Baum T J, Wubben M J, Hardyy K A, Su H, Rodermel S R
J Nematol. 2000 Jun;32(2):166-73.
Genetic approaches are a powerful means to elucidate plant-pathogen interactions. An in vitro screening protocol was developed to identify Arabidopsis thaliana mutants with altered susceptibility to Heterodera schachtii, the sugar beet cyst nematode. In an initial screen of approximately 5,200 ethyl methanesulfonate-generated mutant plants, two stable mutations were identified. Both mutant lines were backcrossed and were found to harbor single recessive mutant alleles. Mutant line 2-4-6 shows an approximately two-fold increase in sedentary and developing nematodes, while mutant line 10-5-2 exhibits a significant decrease in susceptibility that manifests itself only after nematodes become sedentary. Analyses of progeny from crosses of lines 2-4-6 and 10-5-2 indicated that the two mutations are not allelic. However, the mutant gene in line 2-4-6 was found to be allelic to the previously identified mutant rhd1 and was termed rhd1-4. The mutant gene in line 10-5-2 was called asc1 for altered susceptibility to cyst nematodes. Our results demonstrate the feasibility of a nematological mutant screen and strengthen A. thaliana and H. schachtii as a model pathosystem.
遗传学方法是阐明植物与病原体相互作用的有力手段。我们开发了一种体外筛选方案,以鉴定对甜菜孢囊线虫(Heterodera schachtii)易感性发生改变的拟南芥突变体。在对约5200株经甲磺酸乙酯处理产生的突变植株进行的初步筛选中,鉴定出了两个稳定的突变。两个突变系都进行了回交,发现它们都携带单个隐性突变等位基因。突变系2-4-6在定居和发育中的线虫数量上显示出约两倍的增加,而突变系10-5-2的易感性显著降低,这种降低仅在 nematodes 变得定居后才表现出来。对2-4-6系和10-5-2系杂交后代的分析表明,这两个突变不是等位基因。然而,发现2-4-6系中的突变基因与先前鉴定的突变体rhd1等位,并被命名为rhd1-4。10-5-2系中的突变基因因对孢囊线虫的易感性改变而被称为asc1。我们的结果证明了线虫学突变体筛选的可行性,并加强了拟南芥和甜菜孢囊线虫作为一个模式病理系统的地位。