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Identification of QTLs associated with Sclerotinia blight resistance in peanut (Arachis hypogaea L.)
by
Baring, Michael R.
, Septiningsih, Endang M.
, Cason, John M.
, Liang, Yuya
in
Agricultural production
/ Agriculture
/ Arachis hypogaea
/ Biomedical and Life Sciences
/ Blight
/ chromosome mapping
/ Crop diseases
/ Crops
/ Cultivars
/ Deoxyribonucleic acid
/ Disease resistance
/ DNA
/ DNA sequencing
/ evolution
/ Experiments
/ Field tests
/ Gene mapping
/ Genomes
/ Humidity
/ Inbreeding
/ leaf spot
/ Leafspot
/ Legumes
/ Life Sciences
/ Peanuts
/ phenotypic variation
/ Phenotypic variations
/ Plant breeding
/ Plant Genetics and Genomics
/ Plant Physiology
/ Plant Sciences
/ Plant Systematics/Taxonomy/Biogeography
/ Population
/ Quantitative trait loci
/ Research Article
/ Sclerotinia minor
/ Single-nucleotide polymorphism
/ Texas
2021
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Identification of QTLs associated with Sclerotinia blight resistance in peanut (Arachis hypogaea L.)
by
Baring, Michael R.
, Septiningsih, Endang M.
, Cason, John M.
, Liang, Yuya
in
Agricultural production
/ Agriculture
/ Arachis hypogaea
/ Biomedical and Life Sciences
/ Blight
/ chromosome mapping
/ Crop diseases
/ Crops
/ Cultivars
/ Deoxyribonucleic acid
/ Disease resistance
/ DNA
/ DNA sequencing
/ evolution
/ Experiments
/ Field tests
/ Gene mapping
/ Genomes
/ Humidity
/ Inbreeding
/ leaf spot
/ Leafspot
/ Legumes
/ Life Sciences
/ Peanuts
/ phenotypic variation
/ Phenotypic variations
/ Plant breeding
/ Plant Genetics and Genomics
/ Plant Physiology
/ Plant Sciences
/ Plant Systematics/Taxonomy/Biogeography
/ Population
/ Quantitative trait loci
/ Research Article
/ Sclerotinia minor
/ Single-nucleotide polymorphism
/ Texas
2021
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Identification of QTLs associated with Sclerotinia blight resistance in peanut (Arachis hypogaea L.)
by
Baring, Michael R.
, Septiningsih, Endang M.
, Cason, John M.
, Liang, Yuya
in
Agricultural production
/ Agriculture
/ Arachis hypogaea
/ Biomedical and Life Sciences
/ Blight
/ chromosome mapping
/ Crop diseases
/ Crops
/ Cultivars
/ Deoxyribonucleic acid
/ Disease resistance
/ DNA
/ DNA sequencing
/ evolution
/ Experiments
/ Field tests
/ Gene mapping
/ Genomes
/ Humidity
/ Inbreeding
/ leaf spot
/ Leafspot
/ Legumes
/ Life Sciences
/ Peanuts
/ phenotypic variation
/ Phenotypic variations
/ Plant breeding
/ Plant Genetics and Genomics
/ Plant Physiology
/ Plant Sciences
/ Plant Systematics/Taxonomy/Biogeography
/ Population
/ Quantitative trait loci
/ Research Article
/ Sclerotinia minor
/ Single-nucleotide polymorphism
/ Texas
2021
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Identification of QTLs associated with Sclerotinia blight resistance in peanut (Arachis hypogaea L.)
Journal Article
Identification of QTLs associated with Sclerotinia blight resistance in peanut (Arachis hypogaea L.)
2021
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Overview
Sclerotinia blight caused by
Sclerotinia minor
(Jagger) is a significant threat to peanut production; therefore varietal improvement toward this disease is needed. To date, there have been no reported quantitative trait locus (QTL) associated with Sclerotinia blight resistance in peanut. Hence, the objective of this study was to identify QTLs for Sclerotinia blight resistance. A total of 90 F
2:6
recombinant inbred lines, derived from a released cultivar Tamrun OL07 and a breeding line Tx964117, were used as mapping population and field experiments were conducted in 2010, 2012 and 2018 at the Texas A&M AgriLife Research and Extension Center at Stephenville, Texas. A genetic map was developed using 1211 SNP markers based on double digest restriction-site associated DNA sequencing (ddRAD-Seq). In total, seven QTLs were identified, two QTLs from 2010 and five QTLs from 2018, with LOD score values of 3.2 to 7.2 and explaining 6.6–25.6% phenotypic variance. Among these QTLs, three were detected in common by WinQTLCart and R/qtl. Interestingly, one of the QTLs coincides with a previously reported peanut Leaf spot resistance QTL. The findings from this study not only provide insights into disease resistant QTLs in peanut but can also be used as potential targets for breeding programs to enhance Sclerotinia blight resistance through molecular breeding.
Publisher
Springer Netherlands,Springer Nature B.V
Subject
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