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AtDREB1A基因在菊花中的异源表达提高了植株对干旱和盐渍胁迫的耐性 被引量:25
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作者 洪波 仝征 +4 位作者 马男 李建科 Mie Kasuga Kazuko Yamaguchi-Shinozaki 高俊平 《中国科学(C辑)》 CSCD 北大核心 2006年第3期223-231,共9页
将携带有AtDREBlA基因,并以35S或rd29A启动子驱动的植物表达载体转入地被菊花(Dendranthema grandiflorum)的粉色品种‘Fall color’.与野生型相比,35S:DREBIA转基因植株表现出严重的生长抑制,而rd29A:DREB1A植株生长正常.RT-PCR检测... 将携带有AtDREBlA基因,并以35S或rd29A启动子驱动的植物表达载体转入地被菊花(Dendranthema grandiflorum)的粉色品种‘Fall color’.与野生型相比,35S:DREBIA转基因植株表现出严重的生长抑制,而rd29A:DREB1A植株生长正常.RT-PCR检测表明,在胁迫条件下, AtDREB1A基因在35S:DREB1A转基因植株中呈现组成型过量表达,而在rd29A:DREB1A植株中则是受胁迫诱导型过量表达.这两种启动子驱动的转基因植株对干旱和盐溃胁迫都表现出较强的耐性,其中rd29A:DREB1A植株耐性显著强于35S:DREB1A植株.rd29A:DREB1A植株中的脯氨酸含量和SOD活性都强烈地被胁迫诱导升高,且高于35S:DREB1A植株.这些结果表明,在地被菊花中表达AtDREB1A基因可以提高植株对干旱和盐渍胁迫的耐性,同时这些耐性的升高可能与脯氨酸含量和SOD活性的上升有关. 展开更多
关键词 干旱胁迫耐性 盐渍胁迫耐性 转基因菊花 转录因子
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Screening of Drought-tolerant Brassica napus L.Varieties and Analysis on Their Physiologic and Biochemical Variations under Drought Stress 被引量:7
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作者 李淑娟 程量 +3 位作者 彭少丹 陈升位 王勤方 林良斌 《Agricultural Science & Technology》 CAS 2014年第4期596-604,615,共10页
[Objective] The aim of this study was to screen drought-tolerant Brassica napus L. germplasm resources by analyzing their physiological and biochemical changes under drought stress. [Method] Forty varieties of B. napu... [Objective] The aim of this study was to screen drought-tolerant Brassica napus L. germplasm resources by analyzing their physiological and biochemical changes under drought stress. [Method] Forty varieties of B. napus varieties were cultured under PEG-6000 osmotic stress and extreme drought stress in pots, re- spectively. Then, the contents of chlorophyll, carotenoid, proline, malondialdehyde (MDA), soluble sugar, soluble protein, and the activities of superoxide dismutase (SOD), catalase(CAT), peroxidase(POD) were measured under drought stress. [Result] Sever- al drought-tolerant varieties of B. napus were screened out: YAU200908, Xiangyou No.15, YAU200903, YAU200907, YAU200906 and YAU200904. Physiological and biochemical analysis showed that, the contents of chlorophyll and carotenoid de- creased with drought stress increasing; the contents of proline, soluble sugar, solu- ble protein, MDA and the activities of SOD,CAT, POD raised with drought stress in- creasing. [Conclusion] In the rapeseed varieties with stronger drought tolerance, the decrease in carotenoid content and the increase in proline content, soluble sugar content, MDA content, SOD activity, CAT activity were more obvious, so all these physiological and biochemical indices can be used to evaluate the drought tolerance of rapeseed. 展开更多
关键词 Brassica napus L. Drought tolerance Drought stress Physiologic and biochemical changes
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