Tagging QTLs for late blight resistance and plant maturity from diploid wild relatives in a cultivated potato (Solanum tuberosum) background

Phytophthora infestans causes an economically important disease of potato called late blight. The epidemic is controlled chemically but resistant potatoes can become an environment-friendly and financially justified alternative solution. The use of diploid Solanum tuberosum derived from European tet...

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Published in:Theoretical and applied genetics Vol. 115; no. 1; pp. 101 - 112
Main Authors: SLIWKA, J, JAKUCZUN, H, LEBECKA, R, MARCZEWSKI, W, GEBHARDT, C, ZIMNOCH-GUZOWSKA, E
Format: Journal Article
Language:English
Published: Heidelberg Springer 01-06-2007
Berlin Springer Nature B.V
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Abstract Phytophthora infestans causes an economically important disease of potato called late blight. The epidemic is controlled chemically but resistant potatoes can become an environment-friendly and financially justified alternative solution. The use of diploid Solanum tuberosum derived from European tetraploid cultivars enabled the introgression of novel genes encoding foliage resistance and tuber resistance from other species into the modern cultivated potato gene pool. This study evaluated the resistance of the obtained hybrids, its quality, expression in leaflets and tubers and its relation to the length of vegetation period. We also identified genetic loci involved in late blight resistance and the length of vegetation period. A family of 156 individuals segregating for resistance to late blight was assessed by three laboratory methods: detached leaflet, tuber slice and whole tuber test, repeatedly over 5 years. Length of vegetation period was estimated by a field test over 2 years. The phenotypic distributions of all traits were close to normal. Using sequence-specific PCR markers of known chromosomal position on the potato genetic map, six quantitative trait loci (QTLs) for resistance and length of vegetation period were identified. The most significant and robust QTL were located on chromosomes III (explaining 17.3% of variance observed in whole tuber tests), IV (15.5% of variance observed in slice tests), X (15.6% of variance observed in leaflet tests) and V (19.9% of variance observed in length of vegetation period). Genetic characterization of these novel resistance sources can be valuable for potato breeders and the knowledge that the most prominent QTLs for resistance and vegetation period length do not overlap in this material is promising with respect to breeding early potatoes resistant to P. infestans.
AbstractList Phytophthora infestans causes an economically important disease of potato called late blight. The epidemic is controlled chemically but resistant potatoes can become an environment-friendly and financially justified alternative solution. The use of diploid Solanum tuberosum derived from European tetraploid cultivars enabled the introgression of novel genes encoding foliage resistance and tuber resistance from other species into the modern cultivated potato gene pool. This study evaluated the resistance of the obtained hybrids, its quality, expression in leaflets and tubers and its relation to the length of vegetation period. We also identified genetic loci involved in late blight resistance and the length of vegetation period. A family of 156 individuals segregating for resistance to late blight was assessed by three laboratory methods: detached leaflet, tuber slice and whole tuber test, repeatedly over 5 years. Length of vegetation period was estimated by a field test over 2 years. The phenotypic distributions of all traits were close to normal. Using sequence-specific PCR markers of known chromosomal position on the potato genetic map, six quantitative trait loci (QTLs) for resistance and length of vegetation period were identified. The most significant and robust QTL were located on chromosomes III (explaining 17.3% of variance observed in whole tuber tests), IV (15.5% of variance observed in slice tests), X (15.6% of variance observed in leaflet tests) and V (19.9% of variance observed in length of vegetation period). Genetic characterization of these novel resistance sources can be valuable for potato breeders and the knowledge that the most prominent QTLs for resistance and vegetation period length do not overlap in this material is promising with respect to breeding early potatoes resistant to P. infestans.
Author MARCZEWSKI, W
ZIMNOCH-GUZOWSKA, E
JAKUCZUN, H
GEBHARDT, C
SLIWKA, J
LEBECKA, R
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  surname: LEBECKA
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  surname: ZIMNOCH-GUZOWSKA
  fullname: ZIMNOCH-GUZOWSKA, E
  organization: Research Centre Mtochów, Plant Breeding and Acclimatization Institute, Platanowa 19, 05-831 Mlochow, Poland
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Issue 1
Keywords Late
Solanum tuberosum
Quantitative character
Phycomycetes
Background noise
Introgression
Tuber resistance
Fungi
Resistance
Diploidy
Dicotyledones
Angiospermae
Phytophthora infestans
Foliage resistance
Genetics
Wild plant
Spermatophyta
Agriculture
Solanaceae
Maturity
Thallophyta
Language English
License CC BY 4.0
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PublicationTitle Theoretical and applied genetics
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Springer Nature B.V
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Snippet Phytophthora infestans causes an economically important disease of potato called late blight. The epidemic is controlled chemically but resistant potatoes can...
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StartPage 101
SubjectTerms Biological and medical sciences
Classical genetics, quantitative genetics, hybrids
Cultivars
Diploids
Diploidy
Disease resistance
Foliage
Fundamental and applied biological sciences. Psychology
Gene pool
Genetics
Genetics of eukaryotes. Biological and molecular evolution
Genomics
Hybrids
Late blight
Phytophthora
Phytophthora infestans
Plant breeding
Plant Diseases - genetics
Pteridophyta, spermatophyta
Quantitative Trait Loci
Solanum tuberosum
Solanum tuberosum - genetics
Solanum tuberosum - physiology
Tubers
Vegetals
Vegetation
Title Tagging QTLs for late blight resistance and plant maturity from diploid wild relatives in a cultivated potato (Solanum tuberosum) background
URI https://www.ncbi.nlm.nih.gov/pubmed/17468842
https://www.proquest.com/docview/818847769
https://search.proquest.com/docview/19970229
https://search.proquest.com/docview/70520486
Volume 115
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