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拟南芥rd29A::DREB1A增强转基因马铃薯的抗冻性。

Arabidopsis rd29A::DREB1A enhances freezing tolerance in transgenic potato.

作者信息

Behnam Babak, Kikuchi Akira, Celebi-Toprak Fevziye, Kasuga Mie, Yamaguchi-Shinozaki Kazuko, Watanabe Kazuo N

机构信息

Gene Research Center, Graduate School of Life and Environmental Sciences, University of Tsukuba, Ten-nodai 1-1-1, Ibaraki, Tsukuba 305-8752, Japan.

出版信息

Plant Cell Rep. 2007 Aug;26(8):1275-82. doi: 10.1007/s00299-007-0360-5. Epub 2007 Apr 24.

Abstract

The freezing tolerance of 38 independent transgenic potato lines derived from the cultivar Desiree was tested in vitro using plantlets. The lines were transgenic for the DREB1A gene under control of the rd29A promoter, both of which were derived from Arabidopsis thaliana. The level of damage caused by freezing varied significantly among the transgenic clones and a non-transgenic control (cv. Desiree). Phenotypic evaluation indicated that the variable responses to freezing were attributable to genotypic variation, but freezing tolerance was not dependent on the number of insertions. Northern blot analysis using a DREB1A cDNA probe revealed high levels of DREB1A expression among the transgenic clones during the initial cold exposure at 4 degrees C (after 2 h) and in the early stages of freezing (-20 degrees C, 1-10 min). Furthermore, a linear correlation was detected between the level of expression and the phenotypic response for all lines except D138. Thus, in the case of potato, a significant increase in freezing tolerance was observed in vitro on a small scale following the introduction of rd29A::DREB1A. Additional testing will show whether this strategy can be used for tolerance breeding in potato and to increase the freezing tolerance of other agriculturally important crops.

摘要

利用试管苗对38个源自Desiree品种的独立转基因马铃薯株系的耐冻性进行了体外测试。这些株系是在rd29A启动子控制下对DREB1A基因进行转基因的,二者均源自拟南芥。在转基因克隆和非转基因对照(Desiree品种)中,冻害造成的损伤程度差异显著。表型评估表明,对冻害的不同反应归因于基因型变异,但耐冻性并不取决于插入数量。使用DREB1A cDNA探针进行的Northern印迹分析显示,在4℃初始冷暴露(2小时后)以及冷冻初期(-20℃,1 - 10分钟),转基因克隆中DREB1A表达水平较高。此外,除D138外,所有株系的表达水平与表型反应之间均检测到线性相关性。因此,就马铃薯而言,导入rd29A::DREB1A后,在体外小规模观察到耐冻性显著提高。进一步的测试将表明该策略是否可用于马铃薯的耐受性育种以及提高其他重要农作物的耐冻性。

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