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The stay-green phenotype of TaNAM-RNAi wheat plants is associated with maintenance of chloroplast structure and high enzymatic antioxidant activity

机译:TaNAM-RNAi小麦植物的绿色常绿表型与维持叶绿体结构和高酶抗氧化活性有关

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TaNAM transcription factors play an important role in controlling senescence, which in turn, influences the delivery of nitrogen, iron and other elements to the grain of wheat (Triticum aestivum) plants, thus contributing to grain nutritional value. While lack or diminished expression of TaNAMs determines a stay-green phenotype, the precise effect of these factors on chloroplast structure has not been studied. In this work we focused on the events undergone by chloroplasts in two wheat lines having either control or diminished TaNAM expression due to RNA interference (RNAi). It was found that in RNAi plants maintenance of chlorophyll levels and maximal photochemical efficiency of photosystem II were associated with lack of chloroplast dismantling. Flow cytometer studies and electron microscope analysis showed that RNAi plants conserved organelle ultrastructure and complexity. It was also found that senescence in control plants was accompanied by a low leaf enzymatic antioxidant activity. Lack of chloroplast dismantling in RNAi plants was associated with maintenance of protein and iron concentration in the flag leaf, the opposite being observed in control plants. These data provide a structural basis for the observation that down regulation of TaNAMs confers a functional stay-green phenotype and indicate that the low export of iron and nitrogen from the flag leaf of these plants is concomitant, within the developmental window studied, with lack of chloroplast degradation and high enzymatic antioxidant activity. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:TaNAM转录因子在控制衰老中起着重要作用,继而影响氮,铁和其他元素向小麦(Triticum aestivum)植物籽粒的传递,从而有助于谷物的营养价值。尽管TaNAMs表达的缺乏或减弱决定了其保持绿色的表型,但尚未研究这些因素对叶绿体结构的精确影响。在这项工作中,我们重点研究了由于RNA干扰(RNAi)导致TaNAM表达受到控制或减弱的两个小麦品系中的叶绿体经历的事件。已经发现在RNAi植物中叶绿素水平的维持和光系统II的最大光化学效率与叶绿体的缺乏分解有关。流式细胞仪研究和电子显微镜分析表明,RNAi植物能保护细胞器的超微结构和复杂性。还发现对照植物的衰老伴随着低的叶酶抗氧化剂活性。 RNAi植物缺乏叶绿体的分解与维持旗叶中蛋白质和铁的浓度有关,而对照植物则相反。这些数据为观察到TaNAM的下调赋予了功能性的保持绿色表型提供了结构基础,并表明这些植物的旗叶中铁和氮的低输出伴随着所研究的发育窗口期而缺乏。叶绿体降解和高酶抗氧化活性。 (C)2016 Elsevier Masson SAS。版权所有。

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