Delhaize E
Division of Plant Industry, Commonwealth Scientific and Industrial Research Organisation, Canberra, Australia.
Plant Physiol. 1996 Jul;111(3):849-55. doi: 10.1104/pp.111.3.849.
A mutation designated man1 (for manganese accumulator) was found to cause Arabidopsis thaliana seedlings to accumulate a range of metals. The man1 mutation segregated as a single recessive locus located on chromosome 3. When grown on soil, mutant seedlings accumulated Mn (7.5 times greater than wild type), Cu (4.6 times greater than wild type), Zn (2.8 times greater than wild type), and Mg (1.8 times greater than wild type) in leaves. In addition to these metals, the man1 mutant accumulated 2.7-fold more S in leaves, primarily in the oxidized form, than wild-type seedlings. Analysis of seedlings grown by hydroponic culture showed a similar accumulation of metals in leaves of man1 mutants. Roots of man1 mutants also accumulated metals, but unlike leaves they accumulated 10-fold more total Fe (symplasmic and apoplasmic combined) than wild-type roots. Roots of man1 mutants possessed greater (from 1.8- to 20-fold) ferric-chelate reductase activity than wild-type seedings, and this activity was not responsive to changes of Mn nutrition in either genotype. Taken together, these results suggest that the man1 mutation disrupts the regulation of metal-ion uptake or homeostasis in Arabidopsis.
一种名为man1(锰积累)的突变被发现会导致拟南芥幼苗积累多种金属。man1突变作为位于3号染色体上的单个隐性位点进行分离。在土壤中生长时,突变幼苗叶片中积累的锰(比野生型高7.5倍)、铜(比野生型高4.6倍)、锌(比野生型高2.8倍)和镁(比野生型高1.8倍)。除了这些金属外,man1突变体叶片中积累的硫比野生型幼苗多2.7倍,主要以氧化形式存在。对水培生长的幼苗分析表明,man1突变体叶片中金属积累情况类似。man1突变体的根也积累金属,但与叶片不同的是,其根中积累的总铁(共质体和质外体结合)比野生型根多10倍。man1突变体的根比野生型幼苗具有更高(1.8至20倍)的铁螯合物还原酶活性,且该活性对两种基因型中锰营养的变化均无反应。综上所述,这些结果表明man1突变破坏了拟南芥中金属离子吸收或稳态的调节。