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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Application of high-resolution capillary array electrophoresis with automated fraction collection for GeneCalling (TM) analysis of the yeast genomic DNA
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Application of high-resolution capillary array electrophoresis with automated fraction collection for GeneCalling (TM) analysis of the yeast genomic DNA

机译:具有自动馏分收集功能的高分辨率毛细管阵列电泳在酵母基因组DNA的GeneCalling(TM)分析中的应用

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摘要

Capillary array instrument was applied to transcript profiling of the yeast genomic DNA using GeneCalling(TM) chemistry. The instrument integrated a 12-capillary array for DNA separation with a replaceable sieving matrix, laser-induced fluorescence detection and an automated microfraction collector. The DNA fractions, exiting the separation capillaries, were continuously deposited in a 1536-well collection plate made of agarose gel. DNA fragments recovered from selected fractions were cloned and then sequenced. Over 80% of theoretically predicted fragments could be recovered in the collected fractions, cloned and sequenced with an average redundancy of threefold. Excellent correlation of the experimentally obtained sequences with the theoretically predicted gene fragments demonstrated the suitability of capillary array electrophoresis for micropreparative recovery of DNA fragments. This approach, useful especially for rapid DNA expression profiling of unknown genes for nonsequenced organisms, demonstrates the practical capability of the prototype multicapillary fraction collector. [References: 27]
机译:使用GeneCalling TM化学方法将毛细管阵列仪器应用于酵母基因组DNA的转录谱分析。该仪器集成了一个12毛细管阵列,用于DNA分离,可更换的筛分基质,激光诱导的荧光检测和自动微分收集器。离开分离毛细管的DNA馏分连续沉积在由琼脂糖凝胶制成的1536孔收集板上。将从所选馏分中回收的DNA片段克隆并测序。可以从收集的馏分中回收超过80%的理论预测片段,进行克隆和测序,平均冗余度为三倍。实验获得的序列与理论上预测的基因片段的极好的相关性证明了毛细管阵列电泳适用于DNA片段的微制备回收。这种方法特别适用于非测序生物未知基因的快速DNA表达谱分析,证明了原型多毛细管组分收集器的实用能力。 [参考:27]

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