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Maize Inbreds Exhibit High Levels of Copy Number Variation (CNV) and Presence/Absence Variation (PAV) in Genome Content

机译:玉米自交系在基因组含量上表现出高水平的拷贝数变异(CNV)和存在/不存在变异(PAV)

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摘要

Following the domestication of maize over the past ∼10,000 years, breeders have exploited the extensive genetic diversity of this species to mold its phenotype to meet human needs. The extent of structural variation, including copy number variation (CNV) and presence/absence variation (PAV), which are thought to contribute to the extraordinary phenotypic diversity and plasticity of this important crop, have not been elucidated. Whole-genome, array-based, comparative genomic hybridization (CGH) revealed a level of structural diversity between the inbred lines B73 and Mo17 that is unprecedented among higher eukaryotes. A detailed analysis of altered segments of DNA conservatively estimates that there are several hundred CNV sequences among the two genotypes, as well as several thousand PAV sequences that are present in B73 but not Mo17. Haplotype-specific PAVs contain hundreds of single-copy, expressed genes that may contribute to heterosis and to the extraordinary phenotypic diversity of this important crop.
机译:在过去约10,000年的玉米驯化之后,育种者已经利用该物种广泛的遗传多样性来塑造其表型,以满足人类的需求。尚未阐明结构变异的程度,包括拷贝数变异(CNV)和存在/不存在变异(PAV),它们被认为有助于这种重要农作物的非凡表型多样性和可塑性。全基因组,基于阵列的比较基因组杂交(CGH)显示出自交系B73和Mo17之间的结构多样性水平在高等真核生物中是空前的。对DNA的改变的片段进行的详细分析保守地估计,在两个基因型之间有数百个CNV序列,而在B73中却存在Mo17中的数千个PAV序列。单倍型特异性PAV包含数百个单拷贝表达基因,可能会导致杂种优势和这种重要农作物非凡的表型多样性。

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