Lu Yuzhu, Feng Zhen, Bian Liying, Xie Hong, Liang Jiansheng
Key Laboratory of Crop Genetics and Physiology of Jiangsu Province, Yangzhou 225009, China.
College of Bioscience and Biotechnology, Yangzhou University, Yangzhou 225009, China.
Funct Plant Biol. 2010 Jan;38(1):44-53. doi: 10.1071/FP10178.
MiR398 targets two Cu or Zn superoxide dismutases (CSD1 and CSD2) in Arabidopsis thaliana (L.) Heynh. Here we provide evidence that rice (Oryza sativa L.) miR398 mediates responses to abiotic and biotic stresses through regulating the expression of its target genes, Os-CSD1 and Os-CSD2. Rice plants were exposed to various stresses, including high Cu2+, high salinity, high light, methyl viologen, water stress, pathogens and ethylene, and the molecular response was investigated. Rice plants overexpressing Os-miR398 and the miR398-resistant form of Os-CSD2 were also exposed to these stresses. Both abiotic and biotic stresses significantly inhibited Os-miR398 expression and thus stimulated the expression of Os-CSD1 and Os-CSD2. The plant hormone ethylene produced an especially marked response. Transgenic rice lines that overexpressed Os-miR398 had a lower expression of CSD1 and -2 and were more sensitive to environmental stress. Conversely, transgenic rice lines which overexpressed the miR398-resistant form of Os-CSD2 showed more tolerance to high salinity and water stress than non-transgenic rice. We conclude that Os-miR398 regulates the responses of rice to a wide range of environmental stresses and to ethylene, and exerts its role through mediating CSDs expression and cellular ROS levels.
在拟南芥中,miR398靶向两个铜或锌超氧化物歧化酶(CSD1和CSD2)。在此,我们提供证据表明,水稻(Oryza sativa L.)中的miR398通过调控其靶基因Os-CSD1和Os-CSD2的表达来介导对非生物和生物胁迫的响应。将水稻植株暴露于各种胁迫下,包括高铜离子、高盐度、高光、甲基紫精、水分胁迫、病原体和乙烯,并研究其分子响应。过表达Os-miR398和Os-CSD2的miR398抗性形式的水稻植株也暴露于这些胁迫下。非生物和生物胁迫均显著抑制Os-miR398的表达,从而刺激Os-CSD1和Os-CSD2的表达。植物激素乙烯产生了特别明显的响应。过表达Os-miR398的转基因水稻品系中CSD1和-2的表达较低,且对环境胁迫更敏感。相反,过表达Os-CSD2的miR398抗性形式的转基因水稻品系比非转基因水稻对高盐度和水分胁迫表现出更强的耐受性。我们得出结论,Os-miR398调节水稻对多种环境胁迫和乙烯的响应,并通过介导CSD的表达和细胞内活性氧水平发挥作用。