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1.
Organisms can be divided into prokaryotes and EUKARYOTES, the latter having a true nucleus.
生物可被分为原核生物和真核生物,后者具一个真正的细胞核。
2.
On Exogenous Gene Expression in Prokaryotes and Eukaryotes;
外源基因在原核生物和真核生物中的表达
3.
The Eukarya contains four kingdoms, the Animalia, Plantae, Fungi, and Protoctista.
真核生物界包括4个界:动物界、植物界、真菌界和原生生物界。
4.
All fungi are eukaryotic organisms, and each fungal cell has at least one nucleus and nuclear membrane, endoplasmic reticulum, mitochondria, and secretory apparatus.
真菌是真核生物,含有核、核膜、内质网、线粒体和分泌装置。
5.
Studies on the Cloning of Halo-tolerant-related Genes from Eukaryote and Procaryote;
克隆原核及真核生物耐盐相关基因研究
6.
Progress in Functional Polyphosphate in Prokaryotic and Eukaryotic Living Organisms
多聚磷酸盐在原核和真核生物中的研究进展
7.
Progress on Transcription Factors and Theirs Methods of Study in Eukaryon
真核生物转录因子及其研究方法进展
8.
Comparative Studies on Genome & Genetic Expression and Regulatory Between Prokaryotes and Eukaryotes;
原核生物和真核生物的基因组及其基因表达调控的比较研究
9.
Expression of Porcine Insulin-Like Growth Factor Ⅰ in Prokaryotic and Eukaryotic Cells;
猪胰岛素样生长因子Ⅰ在原核与真核生物中的表达研究
10.
The Study on Function of Red Protein s Expressing in Eukaryotic Cell with Biophysis Method;
用生物物理方法研究3种Red蛋白在真核生物中的表达及定位
11.
Improving Gene Structure Prediction by Combining Multiple Sources of Evidence;
组合多重证据促进真核生物基因结构预测
12.
Research on Automatic Gene Structure Annotation System for Eukaryotic Genomes;
真核生物基因组结构自动注释系统研究
13.
Recognition of Translation Initiation Site and Splicing Site in Eukaryote Genome;
真核生物中翻译起始位点与剪接位点的识别
14.
Comprehensive Analysis of Divergent Gene Pairs in Eukaryotic Genomes;
真核生物基因组中双向转录基因对的系统研究
15.
Higher-order Structure and its Phylogenetic Application of the Eukaryotic ITS2;
真核生物ITS2高级结构及其系统发育应用
16.
Advance in study of effect factor on eukaryotic transcription initiation;
真核生物转录起始影响因子的研究进展
17.
Recent Progress of NHEJ Pathway of DSBs Repair in Eukaryotic Cells
真核生物DSBs修复有关的NHEJ途径研究进展
18.
eukaryotic expressio
真核(生物的)表达