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- Recently,phytochelatin synthase(PCS) genes in higher plants and fission yeast have been isolated and characterized,and that some genes similar to the plant phytochelat. 植物螯合肽能够缓解重金属的毒害作用,并且对必需金属元素在真核生物(如高等植物、真菌和微藻)细胞内的分布具有调节作用。
- Keywords Phytochelatin synthase gene;Phytoremediation;Heavy metal tolerance;Garlic; 植物络合素合酶基因;植物修复;重金属抗性;大蒜;
- Keywords phytochelatin;phytochelatin synthase;heavy metal;higher plant;bioremediation; 植物螯合肽;植物螯合肽合成酶;重金属;高等植物;生物修复;
- Keywords phytochelatins;phytochelatin synthase;heavy metal detoxification; 植物络合素;植物络合素合酶;重金属解毒机制;
- phytochelatin synthase 植物螯合肽合成酶
- Roles of Phytochelatins and Phytochelatin Synthase in Plant Cadmium Tolerance and Accumulation 植物螯合肽及植物螯合肽合成酶在植物镉耐性和积累中的作用机制研究
- Synthase polymorphism has become a focus of study. 合酶基因多态性已成为研究的热点。
- Keywords turfgrass;creeping bentgrass;tall fescue;heavy metal tolerance;heavy metal accumulation;phytochelatins;phytochelatins synthase;glutathione;phytoremediation; 草坪草;匍匐翦股颖;高羊茅;重金属耐性;重金属积累;植物鳌合肽;植物鳌合肽合成酶;谷胱苷肽;植物修复;
- Effect of iodine on the activity of nitric oxide synthase in rat hippocampus. 高碘对大鼠海马一氧化氮合酶蛋白表达的影响。
- Chitin synthase is the important enzyme that converts UDP-GlcNAc to chitin. 摘要几丁质合成酶是生物合成几丁质的关键物质。
- ATP is produced by a complex in the mitochondrial membrane called ATP synthase. 三磷酸腺苷是由一个复杂的线粒体膜称为ATP合酶。
- It is useful for discovery of novel fungal polyketide synthase gene clusters. 本文综述了近五年来建立的几种分离真菌聚酮合酶基因的方法。
- The gradient this creates produces ATP by a similar ATP synthase complex. 这造成的梯度产生ATP的一个类似的ATP合酶复杂。
- Allele oxide synthase (AOS) was a key enzyme in JA biosynthesis pathway. 丙二烯氧化物合成酶基因(allele oxide sysnthase,AOS)是JA生物合成的关键酶基因,也是影响JA信号途径的调控基因。
- Chitin synthase is the important enzyme that convert UDP-GlcNAc to chitin. 几丁质合成酶是生物合成几丁质的关键物质。
- The AfSS gene of sucrose synthase in the Medicago falcata L was cloned. 并克隆与黄花苜蓿 (Medicago falcata L.;) 耐冷性相关的蔗糖合酶基因(MfSS)。
- The citrate synthase of mammalian tissues have been shown to be inhibited by ATP. 有人已经证实哺乳动物组织的柠檬酸合成酶受ATP的抑制。
- Nitric oxide can be produced in plant cells via animal NO synthase (NOS) or nitrate reductases and through nonenzymatic reactions. 摘要植物体可以通过依赖于类似哺乳动物的一氧化氮合成酶或硝酸还原酶的酶促合成途径和非酶促合成途径产生一氧化氮。
- It is prepared for using the stilbene synthase gene to transform plant for producing the resveratrol in fruit. 为利用芪合酶基因转化植物并在食用果实中产生白藜芦醇做准备。
- In summary, the resveratrol synthase gene was successfully cloned from the peanut and expressed in E. Coli. 本实验成功获得花生白藜芦醇合酶基因,并在大肠杆菌中实现了大量表达。