Roy Swapan Kumar, Cho Seong-Woo, Kwon Soo Jeong, Kamal Abu Hena Mostafa, Kim Sang-Woo, Oh Myeong-Won, Lee Moon-Soon, Chung Keun-Yook, Xin Zhanguo, Woo Sun-Hee
Department of Crop Science, Chungbuk National University, Cheong-ju, Korea.
Division of Rice Research, National Institute of Crop Science, Rural Development Administration, Suwon, Korea.
PLoS One. 2016 Feb 26;11(2):e0150431. doi: 10.1371/journal.pone.0150431. eCollection 2016.
Cadmium (Cd) stress may cause serious morphological and physiological abnormalities in addition to altering the proteome in plants. The present study was performed to explore Cd-induced morpho-physiological alterations and their potential associated mechanisms in Sorghum bicolor leaves at the protein level. Ten-day-old sorghum seedlings were exposed to different concentrations (0, 100, and 150 μM) of CdCl2, and different morpho-physiological responses were recorded. The effects of Cd exposure on protein expression patterns in S. bicolor were investigated using two-dimensional gel electrophoresis (2-DE) in samples derived from the leaves of both control and Cd-treated seedlings. The observed morphological changes revealed that the plants treated with Cd displayed dramatically altered shoot lengths, fresh weights and relative water content. In addition, the concentration of Cd was markedly increased by treatment with Cd, and the amount of Cd taken up by the shoots was significantly and directly correlated with the applied concentration of Cd. Using the 2-DE method, a total of 33 differentially expressed protein spots were analyzed using MALDI-TOF/TOF MS. Of these, treatment with Cd resulted in significant increases in 15 proteins and decreases in 18 proteins. Major changes were absorbed in the levels of proteins known to be involved in carbohydrate metabolism, transcriptional regulation, translation and stress responses. Proteomic results revealed that Cd stress had an inhibitory effect on carbon fixation, ATP production and the regulation of protein synthesis. Our study provides insights into the integrated molecular mechanisms involved in responses to Cd and the effects of Cd on the growth and physiological characteristics of sorghum seedlings. We have aimed to provide a reference describing the mechanisms involved in heavy metal damage to plants.
镉(Cd)胁迫除了会改变植物的蛋白质组外,还可能导致严重的形态和生理异常。本研究旨在从蛋白质水平探索镉诱导的双色高粱叶片形态生理变化及其潜在相关机制。将10日龄的高粱幼苗暴露于不同浓度(0、100和150μM)的CdCl₂中,并记录不同的形态生理反应。使用双向凝胶电泳(2-DE)对对照和镉处理幼苗叶片样品中镉暴露对双色高粱蛋白质表达模式的影响进行了研究。观察到的形态变化表明,镉处理的植株茎长、鲜重和相对含水量显著改变。此外,镉处理显著增加了镉的浓度,茎吸收的镉量与施加的镉浓度显著正相关。使用2-DE方法,共对33个差异表达的蛋白质点进行了基质辅助激光解吸电离飞行时间串联质谱(MALDI-TOF/TOF MS)分析。其中,镉处理导致15种蛋白质显著增加,18种蛋白质减少。主要变化体现在已知参与碳水化合物代谢、转录调控、翻译和应激反应的蛋白质水平上。蛋白质组学结果表明,镉胁迫对碳固定、ATP产生和蛋白质合成调控具有抑制作用。我们的研究深入了解了镉响应所涉及的综合分子机制以及镉对高粱幼苗生长和生理特性的影响。我们旨在提供一份描述重金属对植物损害机制的参考资料。