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Rubisco and some chaperone protein responses to water stress and rewatering at early seedling growth of drought sensitive and tolerant wheat varieties

机译:干旱敏感和耐性小麦品种幼苗早期生长对干旱和复水的Rubisco和一些伴侣蛋白的响应

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Four wheat varieties differing in their drought tolerance were subjected to severe but recoverable water stress at seedling stage. Growth parameters, leaf water deficit (WD) and electrolyte leakage (EL) were used to evaluate the stress intensity and the extent of recovery. The physiological response of the varieties was quite similar under severe drought. Leaf protein patterns and levels of some individual proteins relevant to ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) maintenance were studied in control, stressed and recovering plants by electrophoresis and immunoblotting. The bands representing Rubisco large subunit (RLS), N- and C-terminus of RLS, Rubisco activase (RA) and Rubisco binding protein (RBP, cpn 60), as well as the chaperone and proteolytic subunits of the Clp protease complex were identified using polyclonal antibodies. Under drought conditions RLS, Clp proteases and especially RBP were enhanced, whereas the RA band was only slightly affected. The drought tolerant varieties had higher RBP content in the controls and drought treated plants. Its concentration could be a potential marker for drought tolerance.
机译:在幼苗期,四个耐旱性不同的小麦品种遭受了严重但可恢复的水分胁迫。使用生长参数,叶片水分亏缺(WD)和电解质渗漏(EL)来评估胁迫强度和恢复程度。在严重干旱下,该品种的生理响应非常相似。研究了通过电泳和免疫印迹在对照,胁迫和恢复植物中研究了与核糖-1,5-双磷酸羧化酶/加氧酶(Rubisco)维持有关的叶片蛋白质模式和某些个别蛋白质的水平。确定了代表Rubisco大亚基(RLS),RLS的N和C末端,Rubisco激活酶(RA)和Rubisco结合蛋白(RBP,cpn 60)的条带以及Clp蛋白酶复合物的伴侣和蛋白水解亚基。使用多克隆抗体。在干旱条件下,RLS,Clp蛋白酶特别是RBP增强,而RA条带仅受到轻微影响。对照和干旱处理植物中耐旱品种的RBP含量较高。其浓度可能是抗旱性的潜在标志。

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