1)chloroplast transformation叶绿体转化
1.Some molecular strategies for controlling transgene escape were summarized, which included chloroplast transformation, male sterility, terminator technology, incompatible genomes, GM "gene deletor" The advantage and problem of these strategies were analysed, and then some constructive countermeasures and proposal to preventing transgene escape in the future were put forward.综述了几种防范转基因逃逸的分子策略:叶绿体转化法、雄性不育法、终止子技术、染色体组特异性选择、外源基因删除法,分析了这几种方法的优势及存在的问题,并对将来如何更好地防范植物转基因逃逸提出了一些建设性的对策及建议。
2.In order to eliminate the maintain-line seeds from the cytoplasm male sterile line seeds a selectable marker gene was inserted into the cytoplasmic genome of the male sterile line through chloroplast transformation.根据已发表的大豆叶绿体序列(GenBankX07675)设计引物,用PCR方法获得两段大豆叶绿体同源重组序列LHRR和RHRR,克隆到质粒pUC19中,并将来源于质粒pTF102的壮观霉素抗性基因aadA克隆到两段同源重组序列之间,以构建大豆叶绿体转化表达载体pJY01。
3.The text has surveyed Crop genetic engineering from several respects such as resistance to herbicide, disease beet resistance,drought tolerance, and that it has been reviewed the progress of directly making use of genetic engineering to improve the quality and yield of the crop, and the new advance in chloroplast transformation was introduced.综述了国内外抗除草剂、抗病、抗虫、抗逆境的作物基因工程,以及直接利用基因工程的手段改良农作物的品质、产量的研究进展,并介绍了叶绿体转化基因工程的最新进展。
英文短句/例句
1.The Chloroplast Transformtion in Dunaliella Salina;杜氏盐藻(Dunaliella salina)叶绿体转化研究
2.Isolation of Intact Chloroplasts from Dunaliella Salina and Construction of Vector for Chloroplast Transformation;杜氏盐藻完整叶绿体的分离和叶绿体转化体系的构建
3.The Construction of Chloroplast Site-specific Integration Expression Vector and Genetic Transformation in Spinach (Spinacia Oleracea L.)菠菜叶绿体表达载体构建及遗传转化
4.Obtainment of Rice Seedling Transformed by Chloroplast Superoxide Dismutase Gene转叶绿体超氧化物歧化酶基因水稻的获得
5.Chloroplast genetic transformation is a new way of plant genetic engineering.叶绿体遗传转化是植物基因工程的新方向。
6.The Research of Chloroplast Transgenic Sugar Beet Resistant to Herbicide with Bar Gene;抗除草剂bar基因甜菜叶绿体遗传转化研究
7.Cloning and Transformation of lba Gene of Glycine max into Chloroplast of Chlamydomonas reinhardtii豆血红蛋白基因lba的克隆及其转化衣藻叶绿体
8.Primary Studies on Construction of the Chloroplast-nuclear Co-transformation Vector and Transformation on Nicotiana Tabacum L.;烟草叶绿体—核共转化载体的构建和转化烟草初步研究
9.The Plant Expression Vector Construction of Cotton Chloroplast Cu/Zn-SOD Gene and Genetic Transformation;棉花叶绿体Cu/Zn-SOD基因植物表达载体的构建及转化
10.Construction of Chloroplast Expression Vector with Ferritin and PIC1 Genes and Transformation of Tobacco PlantsFerritin和PIC1叶绿体双价表达载体的构建及其对烟草的遗传转化
11.Gene Cloning and Transformation of Antioxidant Enzymes in the Chloroplast of Tomato;番茄叶绿体抗氧化酶基因的克隆与遗传转化的研究
12.Gene Cloning and Transformation of Antioxiditant Enzymes in the Chloroplast of Wheat;小麦叶绿体抗氧化酶基因的克隆与遗传转化的研究
13.Transformation of phaG and phaC Genes into Tobacco Chloroplast Genome and Genetic AnalysisphaG和phaC基因在烟草叶绿体中的转化及其遗传分析
14.axial chloroplast轴生叶绿体, 轴叶绿粒
15.Study on the Developmental Characters of Chloroplasts in a Yellow Type Mutant of Oilseed Rape Seedlings;油菜黄化突变体叶绿体发育特性研究
16.Amino transferases are located in the cytoplasm, chlorplasts and microbodies.氨基转移酶分布在细胞质、叶绿体和微体中。
17.The Research on Regulable Platid Expression System in Tabacco;可调控的烟草叶绿体转基因表达体系研究
18.The radiant energy absorbed by the photosynthetic apparatus will finally be partially converted into steady chemical energy via photochemical processes.植物光合机构中叶绿体色素吸收的光能通过光化学过程转化为稳定的化学能。
相关短句/例句
plastid transformation vector叶绿体转化载体
3)Site directed chloroplast transformation叶绿体定点转化
4)plastid genetic transformation叶绿体遗传转化
5)chloroplast tRNA叶绿体转移RNA
6)Chloroplast dedifferentiation叶绿体脱分化
延伸阅读
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。