新基因,novel gene
1)novel gene新基因
1.Expression and identification of novel genes differentially expressed in diabetic rats supplemented with zinc;糖尿病大鼠补锌后新基因片段表达与鉴定
2.Cloning,identification and tissue expression of novel genes differentially expressed in diabetic rats supplemented with zinc;补锌糖尿病大鼠差异显示新基因片段的克隆鉴定及组织表达
3.Human multi-tissue expression profile induced by IL-6 and functional forecast of novel gene LX3;IL-6诱导相关新基因LX3的人多组织表达谱分析及功能预测
英文短句/例句

1.Application of the Metagenomics in Finding the New Functional Genes宏基因组学在发现新基因方面的应用
2.Functional Study of Novel Human Gene DCUN1D3人类新基因DCUN1D3功能研究
3.Exploring the Function of Saccharomyces Cerevisiae Gene PHO85 and Homo Sapiens Novel Gene BRI3;芽殖酵母PHO85基因和人新基因BRI3的功能研究
4.Development of Rice Near-isogenic Lines and Discovery of New Genes of Grain Shape;水稻近等基因系的构建与粒型新基因的发掘
5.DNA Sequence Assembly Algorithm and New ncRNA Gene Finding;基因组序列拼接算法及ncRNA新基因的发现
6.Identification of Novel Stress Responsible Transcription Factors Using DNA Array Hybridization;DNA点阵杂交鉴定逆境应答的转录因子新基因
7.Restriction Enzyme Mediated Integration, a New Strategy for Cloning New Genes限制酶介导整合技术:一种克隆新基因的新策略
8.Analysis of four new variant alleles at FUT2 locus;FUT2基因座4个新变异等位基因的分析
9.Identification of a Novel Human Leukocyte Antigen-A AlleleHLA新等位基因HLA-A*1127认定
10.Human Genome Project,Post-genome Research and Gene Medicine --New Century of Diagnosis,Pharmaceutics and Therapy with Gene Technique;人类基因组计划、后基因组研究与基因医学——基因诊断、基因制药与基因治疗的新世纪
11.New Allele of MyoD in Cattle牛肌分化因子MyoD的新等位基因的发现
12.Intelligence CAD Innovative Design Based on Gene Knowledge Model;基于生物基因的智能CAD创新设计研究
13.High Through-Put Genome Scanning for Novel Natural Products Exploration基于基因组扫描的新型天然产物发现
14.Genotyping System of Newcastle Disease Virus Based on Web基于Web的新城疫病毒基因分型系统
15.Primary Studies on a Novel Human Homolog ZNF324 of Drosophila zfh-1 Gene;果蝇zfh-1基因一新人同源基因ZNF324的研究初报
16.Advances of microarray analysis on plant gene expression under environmental stresses基因芯片研究植物逆境基因表达新进展
17.vanM gene cluster,a novel vancomycin resistance gene cluster found in Enterococcus faecium新型肠球菌万古霉素耐药基因簇——vanM基因簇
18.Utilization of a New Method for Replacement of araBAD Genes by T7 Gene Ⅰ通过一种新方法使T7基因Ⅰ置换araBAD基因簇
相关短句/例句

new gene新基因
1.The construction and characterization of multiple-epitopes vaccine of two new genes of Toxoplasma gondii;弓形虫新基因表位疫苗质粒的构建及鉴定
2.Objective To study the cloning of complete cDNA expression sequences on some new genes down-regulated by nourishing spleen and enriching qi, which were over-expressed in DEN-induced rat liver cancer.结果成功克隆出14个ESTs片段的含完整编码区全长或近全长cDNA序列,经Blast对比,有7个基因为新基因,已向GenBank申报,并实现登录,命名为健脾益气药物下调大鼠肝癌ZH1、ZH3、ZH8、ZH12、ZH14、ZH16、ZH17基因。
3.ObjectivesAcquire and analyze the new gene of Schistosoma japonicum — Dna J-like protein, and construct eukaryotic and prokaryotic expression vectors for studying the functions of the new gene to find new vaccine candidate for preventing schistosomiasis japonica.目的:扩增日本血吸虫新基因Sj Dna J-类似蛋白基因;构建pWR450-1/Sj Dna J-类似蛋白基因原核表达载体并进行表达;构建pcDNA3。
3)novel genes新基因
1.An inducible protein tyrosine phosphatase α(PTPα)overexpression system, which could be used as a model for studying mechanism of tumorigenesis at early stage, was used to screen novel genes in NIH3T3 cells overexpressing PTPα.利用已建立的蛋白质酪氨酸磷酸酶α(PTPα)诱导表达模型寻找与PTPα高表达导致NIH3T3细胞恶变早期相关的新基因 ,探索肿瘤早期形成的机理 。
2.A brief summary for the background,principles,methods,characteristics and types of gene chip was presented here,and the particular emphasis was placed on the application of gene chip in discovering novel genes in .简要概述了基因芯片技术的产生、原理、特点、制作方法和类型,及其在新基因发现中的应用。
3.The objective of this thesis was to isolate, characterize and physically map the novel genes on pig chromosome 12 using information derived from comparative mapping and pig EST database.本论文根据比较基因定位信息,并结合公共数据库中的EST资源,分离、定位猪12号染色体上的新基因,并对基因与部分性状进行了初步关联分析,取得了如下结果: 1。
4)novel gene Sj314C10新基因Sj314C10
5)new gene wx2新基因wx2
1.The purpose of this study is to construct a vaccine vectors carried the new gene wx2 of Toxoplasma gondii in order to provide the foundation for exploring the protective immune efficacy.目的构建弓形虫新基因wx2的真核表达质粒,以其做为弓形虫DNA疫苗研究其保护性。
6)novel gene c24新基因c24
1.Cloning of a novel gene c24 and its expression in lens epithelium cells of normal and age-related cataractous eye;新基因c24的克隆及其在正常及白内障晶状体上皮细胞中的表达
延伸阅读

基因决定植物何时抽新枝大树伸展出许多枝条在风中摇曳,这些树枝并不是随意生长出来的,而是受到基因的控制。英国和美国科学家新发现了一个基因,它决定植物什么时候在什么部位抽出新枝。英国约克大学和美国佛罗里达大学等的科学家在新一期《现代生物学》杂志上报告说,这个基因名叫MAX3,它决定着植物在特定条件下是否要长出一条旁枝,对决定植物的最终形状非常重要。调整这个基因,有可能培育出新品种植物,使园艺作物形状更美,或使农作物和树木生长更有效率,避免浪费养分。科学家在研究一种称为拟南芥的植物时,发现了这个基因。该基因发生变异的拟南芥,会长出特别多的旁枝。这显示,MAX3基因编码的蛋白质可能在植物主干生长时,起到抑制旁枝生长的作用。目前还不清楚该基因起作用的具体机制,科学家猜测,MAX3蛋白质可能与一种称为类胡萝卜素的分子结合,再将类胡萝卜素分子“切”成碎片,从而向生长中的细胞发出信号,告诉它们如何分裂。以前人们已经发现,一些称为植物生长激素和细胞因子的激素类物质能影响植物新枝的生长,但这些物质还会对植物发育起到许多其它作用。科学家认为,要精确地控制植物的形状而不影响其它特征,目前的最佳方法是从MAX3基因着手。许多观赏花木的枝条越多越好看,而小麦等农作物和用作木材的树木就要尽量少长旁枝,把养分集中在谷粒、果实或主干上。科学家说,发现MAX3基因有助于培育更好的植物品种。(源自:呼伦贝尔森防信息网)