基因芯片(genechip)按其功能分为基因表达芯片(geneexpression microarray)和基因测序芯片(DNA sequencing chip)两类。其以一种系统、整体的方法进行研究,可整体宏观地研究生物体基因的表达和功能。
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Recent advances in the field, including the development of high-speed DNA sequencing devices and chip-based probes, will allow researchers to sequence much larger amounts of genetic material faster.
近期该领域内的进展,包括高速dna测序装置和基于芯片探针技术的问世,将赋予研究人员更快的为更大数量遗传物质测序的能力。
Because the probe of 517 rifampin-resistant did not be dotted on the gene chip, only sites of 518 and 526 mutations were detected, which were consistent with the results of DNA sequencing.
另有两株为517和518、526和517位双位点突变,因为芯片上未点517位突变的探针,所以只检测到518和526位的突变,该突变与测序结果完全一致。
The structure principle of DNA biosensor, DNA chip, DNA sequencing technique, pooled DNA, Laboratory on chip (LOC) are introduced in this paper.
本文简要介绍了其中DNA生物传感器、DNA芯片、DNA测序技术、混合DNA样品池、微芯片实验室的结构原理。
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