1)MYB transcription factorMYB转录因子
1.MYB transcription factor gene is one of the largest families in plants, which involved inregulation of secondary metabolism, responding to hormones and environmental factors,also regulation of cell differentiation, cell cycles and the formation of leaves and otherorgans.MYB转录因子基因是最大的植物转录因子基因家族之一,参与植物次生代谢调控、激素和环境因子的应答,并对细胞分化、细胞周期以及植物叶片等器官的形态建成具有重要的调节作用。
2.As one of the largest plant transcription factor families,MYB transcription factors play an important role in plant secondary metabolism,such as,responsing to hormoned and environmental factor,regulation of cell life cycle and plant morphogenesis et al.MYB转录因子作为植物中最大的转录因子家族之一,广泛参与植物次生代谢调控、激素和环境因子的应答,并对细胞周期调控、形态建成起着重要作用。
3.Results showed that GmMYBZ2 not only exhibited typical features of the R2R3-MYB transcription factors, but also had a conserved amino acid motif and a predicted zinc finger region at its C-termini.大豆(Glycine max)GmMYBZ2基因是典型的植物R2R3-MYB转录因子家族成员之一。
英文短句/例句
1.Explore the Function of Transcription Factor GmMYBJ6 from Soybean大豆MYB转录因子GmMYBJ6的功能初探
2.Cloning and Characterization of MYB Transcription Factor Genes from Soybean;大豆MYB转录因子基因的克隆及其表达研究
3.Characterization and Mutation of Soybean MYB Transcription Factor GmMYBZ2 and Its Prokaryotic Expression大豆MYB转录因子GmMYBZ2的鉴定、突变分析及原核表达
4.Cloning and molecular characteristics analysis of a MYB gene from Fagopyrum dibotrys金荞麦MYB转录因子基因FdMYBP1的克隆及分子特征分析
5.Fine Mapping of a Dominant Earliness Gene Ef-s in Rice and Some Research of a Novel Transcription Factor MYB;水稻显性早熟基因Ef-s的精细定位及一个新的MYB转录因子的研究
6.Codon Bias and Phylogenetics Analysis of MADS and MYB Transcription Factors in Rice and Arabidopsis;水稻和拟南芥MADS和MYB转录因子密码子用法及系统进化分析
7.Functional Analysis of MYB Family Transcription Factors OsMYB2 in Rice (Oryza Sativa L);水稻MYB家族转录因子OsMYB2的功能研究
8.Prediction and Analysis on Myb Transcription Factors in Phytophthora sojae大豆疫霉中Myb类转录因子的预测与分析
9.The roles of the Arabidopsis R2R3-MYB transcription factors in the stress responses拟南芥R2R3-MYB类转录因子在环境胁迫中的作用
10.Isolation and Characterization of Myb and Dof Genes in Hexaploid Wheat (Triticum Aestivum. L);普通小麦Myb和Dof转录因子家族基因的克隆和表达研究
11.Mechanism Investigation of the Transcriptional Regulation of Sp1 on Human NDRG2转录因子Sp1调控人NDRG2转录机制研究
12.Characterization of Activation Domain of the Arabidopsis Transcription Factor AtMYB103拟南芥转录因子AtMYB103的转录激活域鉴定
13.Post-transcriptional Processing of Two Functions of Unknown Transcription Factor Genes in Zea mays玉米两个功能未知转录因子基因的转录后加工
14.Study on Transformation with Gene PF40 and Transcription Factor DREB in Wheat (Triticum Aestivum L.);PF40基因与DREB转录因子转化小麦的研究
15.Cloning and Characterization of the NAC-Like Gene AhNAC2 and AhNAC3 in Peanut花生NAC转录因子AhNAC2和AhNAC3的克隆及转录特征
16.Pax4 protein can be transduced into mammalian cells转录因子Pax4蛋白质转导功能的研究
17.The Transformation of Tamarix Chinensis Lour with HS Transcription Factor and Transform Gene PUTNHX into Melilotus柽柳HS转录因子的转化和草木樨PUTNHX基因的转化
18.Transcription GetWord(" Transcription"); factors switch genes on and off in groups.转录因子相当于基因的“开关”。
相关短句/例句
MYB transcription factorsMYB转录因子
1.【Objective】 Genes encoding new MYB transcription factors were to be cloned and their function to be clarified.【目的】克隆新的植物MYB转录因子基因,进行序列分析,并对其功能进行初步鉴定。
2.The MYB transcription factors comprise one of the largest families in plant transcription factors.MYB转录因子是植物转录因子中最大的家族之一。
3.Plant MYB transcription factors are characterized by containing a structurally conserved MYB domain and play ubiquitous roles in the regulation of plant development and metabolism.植物MYB转录因子以含有保守的MYB结构域为共同特征 ,广泛参与植物发育和代谢的调节。
3)Transcriping c-myb转录因子c-myb
4)Myb transcription factorMyb转录调控因子
5)MYB factor geneMYB因子
6)Transcription factor转录因子
1.Analysis of abnormal transcription factors and pathways from gastric cancer chips;胃癌芯片数据中异常转录因子推断与信号通路分析
2.Liver-enriched transcription factors and their regulatory network of liver:research advances;肝组织中肝富集转录因子及其调控网络的研究进展
3.Expression,purification of human transcription factor USF and its DNA binding analysis in FAK promoter;人转录因子USF基因在大肠杆菌中的表达、纯化及在FAK启动子中的结合研究
延伸阅读
ρ转录终止因子分子式:CAS号:性质:又称ρ转录终止因子。在转录终止时有特定效应的一种蛋白质。ρ因子能识别终止信号,防止RNA聚合酶继续抄录,并在模板上超出终点。可是,似乎有ρ-依赖的和ρ-不依赖的两者终端位点存在。
