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Aluminum Toxicity-Induced Alterations of Leaf Proteome in Two Citrus Species Differing in Aluminum Tolerance

机译:不同铝耐性的两种柑桔叶片铝蛋白毒性诱导的叶片蛋白质组变化

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摘要

Seedlings of aluminum-tolerant ‘Xuegan’ (Citrus sinensis) and Al-intolerant ‘sour pummelo’ (Citrus grandis) were fertigated for 18 weeks with nutrient solution containing 0 and 1.2 mM AlCl3·6H2O. Al toxicity-induced inhibition of photosynthesis and the decrease of total soluble protein only occurred in C. grandis leaves, demonstrating that C. sinensis had higher Al tolerance than C. grandis. Using isobaric tags for relative and absolute quantification (iTRAQ), we obtained more Al toxicity-responsive proteins from C. sinensis than from C. grandis leaves, which might be responsible for the higher Al tolerance of C. sinensis. The following aspects might contribute to the Al tolerance of C. sinensis: (a) better maintenance of photosynthesis and energy balance via inducing photosynthesis and energy-related proteins; (b) less increased requirement for the detoxification of reactive oxygen species and other toxic compounds, such as aldehydes, and great improvement of the total ability of detoxification; and (c) upregulation of low-phosphorus-responsive proteins. Al toxicity-responsive proteins related to RNA regulation, protein metabolism, cellular transport and signal transduction might also play key roles in the higher Al tolerance of C. sinensis. We present the global picture of Al toxicity-induced alterations of protein profiles in citrus leaves, and identify some new Al toxicity-responsive proteins related to various biological processes. Our results provide some novel clues about plant Al tolerance.
机译:用含0和1.2 mM AlCl3·6H2O的营养液对耐铝的'Xuegan'(Citrus sinensis)和不耐铝的'sour pummelo'(Citrus grandis)的幼苗施肥18周。 Al毒性诱导的光合作用抑制和总可溶性蛋白的减少仅发生在C. grandis叶片中,表明C. sinensis具有比C. grandis更高的Al耐性。使用同量异位标记进行相对定量和绝对定量(iTRAQ),我们从中华茶中获得的铝毒性反应蛋白比从大叶猴中获得的铝毒性响应蛋白更多,这可能是中华茶对铝的较高耐受性的原因。以下方面可能有助于中华绒螯蟹的铝耐受性:(a)通过诱导光合作用和与能量有关的蛋白质更好地维持光合作用和能量平衡; (b)减少对活性氧和其他有毒化合物(如醛)进行解毒的需求,并大大提高了总解毒能力; (c)低磷反应蛋白的上调。与RNA调节,蛋白质代谢,细胞转运和信号转导有关的铝毒性反应蛋白也可能在中华绒螯蟹的较高铝耐受性中起关键作用。我们提出了铝毒性诱导柑桔叶片中蛋白质谱变化的全球图片,并确定了与各种生物学过程有关的一些新的铝毒性响应蛋白。我们的结果为植物抗铝性提供了一些新颖的线索。

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