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γ-生育酚甲基转移酶基因在转基因芥菜植物中的过表达减轻非生物胁迫:生理和叶绿素a荧光测量

Overexpression of gamma-tocopherol methyl transferase gene in transgenic Brassica juncea plants alleviates abiotic stress: physiological and chlorophyll a fluorescence measurements.

作者信息

Yusuf Mohd Aslam, Kumar Deepak, Rajwanshi Ravi, Strasser Reto Jörg, Tsimilli-Michael Merope, Sarin Neera Bhalla

机构信息

School of Life Sciences, Jawaharlal Nehru University, New Delhi-110067, India.

出版信息

Biochim Biophys Acta. 2010 Aug;1797(8):1428-38. doi: 10.1016/j.bbabio.2010.02.002. Epub 2010 Feb 6.

Abstract

Tocopherols (vitamin E) are lipid soluble antioxidants synthesized by plants and some cyanobacteria. We have earlier reported that overexpression of the gamma-tocopherol methyl transferase (gamma-TMT) gene from Arabidopsis thaliana in transgenic Brassica juncea plants resulted in an over six-fold increase in the level of alpha-tocopherol, the most active form of all the tocopherols. Tocopherol levels have been shown to increase in response to a variety of abiotic stresses. In the present study on Brassica juncea, we found that salt, heavy metal and osmotic stress induced an increase in the total tocopherol levels. Measurements of seed germination, shoot growth and leaf disc senescence showed that transgenic Brassica juncea plants overexpressing the gamma-TMT gene had enhanced tolerance to the induced stresses. Analysis of the chlorophyll a fluorescence rise kinetics, from the initial "O" level to the "P" (the peak) level, showed that there were differential effects of the applied stresses on different sites of the photosynthetic machinery; further, these effects were alleviated in the transgenic (line 16.1) Brassica juncea plants. We show that alpha-tocopherol plays an important role in the alleviation of stress induced by salt, heavy metal and osmoticum in Brassica juncea.

摘要

生育酚(维生素E)是植物和一些蓝细菌合成的脂溶性抗氧化剂。我们之前报道过,在转基因芥菜植物中过表达拟南芥的γ-生育酚甲基转移酶(γ-TMT)基因,导致最具活性的生育酚α-生育酚水平增加了六倍多。已表明生育酚水平会因多种非生物胁迫而增加。在本次对芥菜的研究中,我们发现盐、重金属和渗透胁迫会导致总生育酚水平升高。种子萌发、地上部生长和叶盘衰老的测量结果表明,过表达γ-TMT基因的转基因芥菜植物对诱导胁迫的耐受性增强。对叶绿素a荧光上升动力学的分析,从初始的“O”水平到“P”(峰值)水平,表明施加的胁迫对光合机构的不同部位有不同影响;此外,这些影响在转基因(16.1系)芥菜植物中得到缓解。我们表明,α-生育酚在缓解芥菜中盐、重金属和渗透压诱导的胁迫方面发挥着重要作用。

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