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A next-generation marker genotyping platform (AmpSeq) in heterozygous crops: a case study for marker-assisted selection in grapevine

机译:杂合作物中的下一代标记基因分型平台(AmpSeq):以葡萄中的标记辅助选择为例

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摘要

Marker-assisted selection (MAS) is often employed in crop breeding programs to accelerate and enhance cultivar development, via selection during the juvenile phase and parental selection prior to crossing. Next-generation sequencing and its derivative technologies have been used for genome-wide molecular marker discovery. To bridge the gap between marker development and MAS implementation, this study developed a novel practical strategy with a semi-automated pipeline that incorporates trait-associated single nucleotide polymorphism marker discovery, low-cost genotyping through amplicon sequencing (AmpSeq) and decision making. The results document the development of a MAS package derived from genotyping-by-sequencing using three traits (flower sex, disease resistance and acylated anthocyanins) in grapevine breeding. The vast majority of sequence reads (⩾99%) were from the targeted regions. Across 380 individuals and up to 31 amplicons sequenced in each lane of MiSeq data, most amplicons (83 to 87%) had <10% missing data, and read depth had a median of 220–244×. Several strengths of the AmpSeq platform that make this approach of broad interest in diverse crop species include accuracy, flexibility, speed, high-throughput, low-cost and easily automated analysis.
机译:标记辅助选择(MAS)通常用于作物育种计划中,以通过在幼年期进行选择和杂交前的亲本选择来加速和增强品种的发展。下一代测序及其衍生技术已用于全基因组分子标记的发现。为了弥合标记物开发和MAS实施之间的差距,本研究开发了一种新颖的实用策略,该方法具有半自动化流程,该流程整合了与性状相关的单核苷酸多态性标记物发现,通过扩增子测序(AmpSeq)进行低成本基因分型和决策。结果证明了在葡萄育种中使用三个性状(花性,抗病性和酰化的花色苷)通过基因分型进行测序的MAS软件包的开发。绝大多数序列读取(⩾99%)来自目标区域。在MiSeq数据的每个泳道中,对380个个体和多达31个扩增子进行了测序,大多数扩增子(83%至87%)的数据丢失率小于10%,读取深度的中位数为220–244×。 AmpSeq平台的多种优势使这种方法在多种作物品种中引起广泛关注,包括准确性,灵活性,速度,高通量,低成本和易于自动化的分析。

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