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首页> 外文期刊>Plant Growth Regulation >Oxidative stress, antioxidant activity and Fe(III)-chelate reductase activity of five Prunus rootstocks explants in response to Fe deficiency
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Oxidative stress, antioxidant activity and Fe(III)-chelate reductase activity of five Prunus rootstocks explants in response to Fe deficiency

机译:五种李子砧木外植体对缺铁的氧化胁迫,抗氧化活性和Fe(III)-螯合物还原酶活性

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The aim of this work was to investigate whether Fe reduction and antioxidant mechanisms were expressed differently in five Prunus rootstocks (‘Peach seedling,’ ‘Barrier,’ ‘Cadaman,’ ‘Saint Julien 655/2’ and ‘GF-677’). These rootstocks differ in their tolerance to Fe deficiency when grown in the absence of Fe (−Fe) or in presence of bicarbonate (supplied as 5 or 10 mM NaHCO3). Fe deficiency conditions, especially bicarbonate, were shown to decrease Fe and total chlorophyll (CHL) concentration. In the (−Fe)-treated roots of all rootstocks and in the 5 mM NaHCO3-treated ones of the tolerant ‘GF-677’ the Fe(III)-chelate reductase (FCR) activity was stimulated. On the contrary, apart from the ‘GF-677,’ FCR activity was greatly inhibited by the 10 mM NaHCO3. From the results obtained with decapitated rootstocks, it is not entirely clear whether or not the presence of shoot apex was a prerequisite to induce FCR function in all rootstocks tested. In the leaves of rootstocks exposed to the (−Fe) treatment, superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT) activities were enhanced whereas the levels of the non-enzymatic antioxidants (FRAP values) were increased in the Fe-deprived leaves, irrespective of the rootstock. Except for ‘Peach seedling,’ foliar SOD activity was stimulated by the presence of NaHCO3. Furthermore, POD activity was increased in the ‘Saint Julien 655/2’ and ‘GF-677,’ but was depressed in the ‘Barrier’ rootstocks exposed to 10 mM NaHCO3. As a result of 10 mM NaHCO3, the expression of a Cu/Zn-SOD and a POD isoform was diminished in the leaves of ‘Peach seedling’ and ‘Barrier,’ respectively. By contrast, an additional isoform of both POD and Mn–SOD were expressed in the leaves of ‘GF-677’ exposed to 10 mM NaHCO3 suggesting that the tolerance of rootstocks to Fe deficiency is associated with induction of an antioxidant defense mechanism. Although CAT activity was increased in the 5 mM NaHCO3-treated leaves of ‘GF-677,’ specifically the 10 mM NaHCO3 treatment resulted in a decrease of CAT activity and an accumulation of H2O2, indicating that bicarbonate-induced Fe deficiency may cause more severe oxidative stress in the rootstocks, than the absence of Fe. A general link between Fe deficiency-induced oxidative stress and Fe reduction-sensing mechanism is also discussed.
机译:这项工作的目的是调查五种李子砧木(“桃子苗”,“屏障”,“章鱼”,“圣朱利安655/2”和“ GF-677”)中铁的还原和抗氧化机理是否有所不同。这些根茎在不存在Fe(-Fe)或存在碳酸氢盐(提供为5或10 mM NaHCO3 )的情况下,对缺铁的耐受性不同。铁缺乏的条件,尤其是碳酸氢盐,被证明会降低铁和总叶绿素(CHL)的浓度。在所有砧木的(-Fe)处理根中和耐性“ GF-677”的5 mM NaHCO3 处理的根中,都刺激了Fe(III)-螯合还原酶(FCR)的活性。相反,除了GF-677外,FCR活性还受到10 mM NaHCO3的抑制。从断头的砧木获得的结果来看,尚不清楚茎尖的存在是否是在所有测试的砧木中诱导FCR功能的先决条件。在暴露于(-Fe)处理的砧木叶片中,Fe中的超氧化物歧化酶(SOD),过氧化物酶(POD)和过氧化氢酶(CAT)活性增强,而非酶抗氧化剂(FRAP值)的水平升高-被剥夺的叶子,与砧木无关。除了“桃苗”外,NaHCO3的存在还刺激了叶片SOD活性。此外,POD活性在“ Saint Julien 655/2”和“ GF-677”中有所增加,但在暴露于10 mM NaHCO3的“ Barrier”砧木中却降低了。由于使用了10 mM NaHCO3 ,“桃苗”和“屏障”的叶片中的Cu / Zn-SOD和POD亚型的表达分别降低。相比之下,暴露于10 mM NaHCO3的'GF-677'叶片中还表达了POD和Mn-SOD的另一种同工型,表明砧木对铁缺乏的耐受性与抗氧化防御的诱导有关机制。尽管在5 mM NaHCO3 处理的'GF-677'叶片中CAT活性增加了,但特别是10 mM NaHCO3 处理导致CAT活性降低和H2积累。 O2 ,表明碳酸氢盐引起的铁缺乏可能比不存在铁引起更严重的砧木氧化应激。还讨论了铁缺乏引起的氧化应激与铁还原感应机制之间的一般联系。

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