生物
基因分型
遗传学
数量性状位点
孟德尔遗传
植物抗病性
单核苷酸多态性
分子育种
基因座(遗传学)
人口
遗传多样性
基因型
全基因组关联研究
深度测序
基因组
基因
人口学
社会学
作者
Ismail Rabbi,Martha T. Hamblin,Melaku Gedil,Peter Kulakow,Morag Ferguson,Andrew Ikpan,Delphine Ly,Jean‐Luc Jannink
出处
期刊:Crop Science
[Wiley]
日期:2014-07-01
卷期号:54 (4): 1384-1396
被引量:47
标识
DOI:10.2135/cropsci2013.07.0482
摘要
ABSTRACT Cassava ( Manihot esculenta L.) is one of the most important food crops in the tropics, but yields are far below their potential. The gene pool of cassava contains natural genetic diversity relevant to many important breeding goals, but breeding progress has been slow, partly because of insufficient genomic resources. As a first step toward implementing genomewide genetic studies that will facilitate rapid genetic gain through breeding, we genotyped‐by‐sequencing a set of 182 full‐sibs population of cassava that segregated in several traits: resistance to the cassava mosaic disease (CMD) and yield under CMD pressure; increased carotenoid content in storage roots; color of stem exterior and anthocyanin pigmentation in the petioles, inner root skin, and apical leaves. Employing a rare‐cutting restriction enzyme, Pst I, in a genotyping‐by‐sequencing (GBS) library preparation, we obtained 2478 segregating single nucleotide polymorphisms (SNPs), of which 1257 passed standard filtering for missing genotypes and deviation from expected genotypic frequencies. We mapped 772 SNPs across 19 linkage groups and anchored 313 unique scaffolds from the version 4.1 of the cassava genome assembly. Most of the studied morphological traits as well as resistance to CMD and root carotenoid content showed qualitative inheritance. As expected, quantitative trait loci analysis for these traits revealed single loci surrounded by small confidence intervals. Yield under CMD was associated with the CMD resistance locus. We show that GBS is a powerful genotyping tool that provides a sufficient number of markers for unraveling the genetic architecture of Mendelian traits in cassava in addition to the development of a robust genetic map that can help anchor unassembled genomic scaffolds.
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