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首页> 外文期刊>Molecular Breeding >A novel stress-associated protein SbSAP14 from Sorghum bicolor confers tolerance to salt stress in transgenic rice
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A novel stress-associated protein SbSAP14 from Sorghum bicolor confers tolerance to salt stress in transgenic rice

机译:高粱双色的新型胁迫相关蛋白SbSAP14赋予转基因水稻耐盐胁迫能力

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We have characterized a member of the stress-associated protein (SAP) gene family from Sorghum bicolor (SbSAP14) with A20 and AN1 zinc-finger domains. Expression profiling revealed that SbSAP14 is specifically induced in response to dehydration, salt, and oxidative stress as well as abscisic acid treatment. During the early stage of salt stress, overexpression of SbSAP14 was able to prevent yellowing and withering of the leaf tip of rice plants. Measurements of malondialdehyde, ion leakage, and chlorophyll content demonstrated that transgenic rice had an enhanced tolerance to oxidative damage caused by salt stress. Under prolonged salt stress, transgenic rice plants had a higher seed germination rate and higher percentage seedling survival than wild-type (WT) plants. Importantly, in vivo and in situ assays revealed that the accumulation of reactive oxygen species in transgenic rice plants was significantly lower than that in WT plants. Among the six antioxidant genes tested, APX2, CatB, CatC, and SodA1 showed a higher expression level in transgenic rice than in WT rice. Based on these results, we propose that SbSAP14 may play a key role in antioxidant defense systems and possibly be involved in the induction of antioxidant genes in plants, suggesting a possible mechanism of the SAP gene family in stress defense response.
机译:我们已经表征了高粱双色(SbSAP14)与A20和AN1锌指结构域的应力相关蛋白(SAP)基因家族的成员。表达谱分析表明,SbSAP14是响应脱水,盐和氧化应激以及脱落酸处理而特异性诱导的。在盐胁迫的早期,SbSAP14的过表达能够防止水稻叶尖变黄和枯萎。对丙二醛,离子泄漏和叶绿素含量的测量表明,转基因水稻对盐胁迫引起的氧化损伤具有增强的耐受性。在长期的盐胁迫下,转基因水稻植物的种子发芽率和幼苗存活率均高于野生型(WT)植物。重要的是,体内和原位测定表明,转基因水稻植物中活性氧的积累明显低于野生型植物。在测试的六个抗氧化剂基因中,APX2,CatB,CatC和SodA1在转基因水稻中的表达水平高于野生稻。基于这些结果,我们建议SbSAP14可能在抗氧化防御系统中发挥关键作用,并可能参与植物抗氧化基因的诱导,表明SAP基因家族在胁迫防御反应中的可能机制。

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