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B-3 乙烯应答因子 MtERF1-1 介导了对蒺藜苜蓿根系病原体亚类的抗性,而不影响与根瘤菌的共生。

The B-3 ethylene response factor MtERF1-1 mediates resistance to a subset of root pathogens in Medicago truncatula without adversely affecting symbiosis with rhizobia.

机构信息

Commonwealth Scientific and Industrial Research Organisation, Division of Plant Industry, Floreat, Western Australia, Australia.

出版信息

Plant Physiol. 2010 Oct;154(2):861-73. doi: 10.1104/pp.110.163949. Epub 2010 Aug 16.

Abstract

The fungal necrotrophic pathogen Rhizoctonia solani is a significant constraint to a range of crops as diverse as cereals, canola, and legumes. Despite wide-ranging germplasm screens in many of these crops, no strong genetic resistance has been identified, suggesting that alternative strategies to improve resistance are required. In this study, we characterize moderate resistance to R. solani anastomosis group 8 identified in Medicago truncatula. The activity of the ethylene- and jasmonate-responsive GCC box promoter element was associated with moderate resistance, as was the induction of the B-3 subgroup of ethylene response transcription factors (ERFs). Genes of the B-1 subgroup showed no significant response to R. solani infection. Overexpression of a B-3 ERF, MtERF1-1, in Medicago roots increased resistance to R. solani as well as an oomycete root pathogen, Phytophthora medicaginis, but not root knot nematode. These results indicate that targeting specific regulators of ethylene defense may enhance resistance to an important subset of root pathogens. We also demonstrate that overexpression of MtERF1-1 enhances disease resistance without apparent impact on nodulation in the A17 background, while overexpression in sickle reduced the hypernodulation phenotype. This suggests that under normal regulation of nodulation, enhanced resistance to root diseases can be uncoupled from symbiotic plant-microbe interactions in the same tissue and that ethylene/ERF regulation of nodule number is distinct from the defenses regulated by B-3 ERFs. Furthermore, unlike the stunted phenotype previously described for Arabidopsis (Arabidopsis thaliana) ubiquitously overexpressing B-3 ERFs, overexpression of MtERF1-1 in M. truncatula roots did not show adverse effects on plant development.

摘要

真菌性坏死病原体立枯丝核菌是多种作物(如谷类作物、油菜和豆类)的重大限制因素。尽管在这些作物中的许多作物中进行了广泛的种质筛选,但尚未发现强遗传抗性,这表明需要采用替代策略来提高抗性。在这项研究中,我们对苜蓿中鉴定出的对立枯丝核菌吻合组 8 的中度抗性进行了表征。乙烯和茉莉酸响应的 GCC 框启动子元件的活性与中度抗性有关,与乙烯反应转录因子(ERFs)的 B-3 亚组的诱导有关。B-1 亚组的基因对 R. solani 感染没有明显反应。在苜蓿根中过表达 B-3 ERF MtERF1-1 可提高对 R. solani 以及卵菌根病原体芸苔根肿病菌的抗性,但对根结线虫没有抗性。这些结果表明,针对乙烯防御的特定调节剂可能会增强对重要根病原体亚组的抗性。我们还证明,过表达 MtERF1-1 可增强抗病性,而在 A17 背景下对根瘤形成没有明显影响,而过表达在镰刀菌中则降低了过度根瘤形成表型。这表明,在正常的根瘤调控下,增强对根病的抗性可以与同一组织中共生植物-微生物相互作用脱钩,并且乙烯/ERF 对根瘤数的调控与 B-3 ERFs 调控的防御不同。此外,与以前在拟南芥(Arabidopsis thaliana)中普遍过表达 B-3 ERFs 描述的生长迟缓表型不同,MtERF1-1 在苜蓿根中的过表达并未对植物发育产生不利影响。

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