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Comparative physiological and proteomic response to abrupt low temperature stress between two winter wheat cultivars differing in low temperature tolerance

机译:不同耐寒性不同的两个冬小麦品种对突然低温胁迫的比较生理和蛋白质组学响应

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Abrupt temperature reduction in winter wheat at either autumn seedling stage prior to vernalisation or early spring crown stage can cause severe crop damage and reduce production. Many studies have reported the physiological and molecular mechanisms underlying cold acclimation in winter wheat by comparing it with spring wheat. However, processes associated with abrupt temperature reduction in autumn seedling stage prior to vernalisation in winter wheat are less understood. In this study, physiological and molecular responses of winter wheat seedlings to abrupt low temperature (LT) stress were characterised in the relatively LT-tolerant winter wheat cultivar Shixin 828 by comparing it with the relatively LT-sensitive cultivar Shiluan 02-1 using a combination of physiological, proteomics and biochemical approaches. Shixin 828 was tolerant to abrupt LT stress, while Shiluan 02-1 exhibited high levels of reactive oxygen species (ROS) and leaf cell death. Significant increases in relative abundance of antioxidant-related proteins were found in Shixin 828 leaves, which correlate with observed higher antioxidant enzyme activity in Shixin 828 compared to Shiluan 02-1. Proteomics analysis also indicated that carbohydrate metabolism-related proteins were more abundant in Shiluan 02-1, correlating with observed accumulation of soluble sugars in Shiluan 02-1 leaves. Amino acid analysis revealed a strong response to LT stress in wheat leaves. A negative effect of exogenous sucrose on LT tolerance was also found. This study indicates that high ROS scavenging capacity and high abundance of photosynthesis-related proteins might play a role in winter wheat response to abrupt LT stress. In contrast, excess accumulation of soluble sugars might be disadvantageous for LT tolerance in the wheat cultivar Shiluan 02-1.
机译:在春化之前的秋季幼苗阶段或早春冠期,冬小麦的温度突然降低会导致严重的农作物受损并减产。与冬小麦相比,许多研究已经报道了冬小麦冷驯化的生理和分子机制。但是,与冬小麦春化之前的秋季幼苗阶段突然降温有关的过程尚不清楚。在这项研究中,将耐低温的冬小麦品种Shixin 828与相对耐低温的品种Shiluan 02-1进行了比较,从而表征了冬小麦幼苗对突然低温(LT)胁迫的生理和分子响应。 ,蛋白质组学和生化方法的研究。 Shixin 828耐受突然的LT胁迫,而Shiluan 02-1表现出高水平的活性氧(ROS)和叶细胞死亡。在Shixin 828叶片中发现抗氧化剂相关蛋白的相对丰度显着增加,这与Shishian 02-1相比在Shixin 828中观察到的更高的抗氧化酶活性有关。蛋白质组学分析还表明,十栏02-1中碳水化合物代谢相关蛋白含量更高,这与十栏02-1叶片中可溶性糖的积累有关。氨基酸分析表明,小麦叶片对LT胁迫有很强的响应。还发现外源蔗糖对LT耐受性有负面影响。这项研究表明,高的ROS清除能力和高含量的光合作用相关蛋白可能在冬小麦对LT突变的响应中起作用。相反,过量的可溶性糖积累可能对小麦品种十栏02-1的LT耐受性不利。

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