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Variability in glutenin subunit composition of Mediterranean durum wheat germplasm and its relationship with gluten strength

The allelic composition at five glutenin loci was assessed by one-dimensional sodium dodecyl sulphate polyacrylamide gel electrophoresis (1D SDS–PAGE) on a set of 155 landraces (from 21 Mediterranean countries) and 18 representative modern varieties. Gluten strength was determined by SDS-sedimentati...

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Autores principales: NAZCO, R., PEÑA, R. J., AMMAR, K., VILLEGAS, D., CROSSA, J., MORAGUES, M., ROYO, C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cambridge University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4003854/
https://www.ncbi.nlm.nih.gov/pubmed/24791017
http://dx.doi.org/10.1017/S0021859613000117
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author NAZCO, R.
PEÑA, R. J.
AMMAR, K.
VILLEGAS, D.
CROSSA, J.
MORAGUES, M.
ROYO, C.
author_facet NAZCO, R.
PEÑA, R. J.
AMMAR, K.
VILLEGAS, D.
CROSSA, J.
MORAGUES, M.
ROYO, C.
author_sort NAZCO, R.
collection PubMed
description The allelic composition at five glutenin loci was assessed by one-dimensional sodium dodecyl sulphate polyacrylamide gel electrophoresis (1D SDS–PAGE) on a set of 155 landraces (from 21 Mediterranean countries) and 18 representative modern varieties. Gluten strength was determined by SDS-sedimentation on samples grown under rainfed conditions during 3 years in north-eastern Spain. One hundred and fourteen alleles/banding patterns were identified (25 at Glu-1 and 89 at Glu-2/Glu-3 loci); 0·85 of them were in landraces at very low frequency and 0·72 were unreported. Genetic diversity index was 0·71 for landraces and 0·38 for modern varieties. All modern varieties exhibited medium to strong gluten type with none of their 13 banding patterns having a significant effect on gluten-strength type. Ten banding patterns significantly affected gluten strength in landraces. Alleles Glu-B1e (band 20), Glu-A3a (band 6), Glu-A3d (bands 6 + 11), Glu-B3a (bands 2 + 4+15 + 19) and Glu-B2a (band 12) significantly increased the SDS-value, and their effects were associated with their frequency. Two alleles, Glu-A3b (band 5) and Glu-B2b (null), significantly reduced gluten strength, but only the effect of the latter locus could be associated with its frequency. Only three rare banding patterns affected gluten strength significantly: Glu-B1a (band 7), found in six landraces, had a negative effect, whereas banding patterns 2 + 4+14 + 15 + 18 and 2 + 4+15 + 18 + 19 at Glu-B3 had a positive effect. Landraces with outstanding gluten strength were more frequent in eastern than in western Mediterranean countries. The geographical pattern displayed from the frequencies of Glu-A1c is discussed.
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spelling pubmed-40038542014-04-29 Variability in glutenin subunit composition of Mediterranean durum wheat germplasm and its relationship with gluten strength NAZCO, R. PEÑA, R. J. AMMAR, K. VILLEGAS, D. CROSSA, J. MORAGUES, M. ROYO, C. J Agric Sci Crops and Soils Research Papers The allelic composition at five glutenin loci was assessed by one-dimensional sodium dodecyl sulphate polyacrylamide gel electrophoresis (1D SDS–PAGE) on a set of 155 landraces (from 21 Mediterranean countries) and 18 representative modern varieties. Gluten strength was determined by SDS-sedimentation on samples grown under rainfed conditions during 3 years in north-eastern Spain. One hundred and fourteen alleles/banding patterns were identified (25 at Glu-1 and 89 at Glu-2/Glu-3 loci); 0·85 of them were in landraces at very low frequency and 0·72 were unreported. Genetic diversity index was 0·71 for landraces and 0·38 for modern varieties. All modern varieties exhibited medium to strong gluten type with none of their 13 banding patterns having a significant effect on gluten-strength type. Ten banding patterns significantly affected gluten strength in landraces. Alleles Glu-B1e (band 20), Glu-A3a (band 6), Glu-A3d (bands 6 + 11), Glu-B3a (bands 2 + 4+15 + 19) and Glu-B2a (band 12) significantly increased the SDS-value, and their effects were associated with their frequency. Two alleles, Glu-A3b (band 5) and Glu-B2b (null), significantly reduced gluten strength, but only the effect of the latter locus could be associated with its frequency. Only three rare banding patterns affected gluten strength significantly: Glu-B1a (band 7), found in six landraces, had a negative effect, whereas banding patterns 2 + 4+14 + 15 + 18 and 2 + 4+15 + 18 + 19 at Glu-B3 had a positive effect. Landraces with outstanding gluten strength were more frequent in eastern than in western Mediterranean countries. The geographical pattern displayed from the frequencies of Glu-A1c is discussed. Cambridge University Press 2014-06 2013-02-28 /pmc/articles/PMC4003854/ /pubmed/24791017 http://dx.doi.org/10.1017/S0021859613000117 Text en © Cambridge University Press 2013 The online version of this article is published within an Open Access environment subject to the conditions of the Creative Commons Attribution-NonCommercial-ShareAlike licence <http://creativecommons.org/licenses/by-nc-sa/2.5/>. The written permission of Cambridge University Press must be obtained for commercial re-use.
spellingShingle Crops and Soils Research Papers
NAZCO, R.
PEÑA, R. J.
AMMAR, K.
VILLEGAS, D.
CROSSA, J.
MORAGUES, M.
ROYO, C.
Variability in glutenin subunit composition of Mediterranean durum wheat germplasm and its relationship with gluten strength
title Variability in glutenin subunit composition of Mediterranean durum wheat germplasm and its relationship with gluten strength
title_full Variability in glutenin subunit composition of Mediterranean durum wheat germplasm and its relationship with gluten strength
title_fullStr Variability in glutenin subunit composition of Mediterranean durum wheat germplasm and its relationship with gluten strength
title_full_unstemmed Variability in glutenin subunit composition of Mediterranean durum wheat germplasm and its relationship with gluten strength
title_short Variability in glutenin subunit composition of Mediterranean durum wheat germplasm and its relationship with gluten strength
title_sort variability in glutenin subunit composition of mediterranean durum wheat germplasm and its relationship with gluten strength
topic Crops and Soils Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4003854/
https://www.ncbi.nlm.nih.gov/pubmed/24791017
http://dx.doi.org/10.1017/S0021859613000117
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