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1)  RuBP oxygenase
RuBP加氧酶
1.
Rice seedlings treated with methyl jasmonate (MJ) showed that the activity of RuBP oxygenase in leaves was apparently increased since the second day after 2.
5×10-4mol/L茉莉酸甲酯(MJ)处理后的水稻幼苗,在处理后第2天即表现出RuBP加氧酶活性的明显升高,至处理后第4天,叶片中乙醇酸氧化酶的活性也升高,同时叶片中的乙醇酸累积量也明显高于对照。
2)  RuBP carboxylase-ozygenase
RuBP羧化酶-加氧酶
3)  RuBP enzyme
RuBP羧化/加氧酶
4)  RuBP carboxylase
RuBP羧化酶
1.
Effects of salt stress on net photosynthetic rate,stomatal conductance,intercellular CO 2 concentration,chlorophyll content,photochemical efficiency of PSⅡ(Fv/Fm)and RuBP carboxylase activity in rice cultivars Pokkali(salt tolerant)and Peta(salt sensitive)were studied.
研究了NaCl胁迫对耐盐性不同的水稻品种Pokkali (耐盐 )和Peta (盐敏感 )叶片的净光合速率、气孔导度、细胞间隙CO2 浓度、叶绿素含量、PSⅡ光化学效率 (Fv/Fm)和RuBP羧化酶活性的影响。
2.
The results suggested that the photosystem Ⅰ(PSⅠ), photosystem Ⅱ(PSⅡ) and total electron transport activities, RuBP carboxylase (RuBPCase) and carbonic anhydrase (CA) activities in tobacco leaves decreased along with the maturation and senescence of tobacco leaves, especially the PSⅡ electron transport activity and RuBPCase initial activit.
结果表明 ,随着烟叶的成熟衰老 ,烟叶的光系统Ⅰ (PSⅠ )、光系统Ⅱ (PSⅡ )及全电子传递活性、RuBP羧化酶 (RuBPCase)和碳酸酐酶 (CA)活性均呈下降趋势 ,其中PSⅡ电子传递活性和RuBPCase初始活性在打顶后下降迅速。
5)  RUBPase
RUBP羧化酶
1.
Research on the relationship between the activity of RuBPase and yield and quality of sugarbeet under different nitrogen levels applied;
不同施氮条件下甜菜RuBP羧化酶活性与产质量关系的研究
2.
Qiu Dewen from epiphyte for a period of time,we examined the activities of dehydrogenase and cellulase,RUBPase,the amount of chlorophyll and auxin.
以黄瓜为试验材料,用中国农科院邱德文博士从真菌中分离出的真菌蛋白进行处理,过一段时间,对根系脱氢酶、纤维素酶、RUBP羧化酶的活性以及叶绿素、生长素含量进行测定。
6)  RuBPcase
RuBP羧化酶
1.
Studies on the Stage Albescent Phenomenon in Tea the Changes of RuBPcase and Proteinase;
茶树阶段性返白现象的研究—RuBP羧化酶与蛋白酶的变化
2.
Under low phosphorus stress, the inorganic phosphorus content, RuBPcase activity and photosynthetic rate in the rice leaves reduced.
低磷胁迫下 ,水稻叶片的无机磷含量、光合速率、RuBP羧化酶活性下降。
补充资料:单加氧酶
分子式:
CAS号:

性质:又称加单氧酶,羟化酶,羟氧酶。一类催化有机物分子直接加氧的酶。它催化一个氧原子参人底物,另一个氧原子被还原成水。酶反应需要还原型辅因子,如FAD、NADP、抗坏血酸、铜和铁及细胞色素C,所需辅因子随各种单加氧酶而异。单加氧酶参与体内不少重要物质的形成,与药物和毒物的代谢关系密切。

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