首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Introduction of the rd29A: AtDREB2A CA gene into soybean (Glycine max L. Merril) and its molecular characterization in leaves and roots during dehydration
【24h】

Introduction of the rd29A: AtDREB2A CA gene into soybean (Glycine max L. Merril) and its molecular characterization in leaves and roots during dehydration

机译:rd29A:AtDREB2A CA基因导入大豆(Glycine max L. Merril)的过程及其脱水过程中叶和根中的分子特征

获取原文
获取外文期刊封面目录资料

摘要

The loss of soybean yield to Brazilian producers because of a water deficit in the 2011-2012 season was 12.9%. To reduce such losses, molecular biology techniques, including plant transformation, can be used to insert genes of interest into conventional soybean cultivars to produce lines that are more tolerant to drought. The abscisic acid (ABA)-independent Dehydration Responsive Element Binding (DREB) gene family has been used to obtain plants with increased tolerance to abiotic stresses. In the present study, the rd29A:AtDREB2A CA gene from Arabidopsis thaliana was inserted into soybean using biolistics. Seventy-eight genetically modified (GM) soybean lines containing 2-17 copies of the AtDREB2A CA gene were produced. Two GM soybean lines (P1397 and P2193) were analyzed to assess the differential expression of the AtDREB2A CA transgene in leaves and roots submitted to various dehydration treatments. Both GM lines exhibited high expression of the transgene, with the roots of P2193 showing the highest expression levels during water deficit. Physiological parameters examined during water deficit confirmed the induction of stress. This analysis of AtDREB2A CA expression in GM soybean indicated that line P2193 had the greatest stability and highest expression in roots during water deficit-induced stress.
机译:由于2011-2012年度缺水,大豆生产者对巴西生产者的损失为12.9%。为了减少这种损失,可以使用分子生物学技术(包括植物转化)将目标基因插入常规大豆品种中,以产生更耐旱的品系。不依赖脱落酸(ABA)的脱水响应元件结合(DREB)基因家族已用于获得对非生物胁迫具有更高耐受性的植物。在本研究中,使用生物弹药将拟南芥的rd29A:AtDREB2A CA基因插入大豆。产生了包含2-17个拷贝的AtDREB2A CA基因的78个转基因(GM)大豆品系。分析了两个转基因大豆品系(P1397和P2193),以评估AtDREB2A CA转基因在经过各种脱水处理的叶和根中的差异表达。两种GM系均表现出转基因的高表达,而P2193的根系在缺水期间表现出最高的表达水平。在缺水期间检查的生理参数证实了压力的诱导。对转基因大豆中AtDREB2A CA表达的分析表明,P2193品系在缺水诱导的胁迫期间在根中具有最大的稳定性和最高的表达。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号