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Use of Microarrays with Different Probe Sizes for Monitoring Gene Expression

机译:使用具有不同探针大小的微阵列监测基因表达

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Microarrays with oligonucleotides of different lengths were used to monitor gene expression at a whole-genome level. To determine what length of oligonucleotide is a better alternative to PCR-generated probes, the performance of oligonucleotide probes was systematically compared to that of their PCR-generated counterparts for 96 genes from Shewanella oneidensis MR-1 in terms of overall signal intensity, numbers of genes detected, specificity, sensitivity, and differential gene expression under experimental conditions. Hybridizations conducted at 42°C, 45°C, 50°C, and 60°C indicated that good sensitivities were obtained at 45°C for oligonucleotide probes in the presence of 50% formamide, under which conditions specific signals were detected by both PCR and oligonucleotide probes. Signal intensity increased as the length of the oligonucleotide probe increased, and the 70-mer oligonucleotide probes produced signal intensities similar to the intensities obtained with the PCR probes and detected numbers of open reading frames similar to the numbers detected with the PCR probes. PCR amplicon, 70-mer, 60-mer, and 50-mer arrays had detection sensitivities of 5.0, 25, 100, and 100 ng of genomic DNA, which were equivalent to approximately 1.9 × 106, 9.2 × 106, 3.7 × 107, and 3.7 × 107 copies, respectively, when the array was hybridized with genomic DNA. To evaluate differential gene expression under experimental conditions, S. oneidensis MR-1 cells were exposed to low- or high-pH conditions for 30 and 60 min, and the transcriptional profiles detected by oligonucleotide probes (50-mer, 60-mer, and 70-mer) were closely correlated with those detected by the PCR probes. The results demonstrated that 70-mer oligonucleotides can provide the performance most comparable to the performance obtained with PCR-generated probes.
机译:具有不同长度的寡核苷酸的微阵列用于监测全基因组水平的基因表达。为了确定寡核苷酸长度是PCR产生的探针的更好替代方法,系统地比较了寡核苷酸探针的性能与PCR产生的对应物对Shewanella oneidensis MR-1的96个基因的对应能力,包括总信号强度,实验条件下检测到的基因,特异性,敏感性和差异基因表达。在42°C,45°C,50°C和60°C进行的杂交表明,在50°F甲酰胺存在的情况下,寡核苷酸探针在45°C时可获得良好的敏感性,在此条件下,两者均检测到特定信号PCR和寡核苷酸探针。信号强度随着寡核苷酸探针的长度增加而增加,并且70聚体寡核苷酸探针产生的信号强度与使用PCR探针获得的强度相似,并且检测到的开放阅读框数量与使用PCR探针检测到的数量相似。 PCR扩增子,70聚体,60聚体和50聚体阵列的检测灵敏度分别为5.0、25、100和100 ng基因组DNA,大约相当于1.9×106、9.2×106、3.7×107,当阵列与基因组DNA杂交时,分别为3.7和107个拷贝。为了评估在实验条件下的差异基因表达,将沙门氏菌MR-1细胞暴露于低pH或高pH条件下30分钟和60分钟,并通过寡核苷酸探针(50-mer,60-mer和70-mer)与PCR探针检测到的紧密相关。结果表明70聚体的寡核苷酸可提供与PCR产生的探针所获得的性能最可比的性能。

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