首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Reactive oxygen species regulate programmed cell death progress of endosperm in winter wheat (Triticum aestivum L.) under waterlogging
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Reactive oxygen species regulate programmed cell death progress of endosperm in winter wheat (Triticum aestivum L.) under waterlogging

机译:渍水条件下活性氧调节冬小麦胚乳程序性细胞死亡进程

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摘要

Previous studies have proved that waterlogging stress accelerates the programmed cell death (PCD) progress of wheat endosperm cells. A highly waterlogging-tolerant wheat cultivar Hua 8 and a waterlogging susceptible wheat cultivar Hua 9 were treated with different waterlogging durations, and then, dynamic changes of reactive oxygen species (ROS), gene expressions, and activities of antioxidant enzymes in endosperm cells were detected. The accumulation of ROS increased considerably after 7 days of waterlogging treatment (7 DWT) and 12 DWT in both cultivars compared with control group (under non-waterlogged conditions), culminated at 12 DAF (days after flowering) and reduced hereafter. Waterlogging resulted in a great increase of H2O2 and O-2(-) in plasma membranes, cell walls, mitochondrias, and intercellular spaces with ultracytochemical localization. Moreover, the deformation and rupture of cytomembranes as well as the swelling and distortion of mitochondria were obvious. Under waterlogging treatment conditions, catalase (CAT) gene expression increased in endosperm of Hua 8 but activity decreased. In addition, Mn superoxide dismutase (MnSOD) gene expression and superoxide dismutase (SOD) activity increased. Compared with Hua 8, both CAT, MnSOD gene expressions and CAT, SOD activities decreased in Hua 9. Moreover, ascorbic acid and mannitol relieve the intensifying of PCD processes in Hua 8 endosperm cells induced by waterlogging. These results indicate that ROS have important roles in the PCD of endosperm cells, the changes both CAT, MnSOD gene expressions and CAT, SOD activities directly affected the accumulation of ROS in two different wheat cultivars under waterlogging, ultimately led to the PCD acceleration of endosperm.
机译:先前的研究已经证明,淹水胁迫可加速小麦胚乳细胞程序性细胞死亡(PCD)进程。用不同的渍水持续时间处理高度耐涝的小麦品种Hua 8和耐涝的小麦品种Hua 9,然后检测胚乳细胞中活性氧(ROS),基因表达和抗氧化酶活性的动态变化。 。与对照组相比(在非淹水条件下),在两个品种的淹水处理(7 DWT)和12 DWT后,ROS的积累均显着增加,在12 DAF(开花后几天)达到顶点,此后降低。浸水导致质膜,细胞壁,线粒体和细胞间空间中具有超细胞化学定位的H2O2和O-2(-)大大增加。此外,细胞膜的变形和破裂以及线粒体的肿胀和变形也很明显。在淹水处理条件下,Hua 8胚乳中过氧化氢酶(CAT)基因表达增加,但活性降低。此外,锰超氧化物歧化酶(MnSOD)基因表达和超氧化物歧化酶(SOD)活性增加。与Hua 8相比,Hua 9的CAT,MnSOD基因表达和CAT,SOD活性均降低。此外,抗坏血酸和甘露醇缓解了淹水诱导的Hua 8胚乳细胞中PCD过程的增强。这些结果表明ROS在胚乳细胞的PCD中起重要作用,CAT,MnSOD基因表达和CAT,SOD活性的变化直接影响着两个小麦品种在渍水条件下ROS的积累,最终导致胚乳的PCD加速。 。

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