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Detection of QTL and QTL × environment interaction for scald resistance in a two-row × six-row cross of barley

Fériani, W. and Rezgui, S. and Cherif, M. (2020) Detection of QTL and QTL × environment interaction for scald resistance in a two-row × six-row cross of barley. CEREAL RESEARCH COMMUNICATIONS, 48 (2). pp. 187-193. ISSN 0133-3720 (print), 1788-9170 (online)

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Abstract

Leaf scald caused by Rhynchosporium secalis, is a serious disease of barley (Hordeum vulgare L.) in Tunisia. A doubledhaploid barley population, from a cross between the two-rowed ‘Roho’ and the six-rowed ‘L90’ cultivars, was evaluated for its reaction to scald under natural infection in replicated feld trials for two years. Phenotypic variation among doubled-haploid lines was signifcant for disease reaction in both environments (cropping seasons) and genotype×environment interaction was also signifcant. Heritability estimates were high in both seasons and signifcant correlation was noted between scald reactions recorded in the two seasons. Segregation of 34 single sequence repeat markers was used for quantitative trait loci mapping. Single-marker analysis was applied for individual and for combined environments to determine the efect of each molecular marker on scald resistance. In total, six QTLs with additive efects were mapped on chromosomes 2H, 3H, 4H, 6H and 7H which explained from 4.4 to 11.7% of the phenotypic variance. Among these, only QTLs linked to WMS6 (4H) and to HVM31 (6H) showed signifcant QTL×environment interactions. QTLs associated to HVM36 (2H) and to Bmag0571 (7H) were the most signifcant for scald resistance and the most insensitive to the environment. Another stable QTL was identifed, for the frst time, in the vicinity of the Vrs1 locus on the 2H chromosome. For this QTL, the two-rowed parental allele reduced disease severity. These chromosomal regions that afect scald resistance independently of the environment would be of great interest in marker-assisted selection.

Item Type: Article
Additional Information: MTA KFB támogatási szerződés alapján archiválva
Uncontrolled Keywords: Doubled-haploid population, Hordeum vulgare, Quantitative trait loci, QTL×environment interaction, Rhynchosporium secalis
Subjects: Q Science / természettudomány > QH Natural history / természetrajz > QH301 Biology / biológia > QH3015 Molecular biology / molekuláris biológia
S Agriculture / mezőgazdaság > S1 Agriculture (General) / mezőgazdaság általában
Depositing User: Katalin Andódy
Date Deposited: 21 Feb 2023 10:45
Last Modified: 21 Feb 2023 10:45
URI: http://real.mtak.hu/id/eprint/159581

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