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一种对菌根超敏感且结瘤有缺陷的蒺藜苜蓿突变体。

A Medicago truncatula mutant hyper-responsive to mycorrhiza and defective for nodulation.

作者信息

Morandi Dominique, le Signor Christine, Gianinazzi-Pearson Vivienne, Duc Gérard

机构信息

UMR INRA 1088/CNRS 5184/Université de Bourgogne Plante-Microbe-Environnement, INRA-CMSE, BP 86510, 21065, Dijon Cedex, France.

UMR Génétique et Ecophysiologie des Légumineuses à Graines, INRA, BP 86510, 21065, Dijon Cedex, France.

出版信息

Mycorrhiza. 2009 Aug;19(6):435-441. doi: 10.1007/s00572-009-0242-5. Epub 2009 Apr 4.

Abstract

One key strategy for the identification of plant genes required for mycorrhizal development is the use of plant mutants affected in mycorrhizal colonisation. In this paper, we report a new Medicago truncatula mutant defective for nodulation but hypermycorrhizal for symbiosis development and response. This mutant, called B9, presents a poor shoot and, especially, root development with short laterals. Inoculation with Glomus intraradices results in significantly higher root colonisation of the mutant than the wild-type genotype A17 (+20% for total root length, +16% for arbuscule frequency in the colonised part of the root, +39% for arbuscule frequency in the total root system). Mycorrhizal effects on shoot and root biomass of B9 plants are about twofold greater than in the wild-type genotype. The B9 mutant of M. truncatula is characterised by considerably higher root concentrations of the phytoestrogen coumestrol and by the novel synthesis of the coumestrol conjugate malonyl glycoside, absent from roots of wild-type plants. In conclusion, this is the first time that a hypermycorrhizal plant mutant affected negatively for nodulation (Myc(++), Nod (-/+) phenotype) is reported. This mutant represents a new tool for the study of plant genes differentially regulating mycorrhiza and nodulation symbioses, in particular, those related to autoregulation mechanisms.

摘要

鉴定菌根发育所需植物基因的一个关键策略是利用在菌根定殖方面受到影响的植物突变体。在本文中,我们报道了一种新的蒺藜苜蓿突变体,该突变体在结瘤方面存在缺陷,但在共生发育和反应方面表现为超菌根状态。这个名为B9的突变体地上部生长不良,尤其是根系发育较差,侧根较短。接种根内球囊霉后,该突变体的根定殖率显著高于野生型基因型A17(总根长增加20%,根定殖部分的丛枝频率增加16%,整个根系的丛枝频率增加39%)。菌根对B9植株地上部和根系生物量的影响比野生型基因型大约高两倍。蒺藜苜蓿的B9突变体的特征是根中植物雌激素香豆雌酚的浓度显著更高,并且新合成了香豆雌酚共轭物丙二酰糖苷,而野生型植物的根中不存在这种物质。总之,这是首次报道一种在结瘤方面受到负面影响的超菌根植物突变体(Myc(++),Nod (-/+)表型)。该突变体是研究差异调节菌根和结瘤共生,特别是与自动调节机制相关的植物基因的新工具。

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