showing highly reduced arbuscular mycorrhizal colonization were obtained. All of them were derived from Nod- phenotypes. In Ljsym72, the root colonization by Glomus sp. R-10 is characterized by poor development of the external mycelium, formation of extremely branched appressoria, and the blocking of hyphal penetration at the root epidermis. Neither arbuscules nor vesicles were formed in Ljsym72 roots. Fungal recognition on the root surface was strongly affected by the mutation in the LjSym72 gene. Unique characteristics in mutant lines Ljsym71-1 and Ljsym71-2 were the overproduction of deformed appressoria and arrested hyphal penetration of the exodermis. Small amounts of internal colonization including degenerated arbuscule formation occurred infrequently in these types of mutants. Not only fungal development on the root surface but also that in the root exodermis and cortex was affected by the mutation in LjSym71 gene. These mutants represent a key advance in molecular research on the AM symbiosis.
日本百脉根已被提议作为植物与微生物相互作用分子遗传学研究的模式植物,这些相互作用包括与百脉根中生根瘤菌和丛枝菌根(AM)真菌的相互作用。从12个经甲基磺酸乙酯(EMS)诱变产生的具有单基因隐性遗传的非结瘤(Nod-)、无效结瘤(Fix-)和超结瘤(Nod++)表型的突变体库中筛选出日本百脉根的非菌根突变体。获得了三个丛枝菌根定殖高度降低的菌根突变系。它们均源自Nod-表型。在Ljsym72中,球囊霉属R-10在根部的定殖表现为外部菌丝体发育不良、形成极度分支的附着胞以及在根表皮处菌丝穿透受阻。Ljsym72根中既不形成丛枝也不形成泡囊。LjSym72基因的突变强烈影响根表面的真菌识别。突变系Ljsym71-1和Ljsym71-2的独特特征是畸形附着胞过度产生以及外皮层菌丝穿透受阻。在这些类型的突变体中,偶尔会出现少量包括退化丛枝形成在内的内部定殖。LjSym71基因的突变不仅影响根表面的真菌发育,还影响根外皮层和皮层中的真菌发育。这些突变体代表了丛枝菌根共生分子研究的一项关键进展。