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首页> 外文期刊>Applied and Environmental Microbiology >A General Framework for Designing and Validating Oligomer-Based DNA Microarrays and Its Application to Clostridium acetobutylicum
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A General Framework for Designing and Validating Oligomer-Based DNA Microarrays and Its Application to Clostridium acetobutylicum

机译:设计和验证基于寡聚物的DNA芯片的通用框架及其在丙酮丁醇梭菌中的应用

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While DNA microarray analysis is widely accepted as an essential tool for modern biology, its use still eludes many researchers for several reasons, especially when microarrays are not commercially available. In that case, the design, construction, and use of microarrays for a sequenced organism constitute substantial, time-consuming, and expensive tasks. Recently, it has become possible to construct custom microarrays using industrial manufacturing processes, which offer several advantages, including speed of manufacturing, quality control, no up-front setup costs, and need-based microarray ordering. Here, we describe a strategy for designing and validating DNA microarrays manufactured using a commercial process. The 22K microarrays for the solvent producer Clostridium acetobutylicum ATCC 824 are based on in situ-synthesized 60-mers employing the Agilent technology. The strategy involves designing a large library of possible oligomer probes for each target (i.e., gene or DNA sequence) and experimentally testing and selecting the best probes for each target. The degenerate C. acetobutylicum strain M5 lacking the pSOL1 megaplasmid (with 178 annotated open reading frames [genes]) was used to estimate the level of probe cross-hybridization in the new microarrays and to establish the minimum intensity for a gene to be considered expressed. Results obtained using this microarray design were consistent with previously reported results from spotted cDNA-based microarrays. The proposed strategy is applicable to any sequenced organism.
机译:尽管DNA微阵列分析已被广泛接受为现代生物学的基本工具,但由于多种原因,它的使用仍使许多研究人员望而却步,尤其是当微阵列无法商业获得时。在这种情况下,用于测序生物的微阵列的设计,构建和使用构成了实质性,耗时且昂贵的任务。最近,使用工业制造工艺来构建定制的微阵列已经成为可能,其提供了多个优势,包括制造速度,质量控制,无前期安装成本以及基于需求的微阵列订购。在这里,我们描述了一种设计和验证使用商业流程制造的DNA微阵列的策略。溶剂生产商丙酮丁醇梭菌ATCC 824的22K微阵列基于采用安捷伦技术的原位合成60聚体。该策略涉及为每个靶标(即基因或DNA序列)设计可能的寡聚体探针的大型文库,并通过实验测试并为每个靶标选择最佳探针。缺少pSOL1巨质粒(带有178个带注释的开放阅读框[基因])的简并乙酰丙酮丁酸梭菌菌株M5用于评估新微阵列中探针交叉杂交的水平,并确定要表达的基因的最小强度。使用这种微阵列设计获得的结果与以前报道的基于斑点cDNA的微阵列的结果一致。提出的策略适用于任何测序生物。

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