van Vliet C, Anderson C R, Cobbett C S
Department of Genetics, University of Melbourne, Parkville, Australia.
Plant Physiol. 1995 Nov;109(3):871-8. doi: 10.1104/pp.109.3.871.
A Cu-sensitive mutant, cup1-1, of Arabidopsis thaliana has a pattern of heavy-metal sensitivity different from that of the cad1 and cad2 mutants, which are deficient in phytochelatin biosynthesis. The latter are significantly sensitive to Cd and Hg and only slightly sensitive to Cu, whereas the cup1-1 mutant is significantly sensitive to Cu, slightly sensitive to Cd, and not more sensitive to Hg, compared to the wild type. Genetic analysis has shown that the sensitive phenotype is recessive to the wild type and segregates as a single Mendelian locus, which has been mapped to chromosome 1. Genetic and biochemical studies demonstrate that the cup1-1 mutant is not affected in phytochelatin biosynthesis or function. The sensitive phenotype of the cup1-1 mutant is associated with, and probably due to, increased accumulation of higher levels of Cd and Cu compared with the wild type. Consistent with this, a Cu-inducible, root-specific metallothionein gene, MT2a, is expressed in cup1-1 roots under conditions in which it is not expressed in the wild type. Undifferentiated cup1-1 callus tissue did not show the Cu-sensitive phenotype, suggesting that the mutant phenotype, in contrast to cad1 and cad2, is not expressed at the cellular level.
拟南芥的一个对铜敏感的突变体cup1-1,其重金属敏感性模式不同于缺乏植物螯合肽生物合成能力的cad1和cad2突变体。后两者对镉和汞显著敏感,而对铜仅轻微敏感,相比之下,cup1-1突变体对铜显著敏感,对镉轻微敏感,对汞的敏感性并不比野生型更高。遗传分析表明,该敏感表型相对于野生型是隐性的,并且作为一个单孟德尔位点进行分离,该位点已被定位到1号染色体上。遗传和生化研究表明,cup1-1突变体在植物螯合肽的生物合成或功能方面没有受到影响。cup1-1突变体的敏感表型与野生型相比,镉和铜的积累水平增加有关,并且可能是由于这种增加所致。与此一致的是,一个铜诱导的、根特异性的金属硫蛋白基因MT2a,在cup1-1根中表达,而在野生型中该条件下不表达。未分化的cup1-1愈伤组织没有表现出对铜的敏感表型,这表明与cad1和cad2不同,该突变体表型在细胞水平上不表达。