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1.
Proteomic Analysis of the Effect of Pulsed Electric Field on the Protein Expression of Suspension Cultures of Taxus Chinensis;
蛋白质组学研究脉冲电场诱导对中国红豆杉细胞蛋白表达的影响
2.
Effect of Pulsed Electric Field on Cell Growth and Secondary Metabolism in Suspension Cultures of Taxus Chinensis;
脉冲电场对中国红豆杉细胞生长和次生代谢的影响
3.
Study of Taxol Metabolic Regulation Mechanism in the Cell Culture of Taxus;
红豆杉细胞培养中紫杉醇代谢调节的研究
4.
Taxane Biosynthesis Pathway and Induction Regulation in Suspension Cultures of Taxus Chinensis Var. Mairei;
南方红豆杉细胞中紫杉烷生物合成途径及其诱导调控研究
5.
Studies on the Interactions of Taxus Cuspidata Suspension Cells and Endophytic Fungi during Paclitaxel Synthesis
东北红豆杉悬浮细胞与内生真菌在紫杉醇合成中相互关系的研究
6.
Effects of Synchronization and Synergistic Induction on Taxol Content in Taxus Cells
红豆杉细胞稳定生产紫杉醇中的同步化协同诱导作用
7.
Studies on Taxol Metabolism Regulation in Taxus Chinensis Var. Mairei Cell Cultures;
南方红豆杉细胞紫杉醇代谢调节的研究
8.
Studies on Mechanism of Defense Responses of Taxus Cuspidata Cells to Taxol;
红豆杉细胞对紫杉醇防御响应的机理研究
9.
Molecular Regulation Mechanism of Taxol Biosynthesis in Taxus Media Cv.Hicksii Cell Line
红豆杉细胞合成紫杉醇的分子调控机理
10.
Study on Optimizing of Environmental Conditions of Taxus Cuspidata Cell Culture to Produce Taxol
东北红豆杉细胞培养生产紫杉醇环境优化技术
11.
Relationship Between Culture Medium and Culture Condition and Avoiding Browning in Cell Culture of Taxus
培养基和培养条件与红豆杉细胞培养中褐化的关系
12.
Study on Process of MAPK Signal Transduction of Taxus Cuspidata Cells in Immobilized Cultures Microenvironments;
固定化微环境中红豆杉细胞MAPK信号转导过程研究
13.
Study on Toxic Effects of Organic Phase on Taxus Cuspidata in Two- phase Cultures;
两相培养中有机相对红豆杉细胞毒性作用的研究
14.
Role of ERK in the Signaling of Ce~(4+)-Induced Secondary Metabolism of T. Cuspidata Cells;
ERK在Ce~(4+)诱导红豆杉细胞次生代谢过程中的信号转导作用
15.
Studies on Metabolomics in T. Cuspidata Undergoing Apoptosis Induced by Ce~(4+);
Ce~(4+)诱导东北红豆杉细胞凋亡中代谢组学初步研究
16.
Defense Response of Suspension Cultured Taxus Cell in Bubble Column Bioreactor
鼓泡塔生物反应器中悬浮培养红豆杉细胞的防御应答
17.
Tranfusion tissue is present in the leaf of yew. It is composed of three sorts of cells: transfusion tracheids, transfusion parenchyma cells, and albuminous cells.
在红豆杉的叶子中存在传输组织,它由传输细胞、输薄壁组织细胞和蛋白细胞组成。
18.
Chinese Yew and Mairei Yew can be easily differentiated from Yunnan Yew through the texture of its leaf.
中国红豆杉和美丽红豆杉可以通过叶子的质地与云南红豆杉区分开。