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Cysteine synthase overexpression in tobacco confers tolerance tosulfur-containing environmental pollutants

机译:烟草中的半胱氨酸合酶过表达赋予对含硫环境污染物的耐受性

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摘要

Cysteine (Cys) synthase [O-acetyl-L-Ser(thiol)-lyase, EC 4.2.99.8; CSase] is responsible for the final step in biosynthesis of Cys. Transgenic tobacco (Nicotiana tabacum; F-1) plants with enhanced CSase activities in the cytosol and in the chloroplasts were generated by cross-fertilization of two transformants expressing cytosolic CSase or chloroplastic CSase. The F-1 transgenic plants were highly tolerant to toxic sulfur dioxide and sulfite. Upon fumigation with 0.1 muL L-1 sulfur dioxide, the Cys and glutathione contents in leaves of F-1 plants were increased significantly, but not in leaves of non-transformed control plants. Furthermore, the leaves of F-1 plants exhibited the increased resistance to paraquat, a herbicide generating active oxygen species.
机译:半胱氨酸(Cys)合酶[O-乙酰基-L-Ser(硫醇)-裂解酶,EC 4.2.99.8; CSase]负责Cys生物合成的最后一步。通过使表达胞质CSase或叶绿体CSase的两个转化子交叉受精,产生了在胞质溶胶和叶绿体中具有增强的CSase活性的转基因烟草(Nicotiana tabacum; F-1)植物。 F-1转基因植物对有毒的二氧化硫和亚硫酸盐具有高度的耐受性。用0.1μLL-1二氧化硫熏蒸后,F-1植物叶片中的Cys和谷胱甘肽含量显着增加,而未转化对照植物的叶片中Cys和谷胱甘肽含量却没有增加。此外,F-1植物的叶片对百草枯(产生活性氧的除草剂)的抗性增强。

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