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拟南芥金属硫蛋白2a和3在蚕豆保卫细胞中表达时增强对镉的抗性。

Arabidopsis metallothioneins 2a and 3 enhance resistance to cadmium when expressed in Vicia faba guard cells.

作者信息

Lee Joohyun, Shim Donghwan, Song Won-Yong, Hwang Inhwan, Lee Youngsook

机构信息

National Research Laboratory of Phytoremediation, Division of Molecular Life Sciences, Pohang University of Science and Technology, Korea.

出版信息

Plant Mol Biol. 2004 Apr;54(6):805-15. doi: 10.1007/s11103-004-0190-6.

DOI:10.1007/s11103-004-0190-6
PMID:15604653
Abstract

The Arabidopsis metallothionein genes AtMT1 and AtMT2 confer Cd(II) resistance to Cd(II)-sensitive yeast, but it has not been directly shown whether they or other metallothioneins provide the same protection to plants. We tested whether AtMT2a and AtMT3 can confer Cd(II) resistance to plant cells by introducing GFP- or RFP-fused forms into guard cells of Vicia faba by biolistic bombardment. AtMT2a and AtMT3 protected guard cell chloroplasts from degradation upon exposure to Cd(II), an effect that was confirmed using an FDA assay to test the viability of the exposed guard cells. AtMT2a- and AtMT3-GFP were localized in the cytoplasm both before and after treatment of V. faba guard cells or Arabidopsis protoplasts with Cd(II), and the levels of reactive oxygen species were lower in transformed guard cells than in non-transformed cells after Cd(II)-treatment. These results suggest that the Cd(II)-detoxification mechanism of AtMT2a and AtMT3 may not include sequestration into vacuoles or other organelles, but does involve reduction of the level of reactive oxygen species in Cd(II)-treated cells. Increased expression of AtMT2a and AtMT3 was observed in Arabidopsis seedlings exposed to Cd(II). Together, these data support a role for the metallothioneins AtMT2a and AtMT3 in Cd(II) resistance in intact plant cells.

摘要

拟南芥金属硫蛋白基因AtMT1和AtMT2赋予对Cd(II)敏感的酵母Cd(II)抗性,但尚未直接证明它们或其他金属硫蛋白是否能为植物提供同样的保护。我们通过生物弹道轰击将绿色荧光蛋白(GFP)或红色荧光蛋白(RFP)融合形式导入蚕豆保卫细胞,测试AtMT2a和AtMT3是否能赋予植物细胞Cd(II)抗性。AtMT2a和AtMT3保护保卫细胞叶绿体在暴露于Cd(II)时不被降解,这一效应通过FDA检测暴露保卫细胞活力得以证实。在用Cd(II)处理蚕豆保卫细胞或拟南芥原生质体之前和之后,AtMT2a - GFP和AtMT3 - GFP均定位于细胞质中,并且在Cd(II)处理后,转化的保卫细胞中活性氧水平低于未转化细胞。这些结果表明,AtMT2a和AtMT3的Cd(II)解毒机制可能不包括螯合到液泡或其他细胞器中,但确实涉及降低Cd(II)处理细胞中的活性氧水平。在暴露于Cd(II)的拟南芥幼苗中观察到AtMT2a和AtMT3的表达增加。总之,这些数据支持金属硫蛋白AtMT2a和AtMT3在完整植物细胞Cd(II)抗性中的作用。

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