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Proteomic analysis of PEG-simulated drought stress-responsive proteins of rice leaves using a pyramiding rice line at the seedling stage

机译:水稻苗期金字塔形水稻系对PEG模拟的水稻叶片干旱胁迫响应蛋白的蛋白质组学分析

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摘要

Drought is one of the most severe limitations on the productivity of rice. To investigate the response of rice to drought stress, changes in protein expression were analyzed using a proteomic approach in a drought tolerant quantitative trait locus (DT QTL) pyramiding rice line PD86 by way of PEG simulated drought stress. After drought stress for 8 days, 23 proteins increased in abundance and the level of five proteins decreased. Twelve of the drought-responsive proteins were identified by mass spectrometry. These proteins are involved in redox metabolism, photosynthesis, cytoskeleton stability, defense, protein metabolism, and signal transduction. Among the identified proteins, peroxiredoxin, ribonuclease and putative chitinase, coincided with three QTL regions carried by PD86; in addition, voltage-dependent anion-selective channel protein, ribonuclease and putative chitinase, co-localized with DT QTLs on the chromosome. The expression patterns of sonic of the corresponding genes were further analyzed at the mRNA level using real-time RTPCR. The comprehensive results suggested that the differentially displayed proteins might play a role in redox metabolism, photosynthesis, protein degradation, cytoskeleton organization and programmed cell death in the DT mechanism of rice.
机译:干旱是对水稻生产力的最严重限制之一。为了研究水稻对干旱胁迫的响应,通过蛋白质组学方法,在PEG耐旱定量性状基因座(DT QTL)金字塔系PD86上,通过PEG模拟干旱胁迫分析了蛋白质表达的变化。干旱胁迫8天后,23种蛋白质大量增加,而5种蛋白质的水平下降。通过质谱鉴定了十二种干旱响应蛋白。这些蛋白质参与氧化还原代谢,光合作用,细胞骨架稳定性,防御,蛋白质代谢和信号转导。在鉴定出的蛋白质中,过氧化物酶,核糖核酸酶和假定的几丁质酶与PD86携带的三个QTL区域吻合。此外,电压依赖性阴离子选择性通道蛋白,核糖核酸酶和推定的几丁质酶与DT QTL共同位于染色体上。使用实时RTPCR在mRNA水平上进一步分析相应基因的声音表达模式。综合结果表明,差异显示的蛋白质可能在水稻的DT机制中与氧化还原代谢,光合作用,蛋白质降解,细胞骨架组织和程序性细胞死亡有关。

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