首页> 外文期刊>Frontiers in Plant Science >Co-overexpression of the Constitutively Active Form of OsbZIP46 and ABA-Activated Protein Kinase SAPK6 Improves Drought and Temperature Stress Resistance in Rice
【24h】

Co-overexpression of the Constitutively Active Form of OsbZIP46 and ABA-Activated Protein Kinase SAPK6 Improves Drought and Temperature Stress Resistance in Rice

机译:OsbZIP46的组成型活性形式和ABA激活的蛋白激酶SAPK6的共过量表达可改善水稻的抗旱性和温度胁迫性

获取原文
           

摘要

Drought is one of the major abiotic stresses threatening rice ( Oryza sativa ) production worldwide. Drought resistance is controlled by multiple genes, and therefore, a multi-gene genetic engineering strategy is theoretically useful for improving drought resistance. However, the experimental evidence for such a strategy is still lacking. In this study, a few drought-responsive genes from rice were assembled by a multiple-round site-specific assembly system, and the constructs were introduced into the rice cultivar KY131 via Agrobacterium -mediated transformation. The transgenic lines of the multi-gene and corresponding single-gene constructs were pre-evaluated for drought resistance. We found that the co-overexpression of two genes, encoding a constitutively active form of a bZIP transcription factor ( OsbZIP46CA1 ) and a protein kinase ( SAPK6 ) involved in the abscisic acid signaling pathway, showed significantly enhanced drought resistance compared with the single-gene transgenic lines and the negative transgenic plants. Single-copy lines of this bi-gene combination (named XL22) and the corresponding single-gene lines were further evaluated for drought resistance in the field using agronomical traits. The results showed that XL22 exhibited greater yield, biomass, spikelet number, and grain number under moderate drought stress conditions. The seedling survival rate of XL22 and the single-gene overexpressors after drought stress treatment also supported the drought resistance results. Furthermore, expression profiling by RNA-Seq revealed that many genes involved in the stress response were specifically up-regulated in the drought-treated XL22 lines and some of the stress-related genes activated in CA1-OE and SAPK6-OE were distinct, which could partially explain the different performances of these lines with respect to drought resistance. In addition, the XL22 seedlings showed improved tolerance to heat and cold stresses. Our results demonstrate that the multi-gene assembly in an appropriate combination may be a promising approach in the genetic improvement of drought resistance.
机译:干旱是威胁全球稻米生产的主要非生物胁迫之一。抗旱性受多个基因控制,因此,从理论上讲,多基因遗传工程策略可用于提高抗旱性。但是,仍然缺乏这种策略的实验证据。在这项研究中,通过多轮位点特异性装配系统装配了水稻的一些干旱反应基因,并通过农杆菌介导的转化将构建体引入水稻品种KY131。预先评估了多基因和相应的单基因构建体的转基因品系的抗旱性。我们发现编码脱落酸信号传导途径的bZIP转录因子(OsbZIP46CA1)和蛋白激酶(SAPK6)的组成型活性形式的两个基因的共过量表达与单基因相比显示出显着增强的抗旱性转基因品系和阴性转基因植物。利用农艺性状进一步评估了该双基因组合的单拷贝品系(命名为XL22)和相应的单基因品系的田间抗旱性。结果表明,在中等干旱条件下,XL22表现出更高的产量,生物量,小穗数和籽粒数。干旱胁迫处理后XL22的幼苗成活率和单基因过表达也支持了抗旱结果。此外,通过RNA-Seq进行的表达谱分析表明,在干旱处理的XL22系中,许多与胁迫反应有关的基因被上调,并且在CA1-OE和SAPK6-OE中激活的一些与胁迫相关的基因是不同的,这可以部分解释这些品系在抗旱方面的不同表现。此外,XL22幼苗对热和冷胁迫表现出更好的耐受性。我们的结果表明,适当组合的多基因装配可能是抗旱性遗传改良中的一种有前途的方法。

著录项

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