Yang Li-Xiang, Wang Rui-Yong, Ren Feng, Liu Jia, Cheng Jia, Lu Ying-Tang
Key Lab of MOE for Plant Developmental Biology, College of Life Sciences, Wuhan University, Wuhan 430072, PR China.
Plant Cell Physiol. 2005 Aug;46(8):1309-16. doi: 10.1093/pcp/pci140. Epub 2005 May 31.
Hydrogen peroxide (H2O2) as a widespread molecule plays an important role in plant stress responses. Here, we showed that an Arabidopsis line overexpressing hemoglobin 1 (AtGLB1) can enhance its tolerance to severe hypoxic stress. In our research, Arabidopsis lines with different hemoglobin levels were employed to study the relationship between H2O2 level and the tolerance to hypoxic stress. The relatively low endogenous H2O2 level of AtGLB1-overexpressing plants could be one of the main factors for the increased tolerance of plants to hypoxic stress. Further investigation indicated that the activity of the antioxidant system involved in scavenging H2O2 increased in all three lines examined during hypoxic treatment, while only the line overexpressing AtGLB1 could retain these relatively high levels up to 48 h of the treatment, suggesting that the antioxidant system might play a role in the low H2O2 level of Arabidopsis overexpressing AtGLB1.
过氧化氢(H2O2)作为一种广泛存在的分子,在植物应激反应中发挥着重要作用。在此,我们表明过表达血红蛋白1(AtGLB1)的拟南芥株系能够增强其对严重缺氧胁迫的耐受性。在我们的研究中,利用具有不同血红蛋白水平的拟南芥株系来研究H2O2水平与缺氧胁迫耐受性之间的关系。AtGLB1过表达植株相对较低的内源性H2O2水平可能是植物对缺氧胁迫耐受性增加的主要因素之一。进一步研究表明,在缺氧处理期间,所检测的所有三个株系中参与清除H2O2的抗氧化系统活性均增加,而只有过表达AtGLB1的株系在处理长达48小时时能够保持这些相对较高的水平,这表明抗氧化系统可能在AtGLB1过表达拟南芥的低H2O2水平中发挥作用。