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模式豆科植物百脉根的根、根毛和共生突变体。

Root, root hair, and symbiotic mutants of the model legume Lotus japonicus.

作者信息

Kawaguchi Masayoshi, Imaizumi-Anraku Haruko, Koiwa Hiroyuki, Niwa Sinobu, Ikuta Akira, Syono Kunihiko, Akao Shoichiro

机构信息

Department of Life Sciences, Graduate School of Arts and Sciences, University of Tokyo, Japan.

出版信息

Mol Plant Microbe Interact. 2002 Jan;15(1):17-26. doi: 10.1094/MPMI.2002.15.1.17.

Abstract

To gain an overview of plant factors controlling nodule number and organogenesis, an extensive screening using model legume Lotus japonicus was carried out. This screening involved 40,000 M2 seeds, and 32 stable mutant lines were isolated. From these, 16 mutant lines maintaining the phenotypic variation were selected and genetically analyzed. With respect to nodule number, four loci were identified, Ljsym77, Ljsym78, slippery root (slp), and radial organization1 (rdo1). The former two mutants have an increased number of nodules, while the latter two have a decreased number. Ljsym78-1 and Ljsym78-2 are hypernodulating mutants with a branched root system and were found to be allelic to Ljsym16. The phenotype of the Ljsym77 mutant was highly pleiotropic, being deficient in light and gravity responses. The slp mutant was isolated as a low-nodulating mutant lacking root hairs. Concerning nodule organogenesis, nine symbiotic loci were identified, including the two loci alb1 and fen1. Mutants affecting the developmental process of nodule organogenesis were placed in three phenotypic categories: Nod- (Ljsym70 to Ljsym73), Hist- (alb1-1, alb1-2, and Ljsym79), and Fix- (fen1, Ljsym75, and Ljsym81).

摘要

为了全面了解控制根瘤数量和器官发生的植物因子,利用豆科模式植物百脉根进行了广泛的筛选。该筛选涉及40000粒M2种子,分离出32个稳定的突变系。从中选取16个保持表型变异的突变系进行遗传分析。关于根瘤数量,鉴定出四个基因座,即Ljsym77、Ljsym78、滑根(slp)和径向组织1(rdo1)。前两个突变体的根瘤数量增加,而后两个突变体的根瘤数量减少。Ljsym78 - 1和Ljsym78 - 2是具有分支根系的超结瘤突变体,发现它们与Ljsym16等位。Ljsym77突变体的表型具有高度多效性,在光和重力反应方面存在缺陷。slp突变体是作为缺乏根毛的低结瘤突变体分离出来的。关于根瘤器官发生,鉴定出九个共生基因座,包括alb1和fen1这两个基因座。影响根瘤器官发生发育过程的突变体分为三个表型类别:无结瘤(Ljsym70至Ljsym73)、组织缺陷(alb1 - 1、alb1 - 2和Ljsym79)和固氮缺陷(fen1、Ljsym75和Ljsym81)。

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