Aufsatz W, Amry D, Grimm C
Institute of Botany, Department of Cytology and Genetics, University of Vienna, Austria.
Plant Mol Biol. 1998 Dec;38(6):965-76. doi: 10.1023/a:1006028605413.
The interaction between Arabidopsis and Xanthomonas campestris pv. campestris (Xcc) provides a useful model system to identify components that are involved in incompatible interactions of this phytopathogen and cruciferous plants. We have previously described a new gene from Arabidopsis thaliana, ECS1 (formerly CXC750), which showed an ecotype-specific expression pattern, although homologous sequences are present in the genomes of all ecotypes tested. Interestingly, ECS1 mRNA transcripts were only detected in ecotypes which showed the resistant phenotype against Xcc race 750. Subsequent genetic studies with F3 progeny of a cross between a Xcc750 resistant ecotype (Col-0) and a Xcc750 sensitive ecotype (Oy-0) revealed segregation of the ECS1RNA-phenotype away from the Xcc750 susceptible phenotype in one out of 16 F3 families. In addition, transformation of Xcc750 sensitive plants that did not express ECS1, with a constitutively transcribed ECS1 gene, did not lead to the resistant phenotype in the transgenic plants. From these results we conclude that ECS1 is not a Xcc750 resistance gene, but the genetic data indicate that ECS1 is linked to a locus influencing resistance to Xcc750. ECS1 was localized to YACs 3H12 and 12F3 of the CIC library, which map to chromosome 1. Subcellular localization of the gene product indicated that the ECS1 protein is associated with the plant cell wall. Further molecular investigation of 10 ecotypes revealed the utility of ECS1 as a new marker for chromosome 1, which is detectable by RFLP, PCR or expression analysis.
拟南芥与野油菜黄单胞菌野油菜致病变种(Xcc)之间的相互作用提供了一个有用的模型系统,用于鉴定参与这种植物病原体与十字花科植物不相容相互作用的成分。我们之前描述了拟南芥中的一个新基因ECS1(以前称为CXC750),它表现出生态型特异性的表达模式,尽管在所测试的所有生态型的基因组中都存在同源序列。有趣的是,仅在对Xcc 750小种表现出抗性表型的生态型中检测到ECS1 mRNA转录本。随后对Xcc750抗性生态型(Col-0)和Xcc750敏感生态型(Oy-0)杂交的F3后代进行的遗传研究表明,在16个F3家族中的1个家族中,ECS1RNA-表型与Xcc750敏感表型分离。此外,用组成型转录的ECS1基因转化不表达ECS1的Xcc750敏感植物,并未在转基因植物中产生抗性表型。从这些结果我们得出结论,ECS1不是Xcc750抗性基因,但遗传数据表明ECS1与影响对Xcc750抗性的一个位点连锁。ECS1定位于CIC文库的YAC 3H12和12F3,它们位于第1号染色体上。基因产物的亚细胞定位表明ECS1蛋白与植物细胞壁相关。对10个生态型的进一步分子研究揭示了ECS1作为第1号染色体新标记的效用,可通过RFLP、PCR或表达分析检测到。