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Salt-induced root protein profile changes in seedlings of maize inbred lines with differing salt tolerances

机译:不同耐盐性的玉米自交系幼苗的盐诱导根蛋白质谱变化

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Salt stress is one of the severest growth limited-factors to agriculture production. To gain in-depth knowledge of salt-stress response mechanisms, the proteomics analysis from two maize (Zea mays L.) inbred lines was carried out using two-dimensional gel electrophoresis (2-DGE) and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF/TOF-MS). There were 57 salt-regulated proteins identified, 21 and 36 proteins were differentially regulated in inbred lines 'Nongda 1145' (salt-resistant) and 'D340' (salt-sensitive), respectively. The identified proteins were distributed in 11 biological processes and seven molecular functions. Under salt stress, proteins related to antioxidation and lignin synthesis were increased in both inbred lines. The relative abundance of proteins involved in translation initiation, elongation, and protein proteolysis increased in 'Nongda 1145' and decreased in 'D340'. In addition, the abundance of proteins involved in carbohydrate metabolism, protein refolding, ATP synthase and transcription differed between the two inbred lines. Our results suggest that the enhanced ability of salt-tolerant inbred line 'Nongda 1145' to combat salt stress occurs via regulation of transcription factors promoting increased antioxidation and lignin biosynthesis, enhanced energy production, and acceleration of protein translation and protein proteolysis.
机译:盐胁迫是农业生产中最严重的增长限制因素之一。为了深入了解盐胁迫响应机制,使用二维凝胶电泳(2-DGE)和基质辅助激光解吸/电离时间对两个玉米(Zea mays L.)自交系的蛋白质组学进行了分析。飞行质谱(MALDI-TOF / TOF-MS)。在“ Nongda 1145”(耐盐)和“ D340”(对盐敏感)的近交系中鉴定出57种盐调节蛋白,分别对21和36种蛋白进行差异调节。鉴定出的蛋白质分布在11个生物过程和7个分子功能中。在盐胁迫下,两个自交系中与抗氧化和木质素合成相关的蛋白质均增加。在“农大1145”中,参与翻译起始,延伸和蛋白水解的蛋白质相对丰度增加,在“ D340”中降低。此外,在两个自交系之间,参与碳水化合物代谢,蛋白质重折叠,ATP合酶和转录的蛋白质丰度也有所不同。我们的结果表明,耐盐自交系“农大1145”对抗盐胁迫的能力增强是通过调节转录因子的调节来实现的,该转录因子促进增加的抗氧化和木质素生物合成,增强的能量产生以及蛋白质翻译和蛋白质水解的加速。

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