首页> 外文期刊>The Plant Genome >Construction of high‐density genetic linkage map and mapping quantitative trait loci (QTL) for flowering time in autotetraploid alfalfa (Medicago sativa L.) using genotyping by sequencing
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Construction of high‐density genetic linkage map and mapping quantitative trait loci (QTL) for flowering time in autotetraploid alfalfa (Medicago sativa L.) using genotyping by sequencing

机译:用测序使用基因分型在Autotetroaploid Alfalfa(Medicago Sativa L.)中进行高密度遗传联系地图和映射定量特性基因座(QTL)的施工

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Flowering time is an important agronomic trait of alfalfa (Medicago sativa L.). Managing flowering time can produce economic benefits for farmers. To understand the genetic basis of this trait, quantitative trait loci (QTL) mapping was conducted in a full‐sib population that consisted of 392 individuals segregating based on flowering time. High density linkage maps were constructed using single nucleotide polymorphism (SNP) markers generated by genotyping‐by‐sequencing (GBS). The linkage maps contained 3,818 SNP markers on 64 linkage groups in two parents. The average marker density was 4.33 cM for Parent 1 (P1) and 1.47 cM for Parent 2 (P2). Phenotypic data for flowering time was collected for three years at one location. Twenty‐eight QTLs were identified associated with flowering time. Eleven QTLs explained more than 10% of the phenotypic variation. Among them, five main effect QTLs located on linkage group (LG) 7D of P1 and five main effect QTLs located on LG 6D of P2 were identified. Three QTLs were co‐located with other QTLs. The identified linked markers to QTLs could be used for marker‐assisted selection in breeding programs to develop new alfalfa varieties to modulate flowering time.
机译:开花时间是苜蓿(Medicago Sativa L)的重要农艺性质。管理开花时间可以为农民产生经济效益。为了了解这种特征的遗传基础,在全SIB群体中进行定量特质基因座(QTL)映射,该群体由392个个人基于开花时间进行分离。使用通过逐序列(GBS)产生的单核苷酸多态性(SNP)标记构建高密度连杆地图。连杆地图在两个父母的64个连杆组上包含3,818个标记。对于母体1(P1)和母体2的平均标记密度为4.33厘米(p1)和1.47cm(p2)。在一个地点收集了开花时间的表型数据。鉴定了与开花时间相关的二十八个QTL。 11 QTLS解释了超过10%的表型变异。其中,鉴定了位于P1和5个位于P2的LG 6D上的P1和五个主要效果QTL上的连锁组(LG)7D的五个主要效应QTL。三个QTL与其他QTL共同定位。 QTL的鉴定的链接标记可用于在育种计划中进行标记辅助选择,以开发新的苜蓿品种来调节开花时间。

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