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Density matters: Comparison of array platforms for detection of copy-number variation and copy-neutral abnormalities

机译:密度很重要:比较用于检测拷贝数变异和拷贝中性异常的阵列平台

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Purpose: A combination of oligonucleotide and single-nucleotide polymorphism probes on the same array platform can detect copy-number abnormalities and copy-neutral aberrations such as uniparental disomy and long stretches of homozygosity. The single-nucleotide polymorphism probe density in commercially available platforms varies widely, which may affect the detection of copy-neutral abnormalities. Methods: We evaluated the ability of array platforms with low (Oxford Gene Technology CytoSure ISCA uniparental disomy), mid-range (Agilent custom array), and high (Affymetrix CytoScan HD) single-nucleotide polymorphism probe density to detect copy-number variation, mosaicism, uniparental isodisomy, and absence of heterozygosity in 50 clinical samples. Results: All platforms reliably detected copy-number variation, mosaicism, and uniparental isodisomy; however, absence-of-heterozygosity detection varied significantly. The low-density array called absence-of-heterozygosity regions not confirmed by the other platforms and also overestimated the length of true absence-of-heterozygosity regions. Furthermore, the low- and mid-density platforms failed to detect some small absence-of-heterozygosity regions that were identified by the high-density platform. Conclusion: Variation in single-nucleotide polymorphism density can lead to major discrepancies in the detection of and confidence in copy-neutral abnormalities. Although suitable for uniparental disomy detection, copy-number plus single-nucleotide polymorphism arrays with 30,000 or fewer unique single-nucleotide polymorphism probes miscall absence-of-heterozygosity regions due to identity by descent.
机译:目的:在同一阵列平台上结合使用寡核苷酸和单核苷酸多态性探针,可以检测拷贝数异常和拷贝中性像差,例如单亲二体性和长时间的纯合性。市售平台中的单核苷酸多态性探针密度差异很大,这可能会影响复制中性异常的检测。方法:我们评估了低平台(Oxford Gene Technology CytoSure ISCA单亲二体性),中档(Agilent自定义阵列)和高平台(Affymetrix CytoScan HD)单核苷酸多态性探针密度检测拷贝数变异的能力, 50个临床样品中存在镶嵌性,单亲等位切开和无杂合性。结果:所有平台均可靠地检测到拷贝数变异,镶嵌和单亲等轴切;然而,杂合性缺失的检测差异很大。低密度阵列称为杂合子缺失区域,未被其他平台确认,并且高估了真正的杂合子缺失区域的长度。此外,低密度和中密度平台无法检测到由高密度平台识别出的一些小的杂合缺失区域。结论:单核苷酸多态性密度的变化可导致复制中性异常检测和置信度的重大差异。尽管适用于单亲二体性检测,但是具有下降数目的30,000或更少的独特单核苷酸多态性探针的拷贝数加上单核苷酸多态性阵列由于血统相同而误称杂合缺失区域。

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