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Proteome analysis of tobacco leaves under salt stress.

机译:盐胁迫下烟叶的蛋白质组分析。

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The mechanisms responsible for the effects of salt stress on tobacco plants were examined by means of proteomic analysis. Tobacco plants were exposed to 0, 150, 250, 300, or 400 mM NaCl. At 150 mM NaCl or above, the plants showed a reduction in fresh weight and an increase in proline levels. Proteins extracted from the leaves of tobacco plants exposed to 150 mM NaCl were separated by 2-DE. Of 205 protein spots that were detected reproducibly in each gel, 18 were differentially expressed under NaCl treatment. Up-regulated proteins belonged to the photosynthesis category, whereas down-regulated proteins correspond to defense-related functions. Dose- and time-dependent studies showed that a stromal 70-kDa heat shock-related protein was markedly down-regulated by NaCl. Thus, down-regulation of the stromal 70-kDa heat shock protein in response to salt stress is likely the cause of failure to protect cells against salt stress of tobacco plants.
机译:通过蛋白质组学分析研究了盐胁迫对烟草植物的影响的机制。将烟草植物暴露于0、150、250、300或400 mM NaCl中。在150 mM NaCl或更高浓度下,植物的鲜重减少,脯氨酸水平增加。从暴露于150 mM NaCl的烟草植物叶片中提取的蛋白质通过2-DE分离。在每种凝胶中可重复检测到的205个蛋白斑点中,有18个在NaCl处理下差异表达。上调的蛋白质属于光合作用类别,而下调的蛋白质则对应于防御相关功能。剂量和时间依赖性研究表明,NaCl显着下调了基质70kDa的热休克相关蛋白。因此,响应盐胁迫而对70-kDa基质热休克蛋白的下调可能是未能保护细胞免受烟草植物盐胁迫的原因。

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