期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
褐藻胶寡糖激发子活性研究 被引量:1
1
作者 刘中华 张杰 郭婕 《周口师范学院学报》 CAS 2010年第5期82-84,共3页
寡糖可作为激发子诱导植物产生抗性反应,提高防御酶活力,积累植保素,从而增强自身的抵抗力.本实验利用细菌AGN12的胞外酶对褐藻胶进行生物降解,得到不同聚合度的寡糖样品.实验结果表明,褐藻胶寡糖能激活大豆子叶的防卫系统,诱导合成和... 寡糖可作为激发子诱导植物产生抗性反应,提高防御酶活力,积累植保素,从而增强自身的抵抗力.本实验利用细菌AGN12的胞外酶对褐藻胶进行生物降解,得到不同聚合度的寡糖样品.实验结果表明,褐藻胶寡糖能激活大豆子叶的防卫系统,诱导合成和积累较多的植保素,并且对大豆子叶防御酶有良好的诱导作用. 展开更多
关键词 褐藻胶寡糖 激发子活性 大豆子叶 植保素 苯丙氨酸解氨酶
下载PDF
海藻酸寡糖生物活性研究 被引量:10
2
作者 江琳琳 陈温福 +1 位作者 陈晓艺 李宪臻 《大连工业大学学报》 CAS 北大核心 2009年第3期157-160,共4页
化学农药的随意使用已经引起严重的生态环境污染和药物残留等危害人类健康问题,寡糖作为激发子能够诱导植物细胞产生自我防御响应,以抵御外来微生物的侵染。海藻酸经海藻酸降解酶分解形成不同聚合度的寡糖,大豆子叶法检测发现聚合度为6.... 化学农药的随意使用已经引起严重的生态环境污染和药物残留等危害人类健康问题,寡糖作为激发子能够诱导植物细胞产生自我防御响应,以抵御外来微生物的侵染。海藻酸经海藻酸降解酶分解形成不同聚合度的寡糖,大豆子叶法检测发现聚合度为6.8的海藻酸寡糖具有较高的激发子活性,以此海藻酸寡糖处理水稻芽,能够激发水稻细胞产生植保素,其形成量与所用水稻种子的萌发时间有关,用萌发5 d后的水稻芽检测海藻酸寡糖生物活性时灵敏度最高,而且,水稻种子的不同处理方法影响植保素的产生。 展开更多
关键词 海藻酸寡糖 水稻 激发子活性
下载PDF
Detection for Transcriptional Activity of Alternaria Tenuissim Protein Elicitor in Yeast Two-hybrid System 被引量:3
3
作者 刘延锋 邱德文 +1 位作者 曾洪梅 杨秀芬 《Agricultural Science & Technology》 CAS 2008年第1期64-66,共3页
The peaT1 gene fragment was amplified from pGEM-6p-l-peaT1 by PCR, and recovered target gene was cloned into pLexA vector. After digestion and sequencing, the bait vector pLexA-peaT1 was transformed into yeast strain ... The peaT1 gene fragment was amplified from pGEM-6p-l-peaT1 by PCR, and recovered target gene was cloned into pLexA vector. After digestion and sequencing, the bait vector pLexA-peaT1 was transformed into yeast strain EGY48 [p8op-lacZ] by PEG/LiAC, and the transcriptional activity of bait vector was detected. The results showed that recombinant bait plasmid pLexA-PEMG1 was constructed, for the two bands of recombinant bait plasmid in agarose gel eleetrophoresis were expected after digesting by restriction endonuclease EcoR I and Xho I. Therefore, the recombinant bait plasmid could be used in yeast two-hybrid system to screen a cDNA library. 展开更多
关键词 PeaT1 Yeast two-hybrid Transcriptional activity
下载PDF
Activation of Plasma Membrane NADPH Oxidase and Generation of H_2O_2 Mediate the Induction of PAL Activity and Saponin Synthesis byEndogenous Elicitor in Suspension-Cultured Cells of Panax ginseng 被引量:1
4
作者 胡向阳 Steven J NEILL +1 位作者 蔡伟明 汤章城 《Acta Botanica Sinica》 CSCD 2003年第12期1434-1441,共8页
Endogenous elicitor, termed cellulase-degraded cell wall (CDW), was prepared from the cell wall of suspension-cultured ginseng (Panax ginseng C.A. Meyer) cells via cellulase degradation. CDW activated the NADPH oxidas... Endogenous elicitor, termed cellulase-degraded cell wall (CDW), was prepared from the cell wall of suspension-cultured ginseng (Panax ginseng C.A. Meyer) cells via cellulase degradation. CDW activated the NADPH oxidase activity of isolated plasma membranes and stimulated in vivo H2O2 generation in ginseng cell suspensions. CDW also increased the activity of phenylalanine ammonia lyase (PAL), expression of a P. ginseng squalene epoxidase (sqe) gene and saponin synthesis. NADPH oxidase inhibitors inhibited both in vitro NADPH oxidase activity and in vivo H2O2 generation. Induction of PAL activity, saponin synthesis and sqe gene expression were all inhibited by such inhibitor treatments and reduced by incubation with catalase and HA scavengers. These data indicate that activation of NADPH oxidase and generation of H2O2 are essential signalling events mediating defence responses induced by the endogenous elicitor(s) present in CDW. 展开更多
关键词 plasma membrane NADPH oxidase H2O2 ELICITOR Panax ginseng
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部