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1)  carboxylase [英][kɑ:'bɔksileis]  [美][kɑr'bɑksə,les, -,lez]
羧化酶
2)  PEPC
PEP羧化酶
1.
The result showed that the effect of application levels of nitrogen fertilizer on activity of RuBPC,PEPC and Pn was signal with different varieties having different appearances.
结果表明,氮肥施用量对RuBP羧化酶活性、PEP羧化酶活性和光合速率有明显影响,不同品种的表现不尽相同,东甜4号和东农早粘以N100处理最为适宜,东农248和四单19则以N200处理较好。
3)  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。
4)  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。
5)  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。
6)  Rubisco
RuBP羧化酶
1.
ESTIMATION OF RUBISCO ACTIVITIES WITH GAS CHROMATOGROPHY;
气相色谱法测定RuBp羧化酶活性的研究
补充资料:羧化酶
分子式:
CAS号:

性质:通常指属于EC6.4、催化CO2(HCO3—)参入有机物分子形成C-C键的一群合成酶,都是以生物素为辅基的生物素蛋白,反应需ATP。HCO3—在ATP、Mg2+在下先形成活性形式,即N-羧化生物素·酶中间复合物,然后转移羧基至底物碳原子上,如丙酮酸羧化酶(EC6.4.1.1.)、乙酰CoA羧化酶(EC6.4.1.2.)、丙酰CoA羧化酶(EC6.4.1.3.)等。此外,尿素羧化酶(EC6.3.4.6.)也是生物素蛋白,利用HCO进行C-N键合成,产生脲基甲酸,继之水解为NH3和CO2属于EC4·1的羧基裂解酶(carboxylyase),催化底物脱羧和羧化,其中的某些酶也称羧化酶,如核酮糖-1,5-二磷酸羧化酶(EC4.1.1.39.),是一种铜酶,在光合作用中起二氧化碳固定作用,是生物圈中最丰富的一类酶。再如磷酸核糖氨基异吡唑羧化酶(EC4.1.1.21.),其参与嘌呤核苷酸合成,在反应中CO2不需先活化。

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