解链温度
- 网络melting temperature;melting temperature Tm
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一个纯合子样品经过PCR扩增之后得到的是同源双链,G:C和A:T之间单个碱基的变化的纯合突变对片段的解链温度有影响。
A homozygous sample after PCR amplification , contains a homoduplex , G : C and A : T single base changes have an impact in the melting temperature of the fragment .
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以l-色氨酸为原料,设计并合成b-咔啉-3-甲酰胺类化合物,利用粘度滴定、Tm(解链温度)测定及紫外光谱滴定法以及微量量热等方法测定其与CT-DNA的作用。
The interactions of these compounds with CT-DNA were determined by the viscometric titration assay and Tm ( melting temperature ) value assay . Binding strengths were evaluated by spectrophotometric titration experiment and microcalorimetric measurement .
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它们DNA的解链温度相同。
The thermal denaturation temperature of their DNAs was same .
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双链DNA解链温度的特征自组织预测方法(英文)
Prediction melting temperature of DNA duplex by self-organization feature map ( SOFM )
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双链DNA解链温度的最小二乘支持向量机预测方法
Prediction of melting temperature of DNA duplex by least squares support vector machine
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基于BP神经网络的DNA解链温度预测模型
Predicting Melting Temperature of DNA Duplex by BP Neural Network
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根据解链温度计算出噬菌体DNA的G+C含量在42.9与72.1mol%之间。
The G + C content of the DNAs ranged between 42.9 and 72.1 mol % as estimated from their melting temperatures .
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利用分形和分维理论研究DNA的复制机理并计算BDNA共聚物中氢键的解链温度。
The copy principle of DNA is studied by using fractal and fractal dimension theory and hydrogen-bond melting temperature in BDNA copolymers calculated .
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当片段一定的情况下,单个碱基的差异能反映在解链温度上,表现在熔解曲线的差异。
A single base change can be reflected in the melting temperature difference , the performance difference in the melting curve .
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当片段在一定条件下,单个碱基的变化对片段的解链温度有影响,通过高分辨率和灵敏度的检测技术可以检测出来。
When the fragment under certain conditions , single base changes have an impact in the melting temperature of the fragment , and it can be detected through the high resolution and sensitivity detection technology .
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方法根据DNA二聚体的热力学性质,在DNA阵列芯片上测定其解链曲线,用数学的方法获得其解链温度(Tm)值,再根据Tm值进行SNP分析。
METHODS Melting curves were determined in the DNA microarray , in terms of the thermodynamic traits of DNA duplexes , and the Tm values was calculated for SNP analysis .