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1)  Breaking dormancy
解除休眠
1.
The results indicated that low temperature had significant effect on breaking dormancy: with the treatment time of lower temperature prolonged,seedling rate was increased.
结果表明,低温处理对解除休眠有显著作用,随着低温处理时间的延长,成苗率提高。
2)  dormancy release
解除休眠
1.
Morphological and physiological changes of oriental lily bulbs during dormancy release with low temperature storage;
东方百合鳞茎低温解除休眠过程中的形态和生理变化
2.
The results showed:High temperature or GA3 was good at dormancy release and burgeon promoted for Zantedeschia hybrida tuber.
"高温(22℃~25℃)+GA3(300mg/kg,15min)"处理对促进彩色马蹄莲种球发芽,解除休眠的效果最好,在60d和80d后发芽率分别达到53。
3)  dormancy breaking
解除休眠
1.
Changes of contents of saccharide and protein in buds of Kyoho grape during the dormancy breaking induced by chemical matter;
化学物质解除休眠过程巨峰葡萄芽糖类及蛋白质含量的变化
4)  dormancy releasing
休眠解除
1.
Relationship between phosphopentose pathway and seed dormancy releasing of Panax quinquefolius;
西洋参种子休眠解除与磷酸戊糖途径关系的研究
2.
Substance metabolism changes were studied by measuring the changes of respiration metabolism, the stored substances contents, hydrolysis enzymes activities, and endogenous hormone contents in endosperm of Tilia miqueliana seeds during dormancy releasing,the results were showed as follows:1.
本文对南京椴种子休眠解除过程胚乳物质代谢进行研究,测定了胚乳呼吸代谢、贮藏物质含量、水解酶类活性和内源激素含量的变化,结果表明:1。
5)  dormancy release
休眠解除
1.
Effects of removing scales and exogenous hormone treatments on changes of endogenous hormone in sweet cherry flower buds and dormancy release during dormancy;
剥鳞和激素处理对大樱桃花芽休眠解除及内源激素变化的影响
2.
The membrane lipid peroxidation in buds of paeonia changes during low temperature induced dormancy release.
POD活性在休眠解除过程中一直上升。
3.
The results demonstrated that GA_ 3 and CTK induced,however ABA inhibited the dormancy release.
根据花芽萌动和开花情况结合激素的变化动态,将低温解除花芽休眠进程划分为:低温累积期、休眠解除启动期、休眠基本解除期、休眠彻底解除期4个时期。
6)  Dormancy-release
休眠解除
1.
Changes in H_2O_2 content and activities of antioxidant enzymes of grape and nectarine during natural dormancy-release;
葡萄和油桃自然休眠解除过程中H_2O_2含量和抗氧化酶活性的变化
补充资料:休眠素(dormin)
分子式:
CAS号:

性质:又称休眠素(dormin)。从幼期棉桃中分离得到的一种具有倍半萜结构的植物激素。天然产的为(+)-2-顺,4-反-脱落酸,存在于悬铃木、白桦、玫瑰叶中,以及圆白菜、马铃薯、柠檬、鳄梨中。无色结晶,分子量264.31。熔点160~161℃,120℃升华。溶于碳酸氢钠水溶液、氯仿、丙酮、乙酸乙酯和乙醚,微溶于苯和水。人工合成的为外消旋体,熔点188~190℃。是一种重要的植物生长激素,其浓度达0.01μg时,有加速棉花落叶的活性。  

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