Genetic characterization of cysteine-rich type-b avenin-like protein coding genes in common wheat

被引:0
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作者
X. Y. Chen
X. Y. Cao
Y. J. Zhang
S. Islam
J. J. Zhang
R. C. Yang
J. J. Liu
G. Y. Li
R. Appels
G. Keeble-Gagnere
W. Q. Ji
Z. H. He
W. J. Ma
机构
[1] College of Agronomy,
[2] Northwest A & F University,undefined
[3] Australia-China Joint Centre for Wheat Improvement,undefined
[4] School of Veterinary & Life Sciences,undefined
[5] Murdoch University,undefined
[6] Crop Research Institute,undefined
[7] Shandong Academy of Agricultural Sciences/National Engineering Laboratory for Wheat and Maize/Key Laboratory of Wheat Biology and Genetic Improvement in North Yellow and Huai River Valley,undefined
[8] Ministry of Agriculture,undefined
[9] National Wheat Improvement Centre,undefined
[10] Institute of Crop Sciences,undefined
[11] Chinese Academy of Agricultural Sciences,undefined
来源
Scientific Reports | / 6卷
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摘要
The wheat avenin-like proteins (ALP) are considered atypical gluten constituents and have shown positive effects on dough properties revealed using a transgenic approach. However, to date the genetic architecture of ALP genes is unclear, making it impossible to be utilized in wheat breeding. In the current study, three genes of type-b ALPs were identified and mapped to chromosomes 7AS, 4AL and 7DS. The coding gene sequence of both TaALP-7A and TaALP-7D was 855 bp long, encoding two identical homologous 284 amino acid long proteins. TaALP-4A was 858 bp long, encoding a 285 amino acid protein variant. Three alleles were identified for TaALP-7A and four for TaALP-4A. TaALP-7A alleles were of two types: type-1, which includes TaALP-7A1 andTaALP-7A2, encodes mature proteins, while type-2, represented byTaALP-7A3, contains a stop codon in the coding region and thus does not encode a mature protein. Dough quality testing of 102 wheat cultivars established a highly significant association of the type-1 TaALP-7A allele with better wheat processing quality. This allelic effects were confirmed among a range of commercial wheat cultivars. Our research makes the ALP be the first of such genetic variation source that can be readily utilized in wheat breeding.
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