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BioMark MX/HX Genetic Analysis System

BioMark MX/HX Genetic Analysis System
BioMark MX/HX 遗传分析系统
批准号:
7794529
负责人:
JEANETTE Christine PAPP
金额:
$24.77万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-11-26 至 2010-11-25

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中文摘要
翻译
描述(由申请人提供):几乎没有争议的是,下一代测序已经在基因组学工具包中添加了一个宝贵的新工具,并且正在引起基因组研究设计的范式转变。下一代测序技术使人们能够更深入地研究基因组的结构和功能,使这项技术广泛应用于科学界势在必行。为此,加州大学洛杉矶分校目前通过人类遗传学核心实验室向研究界提供四种下一代测序技术:两台Illumina基因组分析仪(Solexas),一台Applied Biosystems SOLiD和一台罗氏GS- FLX(454)。加州大学洛杉矶分校有许多正在进行的研究项目使用这项技术,而且在不久的将来,大量从事生物医学研究的科学家将受益于这项技术。然而,样品的预处理已成为一个瓶颈。DNA文库制备是在基因组测序仪上分析样品之前的一个关键且耗时的步骤。要求的BioMark MX/HX遗传分析系统具有Illumina, SOLiD和Roche测序仪的库制备试剂盒。这些试剂盒大大提高了库准备的准确性和速度,从而提高了下游数据质量。生物标记系统还使用了DNA起始材料的一小部分作为其他可用的方法,节省了宝贵的DNA样本,并允许分析以前太小而无法分析的样本。快速分析极少量DNA的能力将是本提案中的两个项目的特别优势,这两个项目是流感快速监测和研究中心的一部分,该中心调查禽流感的分布和传播风险,这是一个关键的公共卫生问题,需要快速、高通量测序。生物标记系统的第二个关键检测是高通量单细胞基因表达。这项检测对人类胎儿生殖细胞发育的研究至关重要,对加州大学洛杉矶分校Broad干细胞研究中心(BSCRS)和琼森综合癌症中心(JCCC)的许多Core用户也很有价值。目前,校园里没有仪器可以在生物标记上进行单细胞分析。该系统将为加州大学洛杉矶分校的研究界做出宝贵的贡献,为加州大学洛杉矶分校的生物医学研究进入基因组发现的下一个时代提供必要的高通量基因组技术。
英文摘要
DESCRIPTION (provided by applicant): There is little debate that Next Generation Sequencing has added an invaluable new tool in the genomics toolkit, and is causing a paradigm shift in the design of genomic studies. Next Generation Sequencing is enabling a deeper examination into the structure and function of the genome, and it is imperative to make this technology widely available to the scientific community. To this end, UCLA currently offers four Next Generation Sequencing technologies to the research community through the Human Genetics Core laboratories: two Illumina Genome Analyzers (Solexas), one Applied Biosystems SOLiD, and one Roche GS- FLX (454). There are many ongoing research projects at UCLA using this technology, and a large community of scientists engaged in biomedical research for whom this technology will be beneficial in the very near future. However, preprocessing of samples has become a bottleneck. DNA library preparation is a critical and time- consuming step before samples can be analyzed on the genome sequencers. The requested BioMark MX/HX Genetic Analysis System has library preparation kits for the Illumina, SOLiD, and Roche sequencers. These kits offer great improvements in accuracy and speed of library preparation, which in turn improves downstream data quality. The BioMark System also uses a fraction of the amount of DNA starting material as other available methods, saving precious DNA samples and allowing analysis of samples previously too small to analyze. The ability to rapidly analyze very small amounts of DNA will be a particular advantage to the two projects in this proposal that are part of the Center for Rapid Influenza Surveillance and Research which investigates the distribution and transmission risks of avian influenza, a critical public health issue requiring rapid, high-throughput sequencing. A second key assay possible on the BioMark System is high-throughput single cell gene expression. This assay is critical to one major user's research into human fetal germ cell development, and will be valuable to many of the Core's users from UCLA's Broad Stem Cell Research Center (BSCRS) and Jonsson Comprehensive Cancer Center (JCCC). There is currently no instrument on campus that can perform the type of single cell assay possible on the BioMark. This System will make a valuable contribution to the UCLA research community, offering the types of high-throughput genomic technologies necessary to move biomedical research at UCLA into the next era of genomic discovery.
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