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- 硫团簇S6 sulfur clusters
- 核糖体蛋白S6 ribosomal protein S6
- 核糖体蛋白S6激酶 ribosomal protein S6 kinase
- 核糖体s6蛋白激酶 p70 S6K
- 核糖体蛋白质S6激酶 Ribosomal protein S6 kinase
- 基因组第6片段(S6) Segment 6
- 核糖体蛋白质S6激酶类 ribosomal prolein S6 kinases
- 核糖体蛋白S6激酶1基因 Ribosomal protein S6 Kinasel gene
- 磷酸化核糖体蛋白S6激酶 P-S6K1
- 寿王坟铜矿S6水平阶段矿柱的崩落 CAVING OF NO. S6 LEVEL-PILLAR FOR INSULATING MINED-OUT AREA IN SHOUWANGFEN COPPER MINE
- S3、S6、S24、S112四个引物可区分两种鳗鱼。 . and S43, Japanese eel ,European eeland American eel can be identified and 2 of 3 eel species can beidentified with the using of the primers of 53.. S6..
- 1996年5月3日内蒙古包头西M_S6.4级地震的震源机制研究 A STUDY FOR THE MECHANISM OF M_S 6.4 EARTHQUAKE ON MAY 3,1996,AT WEST BAO TOU,NEI MONGOL
- 胰岛素和佛波酯在蛋白质合成中经不同途径激活p70 S6激酶 P70 S6 Kinase Activated by Insulin and PMA Through Distinct Pathways in Protein Synthesis
- 1993年10月26日甘、青交界托来牧场M_s6.0地震前兆异常特征的研究 STUDY ON ANOMALOUS PRECURSOR FEATURE OF THE TUOLAI EARTHQUAKE WITH M_s = 6.0 OCCURRED ON OCT.26,1993 IN BORDER REGION BETWEEN GANSU AND QINGHAI PROVINCES
- 在本实验中我们通过生物信息学分析并预测了6个纤突蛋白B细胞表位(S1 S2 S3 S4 S5 S6)。 In the study, six epitopes (S1 S2 S3 S4 S5 S6) of the spike protein of SARS-CoV were predicted by bioinformatics analysis.
- SM与LvEF之间存在对数曲线回归关系(LVEF=一3.8十35.6 in SM,二0.83,尸<0.001),05与LvEF之l’ed也存在对数曲线回归关系(LvEF=57.0+29.0 In DS,r=o.s6,尸<0.001)。 There was a logarithmic curvilinear relationship between SM and LVEF (LVEF= -3.8+35.6 In SM, r=0.83, P<0.001), as well as Ds and LVEF (LVEF= 57.0+29.0 In Ds, r=0.86, P<0.001).
- 方法:应用有限稀释法对卵巢癌细胞系SKOV3进行单细胞克隆,共分离出14个克隆亚系,根据细胞电泳率,流式细胞仪检测所得细胞周期,筛选出3个电泳率差异较大的克隆亚系(S1、S6和S14)。 Methods:Using cell clone tech nique,cell elect rophoresis and flow cytometer,we establish ed three sublines with different metast atic potential from human ovarian cancer li ne-SKOV3 (S1,S6 and S14).
- 应用浅水湖泊风生流计算的二维有限元数学模型,对玄武湖风生流进行了数值模拟,并研究了玄武湖6m/s东南风风生流的历时变化特征及4m/s6种风向(E,W,S,N,ESE,WNW)下的稳定风生湖流特征. The duration variation of the current field induced by SE wind of 6? m/s and the characteristics of stable flows under the action of wind of 4? m/s in 6 directions, including E, W, S, N, ESE, and WNW, were studied.
- 耐盐性因基因型而异 ,在供试材料中 ,棕色棉和绿色棉的耐盐性最强 ,转 Bt基因抗虫棉 3 3 B和 S6 1 77的耐盐性最差。 基因型间耐盐性差异与保护酶活性和盐离子在叶片中积累量的差异有关。 Among the tested cotton genotypes, the brown cotton and the green cotton had the highest tolerance to the salt, while the two transgenic cotton varieties had the lowest, which was closely related to the difference of POD activity and the accumulation of the ion in leaves.