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1)  chloroplast-thylakoid
叶绿体类囊体
1.
The element of rare earth-Neodymium has an enect on the protein-complex in chloroplast-thylakoid of plant,which not only show on thevariation of thylakoid-solution’s absorption-spectrogram,but also on the variation of absorption-peak area with SDS-PAGE electrophore-sis-scaning map.
Nd ̄(3+)对植物叶绿体类囊体蛋白复合物的影响,不仅表现在对叶绿体类囊体膜溶液的吸收光谱改变上,而且也表现在对色素蛋白复合物SDS-PAGA电泳带扫描图谱吸收峰面积变化上;同时也对DCIP光还原活力表现出抑制作用,对Ca ̄(2+)-ATPase的活力表现出低浓度激活,高浓度抑制的作用。
2)  Phosphatase of chloroplast thylakoid membrane
叶绿体类囊体膜磷酸酯酶
3)  Chloroplast [英]['klɔ:rəplæst]  [美]['klorə,plæst]
叶绿体
1.
Degradation of Chloroplast Pigments and Change of Respiratory Intensity in TN90 during Air-curing;
晾制期间白肋烟TN90叶绿体色素降解动态及呼吸强度的变化
2.
Fabrication of the Polyvinylalcohol Bearing Styrlpyridinium Groups Membrane Entrapped Chloroplast and Its Application in the Determination of Herbicides by a Clark Electrode;
聚乙烯醇-苯乙烯吡啶聚合固定叶绿体膜的制备并用于残留除草剂检测
3.
Progress in Chloroplast Proteomics Research;
叶绿体的蛋白质组学研究进展
4)  chloroplasts
叶绿体
1.
Effects of He-Ne Laser and Enhanced UV-B Radiation on Photochemical Activities of Chloroplasts in Wheat (in Vivtro);
增强UV-B辐射和He-Ne激光辐照对小麦离体叶绿体光化学活性的影响
2.
The Modification of Dithiothreitol on the CF_0 of H+-ATPase Complex in Chloroplasts;
二硫苏糖醇对叶绿体H~+-ATP酶复合体CF_0的修饰
3.
Generation and Scavenging of Reactive Oxygen Species in Chloroplasts;
叶绿体中活性氧的产生和清除机制
5)  cpDNA
叶绿体DNA
1.
The Method for Isolation of Banana Chloroplast and cpDNA;
香蕉叶绿体分离及叶绿体DNA提取方法
2.
Research on Polymorphism of cpDNA in Wheat Albescent Line;
小麦返白系叶绿体DNA多态性研究
3.
Genetic Evolution of Clintonia udensis Trautv.et Mey.Based on cpDNA Sequencing;
基于叶绿体DNA序列分析东亚七筋姑的遗传进化
6)  chloroplast DNA
叶绿体DNA
1.
Studies on chloroplast DNA polymorphism of CMS line rice;
三系不育系水稻叶绿体DNA遗传多态性研究
2.
Comparative Study on the Indica-Japonica Differentiation of Nuclear DNA, Mitochondrial DNA and Chloroplast DNA in Cultivated Rice (Oryza sativa L.);
亚洲栽培稻的核DNA、线粒体DNA和叶绿体DNA籼粳分化的比较研究
3.
Phylogenetic Relations of Aegilops Species Based on RAPD Analysis of Chloroplast DNA;
应用RAPD技术研究不同种山羊草叶绿体DNA的遗传变异
补充资料:叶绿体核糖体
分子式:
CAS号:

性质:真核生物叶绿体中发现的70s核糖体。在70s核糖体上合成蛋白质可被氯霉素抑制,而不受环己酰亚胺(放线酮)影响,这情况正好与(真核生物)80s细胞质核糖体相反。叶绿体的核糖体可分为50s及30s的亚基。在70s核糖体中链的引发需要用N-甲酰甲硫氨酸而不是甲硫氨酸。大约有50种蛋白质与70s核糖体有关,其中有几种系由细胞质系统合成的。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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