ctDNA

网络  叶绿体基因组; 胸腺脱氧核糖核酸; 叶绿体DNA; 叶绿体脱氧核糖核酸; 小牛脱氧核糖核酸

化学



双语例句

  1. Study on the Aggregation Behavior of Cationic Porphyrins and Their Interaction with ctDNA
    水溶性阳离子卟啉与ctDNA的相互作用及其聚集行为研究
  2. When the trypsin interacts with herring sperm DNA ( hsDNA), salmen sperm DNA ( sDNA) and calf thymus DNA ( ctDNA) to form the binding products, the Resonance Rayleigh scattering ( RRS) are obvious enhanced remarkably and new RRS spectra appear.
    当胰蛋白酶与鲱鱼精DNA(hsDNA)、鲑鱼精DNA(sDNA)以及小牛胸腺DNA(ctDNA)之间发生相互作用时,共振瑞利散射(RRS)会显著增强,并产生新的RRS光谱。
  3. Extraction and Purification ctDNA in Green Leaves Vegetables
    绿色蔬菜叶绿体DNA的提取和纯化
  4. Molecular Cloning of Specific Fragments of ctDNA from Male-sterile Line of Rape
    油菜细胞质雄性不育系叶绿体DNA特异片段的分子克隆
  5. The binding reaction of DNA ( fsDNA, ctDNA) with victory blue B has been studied.
    本文研究了阳离子染料维多利亚蓝B与脱氧核糖核酸(fsDNA、ctDNA)的结合反应。
  6. CMS had a certain bearing on mtDNA and ctDNA, and the contacts were established in the united relation between the two genetic systems, cytoplasm and nuclear, which were interrelated and interdependent.
    线粒体基因组、叶绿体基因组与细胞质雄性不育性有一定的关系,这种关系是建立在质核两个遗传体系相互依存和联系的统一关系之中。
  7. Synthesis of the biotin-porphyrin conjugate and its characterization Chapter 3: The interaction of Pd ( II) TMPyP with ctDNA was studied by the UV-Vis, fluorescence and SS-RTP.
    第三章:采用固体基质室温磷光光谱、荧光光谱以及紫外可见吸收光谱法研究了钯卟啉(Pd(Ⅱ)TMPyP)与ctDNA的相互作用。
  8. Cloning of Solanum nigrum ctDNA Fragment which Contains α-subunit of ATP Synthase Gene
    龙葵叶绿体ATP合酶α-亚单位基因的克隆
  9. The interaction of DNA ( fsDNA, ctDNA) with Brilliant Green was studied by UV-visible spectrophotometry.
    用紫外-可见光谱法研究了阳离子染料灿烂绿(BrilliantGreen)与脱氧核糖核酸(fsDNA、ctDNA)相互作用的特性及分析应用。
  10. When ctDNA is used as a probe to determine PMB, the detection limit ( 3 σ) is 9.8 ng mL-1.
    当用ctDNA作探针测定PMB时,检出限(36)为9.8ng·mL-1。
  11. Because metolachlor is a chiral molecular, different enantiomers have different binding constants to ctDNA.
    由于异丙甲草胺是手性分子,不同对映体与DNA结合的强度表现出一定的差异性。
  12. Papain interacted with the major groove of ctDNA. Aromatic stacking interaction is the main reason of change of absorption spectrum and fluorescence quenching of papain.
    木瓜蛋白酶的芳香族氨基酸残基在DNA大沟槽中与它的碱基之间的芳基堆积作用是引起吸收光谱变化和荧光猝灭的主要原因。
  13. Accordingly, a novel rapid, convenient, sensitive and selective RRS method for determination of adenine was proposed and applied to detect adenine in tablet and hydrolyzates of ctDNA samples with satisfactory results.
    据此发展了一种用RRS技术快速、简便、灵敏和选择性的测定腺嘌呤的新方法。