Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa Oeiras, Portugal.
Institute for Sustainable Agriculture, Consejo Superior de Investigaciones Científicas Córdoba, Spain.
Front Plant Sci. 2014 Nov 7;5:618. doi: 10.3389/fpls.2014.00618. eCollection 2014.
Little is known about the nature of effective defense mechanisms in legumes to pathogens of remotely related plant species. Some rust species are among pathogens with broad host range causing dramatic losses in various crop plants. To understand and compare the different host and nonhost resistance (NHR) responses of legume species against rusts, we characterized the reaction of the model legume Medicago truncatula to one appropriate (Uromyces striatus) and two inappropriate (U. viciae-fabae and U. lupinicolus) rusts. We found that similar pre and post-haustorial mechanisms of resistance appear to be operative in M. truncatula against appropriate and inappropriate rust fungus. The appropriate U. striatus germinated better on M. truncatula accessions then the inappropriate U. viciae-fabae and U. lupinicolus, but once germinated, germ tubes of the three rusts had a similar level of success in finding stomata and forming an appressoria over a stoma. However, responses to different inappropriate rust species also showed some specificity, suggesting a combination of non-specific and specific responses underlying this legume NHR to rust fungi. Further genetic and expression analysis studies will contribute to the development of the necessary molecular tools to use the present information on host and NHR mechanisms to breed for broad-spectrum resistance to rust in legume species.
关于豆科植物对亲缘关系较远的植物病原菌的有效防御机制的性质,人们知之甚少。一些锈菌是宿主范围广泛的病原菌,会给各种作物造成严重损失。为了理解和比较豆科植物对锈菌的不同寄主和非寄主抗性(NHR)反应,我们对模式豆科植物蒺藜苜蓿进行了研究,以研究一种合适的(Uromyces striatus)和两种不适当的(U. viciae-fabae 和 U. lupinicolus)锈菌。我们发现,在蒺藜苜蓿中,针对适当和不适当锈菌的抗性似乎存在相似的前和后haustorial 机制。适当的 U. striatus 在蒺藜苜蓿品系上的萌发优于不适当的 U. viciae-fabae 和 U. lupinicolus,但一旦萌发,这三种锈菌的芽管在寻找气孔和在气孔上形成附着胞方面具有相似的成功率。然而,对不同不适当锈菌的反应也表现出一定的特异性,这表明在豆科植物的这种 NHR 对锈菌的反应中存在非特异性和特异性反应的组合。进一步的遗传和表达分析研究将有助于开发必要的分子工具,以利用目前关于寄主和 NHR 机制的信息,为豆科植物培育广谱锈病抗性。