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Transgenic Tobacco Expressing a Ring Domain-Containing Protein of Capsicum annuum Confers Improved Cold Tolerance

机译:表达辣椒花环结构域蛋白的转基因烟草提高了耐寒性

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摘要

Zinc finger proteins function in plant tolerances to stresses from cold, dehydration, and salt. To determine the mechanisms for those underlying defenses, we previously used cDNA microarrays and northern blot analysis to identify a gene for the ring zinc finger protein (RDCP1) from hot pepper (Capsicum annuum). In that study, we showed that the RDCP1 gene was strongly induced by cold stress and, to a lesser degree, by ABA and high salt. Here, we have used a Ti-plasmid and Agrobacterium-mediated transformation to engineer RDCP1 under the control of the CaMVSSS promoter for constitutive expression in tobacco. The resultant RDCP1 transgenic plants exhibit significantly increased tolerance to low temperatures. Moreover, some of those transgenics have greater drought tolerance. In addition, none of the RDCP1 transgenic plants show any visible alterations from the wild phenotype. These current results demonstrate the biological role of RDCP1 in conferring stress tolerance.
机译:锌指蛋白在植物对寒冷,脱水和盐分胁迫的耐受性中起作用。为了确定这些潜在防御机制,我们先前使用cDNA微阵列和Northern blot分析来鉴定辣椒(辣椒)中的环状锌指蛋白(RDCP1)的基因。在该研究中,我们表明RDCP1基因被冷胁迫强烈诱导,而ABA和高盐则在较小程度上被诱导。在这里,我们已经使用Ti质粒和农杆菌介导的转化来工程改造RDCP1,该工程在CaMVSSS启动子的控制下在烟草中进行组成型表达。所得的RDCP1转基因植物对低温的耐受性显着提高。此外,这些转基因中的一些具有更高的耐旱性。另外,没有RDCP1转基因植物显示出来自野生表型的任何可见改变。这些最新结果证明了RDCP1在赋予抗逆性方面的生物学作用。

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