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Genotyping by Sequencing for SNP-Based Linkage Analysis and Identification of QTLs Linked to Fruit Quality Traits in Japanese Plum (Prunus salicina Lindl.)

机译:基于测序的基因分型用于基于SNP的连锁分析和鉴定与李子果实品质性状相关的QTL(李属李)。

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摘要

Marker-assisted selection (MAS) in stone fruit (Prunus species) breeding is currently difficult to achieve due to the polygenic nature of the most relevant agronomic traits linked to fruit quality. Genotyping by sequencing (GBS), however, provides a large quantity of useful data suitable for fine mapping using Single Nucleotide Polymorphisms (SNPs) from a reference genome. In this study, GBS was used to genotype 272 seedlings of three F1 Japanese plum (Prunus salicina Lindl) progenies derived from crossing “98–99” (as a common female parent) with “Angeleno,” “September King,” and “September Queen” as male parents. Raw sequences were aligned to the Peach genome v1, and 42,909 filtered SNPs were obtained after sequence alignment. In addition, 153 seedlings from the “98–99” × “Angeleno” cross were used to develop a genetic map for each parent. A total of 981 SNPs were mapped (479 for “98–99” and 502 for “Angeleno”), covering a genetic distance of 688.8 and 647.03 cM, respectively. Fifty five seedlings from this progeny were phenotyped for different fruit quality traits including ripening time, fruit weight, fruit shape, chlorophyll index, skin color, flesh color, over color, firmness, and soluble solids content in the years 2015 and 2016. Linkage-based QTL analysis allowed the identification of genomic regions significantly associated with ripening time (LG4 of both parents and both phenotyping years), fruit skin color (LG3 and LG4 of both parents and both years), chlorophyll degradation index (LG3 of both parents in 2015) and fruit weight (LG7 of both parents in 2016). These results represent a promising situation for GBS in the identification of SNP variants associated to fruit quality traits, potentially applicable in breeding programs through MAS, in a highly heterozygous crop species such as Japanese plum.
机译:由于与果实品质有关的最相关农艺性状的多基因性,目前难以实现核果(李属)品种育种中的标记辅助选择(MAS)。但是,通过测序进行基因分型(GBS)提供了大量有用的数据,这些数据适用于使用来自参考基因组的单核苷酸多态性(SNP)进行精细作图。在这项研究中,GBS被用于对三种F1日本李子(李属李子)的272种幼苗进行基因型分析,这些后代来自“ 98-99”(作为雌性的母本)与“ Angeleno”,“ September King”和“ September”女王”作为男性父母。将原始序列与Peach基因组v1进行比对,并在序列比对后获得42,909个过滤的SNP。另外,使用“ 98-99”ד Angeleno”杂交的153株幼苗为每个亲本建立了遗传图谱。总共绘制了981个SNP(“ 98-99”为479个,“ Angeleno”为502),分别覆盖了688.8和647.03 cM的遗传距离。在2015年和2016年,对该后代的55株幼苗进行了表型分析,以了解不同的果实品质特征,包括成熟时间,果实重量,果实形状,叶绿素指数,皮肤颜色,果肉颜色,色泽,硬度和可溶性固形物含量。基于QTL分析的基因组区域可确定与成熟时间(父母双方和表型均年的LG4),果皮颜色(父母双方以及两年级的LG3和LG4),叶绿素降解指数(父母双方2015年的LG3)显着相关的基因组区域)和体重(2016年父母双方的LG7)。这些结果为GBS鉴定与果实品质性状相关的SNP变体提供了一种有希望的情况,可通过MAS在高度杂合的农作物物种(例如日本李子)中应用于通过MAS的育种计划。

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