首页> 外文OA文献 >Respon Padi Transgenik CV. Nipponbare Generasi T1 Yang Mengandung Gen Oryza Sativa Dehydration-response Element Binding 1a (Osdreb1a) Terhadap Cekaman Salinitas [Response of T1 Generation Transgenic Rice CV. Nipponbare Containing an Oryza Sativa Dehydration-response Element Binding 1a (Osdreb1a) Gene to Salinity Stress]
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Respon Padi Transgenik CV. Nipponbare Generasi T1 Yang Mengandung Gen Oryza Sativa Dehydration-response Element Binding 1a (Osdreb1a) Terhadap Cekaman Salinitas [Response of T1 Generation Transgenic Rice CV. Nipponbare Containing an Oryza Sativa Dehydration-response Element Binding 1a (Osdreb1a) Gene to Salinity Stress]

机译:转基因水稻响应简历。含稻米脱水响应元件结合1a(Osdreb1a)基因的日本晴T1代对盐碱度的胁迫[T1代转基因水稻CV的响应。含稻米脱水反应因子结合1a(Osdreb1a)基因对盐分胁迫的日本晴]

摘要

Salinity is one of the abiotic constraints in the cultivation of rice crop. One of the reasons agricultural land becomes saline is due to the intrusion of seawater into the mainland as a result of global climate change. Dehydration-responsive element binding (DREB) gene is a plant -specific transcription factor gene that have important role in regulating plant responses to abiotic stresses, including high salinity. Transgenic rice plants cv. Nipponbare carrying OsDREB1A gene have been generated. However, study of the response of putative transgenic plants to salinity has not been done. The research objective is to study the response of T1 generation Nipponbare-OsDREB1A transgenic rice plants to salinity stress. The result showed that the response of putative transgenic rice Nipponbare-OsDREB1A to salinity stress 25 mM and 150 mM NaCl indicated a level of tolerance varies from highly sensitive to highly tolerance. These variations were possibly occurred because of the segregation state of the T1 generation transgenic rice. Based on damage symptom scoring and PCR analysis provided information that transgenic rice plant cv. Nipponbare-OsDREB1A which showed positive PCR had a very high tolerance to salinity stress 150 mM compared with non-transgenic rice cv. Nipponbare.
机译:盐分是水稻作物种植中的非生物限制因素之一。农业土地变成盐碱的原因之一是由于全球气候变化导致海水入侵大陆。脱水反应元件结合(DREB)基因是一种植物特异性转录因子基因,在调节植物对非生物胁迫(包括高盐度)的反应中具有重要作用。转基因水稻植株。携带OsDREB1A基因的日本晴已经产生。然而,尚未完成对推定的转基因植物对盐度反应的研究。研究目的是研究T1代Nipponbare-OsDREB1A转基因水稻对盐分胁迫的响应。结果表明推定的转基因水稻Nipponbare-OsDREB1A对盐分胁迫25 mM和150 mM NaCl的响应表明耐受水平从高度敏感到高度耐受不等。这些变异可能是由于T1代转基因水稻的分离状态而发生的。基于损伤症状评分和PCR分析提供的信息表明转基因水稻植株简历。显示出阳性PCR的Nipponbare-OsDREB1A与非转基因水稻cv相比,对盐分胁迫150 mM具有很高的耐受性。 Nipponbare。

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