Construction of a SNP-based linkage map and identification of QTLs for woody biomass-related traits using an interspecific F2 population derived from Jatropha curcas ×  Jatropha integerrima

被引:0
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作者
Kularb Laosatit
Kitiya Amkul
Prakit Somta
Taeyoung Lee
Sangrea Shim
Suk-Ha Lee
Peerasak Srinives
机构
[1] Kasetsart University,Department of Agronomy, Faculty of Agriculture at Kamphaeng Saen
[2] Kasetsart University,Center for Advanced Studies for Agriculture and Food, Kasetsart University Institute for Advanced Studies
[3] Seoul National University,Department of Agriculture, Forestry and Bioresources and Research Institute of Agriculture and Life Sciences
[4] Macrogen Inc.,Bioinformatics Institute
[5] Kangwon National University,Department of Forest Resources, College of Forest and Environmental Sciences
[6] Seoul National University,Plant Genomics and Breeding Institute
[7] The Royal Society of Thailand,Academy of Science
来源
Euphytica | 2024年 / 220卷
关键词
GBS; Biomass; QTL; Jatropha; Segregation distortion;
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学科分类号
摘要
Jatropha curcas (known as jatropha and physic nut) can be used as an alternative source for biodiesel and biomass production. However, conventional breeding of J. curcas needs time, labor and land for characterization and evaluation of the progenies owing to its perennial growth habit. Quantitative trait loci (QTL) mapping can help identifying marker-trait association and accelerate breeding process of perennial crops through marker-assisted selection. However, the genetic basis for woody biomass improvement in jatropha has not yet been studied. In this manuscript, we report the construction of a SNP-based linkage map and detection of QTLs for woody-biomass-related traits using an F2 population of the interspecific cross between J. curcas and Jatrophaintegerrima. A high-density genetic linkage map containing 2,179 SNPs was constructed. As high as 89.26% of the SNP markers developed from these interspecific progenies expressed significant segregation distortion. Most of the distorted markers showed neither gametophytic nor zygotic selection, except those on linkage groups 3, 5 and 6 which showed gametophytic and zygotic selection. The F2 population showed high variation and transgressive segregation for plant height, canopy width and wood density. QTL analyses detected 5, 8, and 7 loci for plant height, canopy width, and wood density, respectively. The SNPs linked to these QTLs could be incorporated into marker-assisted breeding to maximize the selection gain in jatropha biomass breeding.
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