Suppr超能文献

DREB转录因子的诱导表达及其对转基因小麦耐旱生理效应的研究

Induced expression of DREB transcriptional factor and study on its physiological effects of drought tolerance in transgenic wheat.

作者信息

Wang Jun-Wei, Yang Feng-Ping, Chen Xu-Qing, Liang Rong-Qi, Zhang Li-Quan, Geng Dong-Mei, Zhang Xiao-Dong, Song Ya-Zhen, Zhang Gai-Sheng

机构信息

Beijing Agro-Biotechnology Research Center; Beijing Academy of Agriculture & Forestry Science, China.

出版信息

Yi Chuan Xue Bao. 2006 May;33(5):468-76. doi: 10.1016/S0379-4172(06)60074-7.

Abstract

Expression vector pBAC128F, which carries DREB transcriptional factor gene driven by drought inducing promoter rd29B and bar gene driven by CaMV 35S promoter and maize Adh1 gene first intron, was transferred into the explants of immature inflorescence and immature embryos of hexaploid winter wheat cv. 8901, 5-98, 99-92 and 104 by particle bombardment. More than 70 resistant transgenic plants were obtained. Genomic PCR and RNA dot blotting analyses showed that DREB gene had been integrated into wheat genome of the transgenic plants (T0 and T1) and was well expressed in offspring seed of different transgenic lines. The content of proline in leaves and seeds of T2 transgenic lines was analyzed. Among 16 tested transgenic lines, 10 transgenic lines exhibited more than two fold of proline level in leaves as compared with CK plants. Under drought condition, after stopping water for 15 days the leaves of transgenic lines were still green, while CK were faded. After rewatering for 10 days, the leaves of transgenic lines maintained their green, while all CK plants were dead. Our research suggested that introducing a novel DREB transcriptional factor into wheat is an effective way to improve its drought-tolerance ability.

摘要

表达载体pBAC128F携带由干旱诱导启动子rd29B驱动的DREB转录因子基因、由CaMV 35S启动子和玉米Adh1基因第一内含子驱动的bar基因,通过粒子轰击法导入六倍体冬小麦品种8901、5 - 98、99 - 92和104的未成熟花序和未成熟胚外植体中。获得了70多株抗性转基因植株。基因组PCR和RNA斑点杂交分析表明,DREB基因已整合到转基因植株(T0和T1)的小麦基因组中,并在不同转基因株系的后代种子中良好表达。分析了T2转基因株系叶片和种子中脯氨酸的含量。在16个测试的转基因株系中,10个转基因株系叶片中的脯氨酸水平比对照植株高出两倍以上。在干旱条件下,停水15天后转基因株系的叶片仍为绿色,而对照植株叶片枯黄。复水10天后,转基因株系的叶片保持绿色,而所有对照植株死亡。我们的研究表明,将一种新的DREB转录因子导入小麦是提高其耐旱能力的有效途径。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验