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当番茄(Solanum lycopersicum)受到根部真菌寄生虫立枯丝核菌感染时,rmc基因座不会影响植物间的相互作用或与防御相关的基因表达。

The rmc locus does not affect plant interactions or defence-related gene expression when tomato (Solanum lycopersicum) is infected with the root fungal parasite, Rhizoctonia.

作者信息

Gao Ling-Ling, Smith F Andrew, Smith Sally E

机构信息

Soil and Land Systems and the Centre for Soil-Plant Interactions, School of Earth and Environmental Sciences, The University of Adelaide, Adelaide, SA 5005, Australia.

出版信息

Funct Plant Biol. 2006 Mar;33(3):289-296. doi: 10.1071/FP05153.

DOI:10.1071/FP05153
PMID:32689236
Abstract

A tomato mutant with reduced mycorrhizal colonisation, rmc, confers resistance to almost all arbuscular mycorrhizal (AM) fungal species tested, although there is variation in colonisation of different root cell layers by different fungi and one species of AM fungus can colonise this mutant relatively normally. These variations indicate a high degree of specificity in relation to AM colonisation. We explored the possibility of specificity or otherwise in interactions between rmc and three non-AM root-infecting fungi, Rhizoctonia solani anastomosis groups (AG) 4 and AG8, and binucleate Rhizoctonia (BNR). There were no differences between the wild type tomato 76R and rmc in the speed or extent to which these fungi infected roots or caused disease. Infection by R. solani induced high levels of defence-related gene expression in both tomato genotypes relative to non-infected plants. In contrast, with BNR the expression of these genes was not induced or induced to a much lower extent than with R. solani. The expression of defence-related genes with these two non-AM fungi was very similar in the two plant genotypes. It was different from effects observed during colonisation by AM fungi, which enhanced expression of defence-related genes in rmc compared with the wild type tomato. The specificity and molecular mechanisms of rmc in control of AM colonisation are discussed.

摘要

一种菌根定殖减少的番茄突变体rmc对几乎所有测试的丛枝菌根(AM)真菌物种都具有抗性,尽管不同真菌对不同根细胞层的定殖存在差异,且有一种AM真菌能相对正常地定殖该突变体。这些差异表明在AM定殖方面存在高度特异性。我们探究了rmc与三种非AM根侵染真菌——立枯丝核菌融合群(AG)4和AG8以及双核立枯丝核菌(BNR)之间相互作用的特异性情况。在这些真菌侵染根系的速度或程度以及引发病害方面,野生型番茄76R和rmc之间没有差异。相对于未感染植株,立枯丝核菌侵染后在两种番茄基因型中均诱导了高水平的防御相关基因表达。相比之下,对于BNR,这些基因的表达未被诱导或诱导程度远低于立枯丝核菌。这两种非AM真菌侵染时,防御相关基因在两种植物基因型中的表达非常相似。这与AM真菌定殖期间观察到的效应不同,AM真菌定殖时,与野生型番茄相比,rmc中防御相关基因的表达增强。本文讨论了rmc在控制AM定殖方面的特异性及分子机制。

相似文献

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The rmc locus does not affect plant interactions or defence-related gene expression when tomato (Solanum lycopersicum) is infected with the root fungal parasite, Rhizoctonia.当番茄(Solanum lycopersicum)受到根部真菌寄生虫立枯丝核菌感染时,rmc基因座不会影响植物间的相互作用或与防御相关的基因表达。
Funct Plant Biol. 2006 Mar;33(3):289-296. doi: 10.1071/FP05153.
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Different arbuscular mycorrhizal fungi induce differences in cellular responses and fungal activity in a mycorrhiza-defective mutant of tomato (rmc).不同的丛枝菌根真菌在番茄菌根缺陷突变体(rmc)中诱导细胞反应和真菌活性产生差异。
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