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首页> 外文期刊>Free radical research >Differential gene expressions of rice superoxide dismutase isoforms to oxidative and environmental stresses.
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Differential gene expressions of rice superoxide dismutase isoforms to oxidative and environmental stresses.

机译:水稻超氧化物歧化酶同工型对氧化和环境胁迫的差异基因表达。

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摘要

Active oxygen species (AOSs) are produced under stress conditions of plant cells. Superoxide dismutase (SOD) catalyzes the first step in the AOS scavenging system. The responses of SOD genes to environmental stresses were analyzed in rice seedlings by the treatments of drought, salinity and chilling. The expressions of abscisic acid (ABA)-inducible genes, Mn-SOD gene (sodA1) and one of the cytosolic Cu/Zn-SOD genes (sodCc2), were strongly induced by the treatment of drought and salinity. While Fe-SOD gene (sodB) and the other cytosolic Cu/Zn-SOD gene (sodCc1) were also induced by ABA. However the mRNA level of sodB was decreased by drought treatment, and sodCc1 gene was not induced by drought and salinity treatments. Plastidic Cu/Zn-SOD gene (sodCp) quickly responded to salinity treatment in the light but not in the dark. In the treatment with hydrogen peroxide, sodCp gene was strongly induced shortly after the treatment. These results suggested that phytohormone and AOSs are associated with the regulation of SOD genes under environmental stresses.
机译:活性氧(AOS)是在植物细胞的胁迫条件下产生的。超氧化物歧化酶(SOD)催化AOS清除系统的第一步。通过干旱,盐碱和低温处理,分析了水稻幼苗中SOD基因对环境胁迫的响应。干旱和盐碱处理可强烈诱导脱落酸(ABA)诱导型基因Mn-SOD基因(sodA1)和胞质Cu / Zn-SOD基因之一(sodCc2)的表达。 ABA还诱导Fe-SOD基因(sodB)和其他胞质Cu / Zn-SOD基因(sodCc1)。然而,干旱处理降低了sodB的mRNA水平,而干旱和盐渍处理并未诱导sodCc1基因。 Plastidic Cu / Zn-SOD基因(sodCp)在明亮的情况下对盐度处理快速响应,而在黑暗中则不然。在过氧化氢处理中,在处理后不久就强烈诱导了sodCp基因。这些结果表明,在环境胁迫下,植物激素和AOSs与SOD基因的调控有关。

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