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首页> 外文期刊>Journal of Cereal Science >Detection of puroindoline (Pina-D1 and Pinb-D1) allelic variation in wheat landraces
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Detection of puroindoline (Pina-D1 and Pinb-D1) allelic variation in wheat landraces

机译:小麦地方品种中嘌呤吲哚(Pina-D1和Pinb-D1)等位基因变异的检测

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Allelic variation at the grain texture-controlling linked loci Pina-D1 and Pinb-D1 was studied among wheat landraces from the Watkins collection (pre-green revolution) using gene specific PCR based approaches. Of the 803 landraces, 593 carried the wild type alleles at these loci and were classified as soft textured. The remaining 210 genotypes were classified as hard-textured based on the presence of mutant Pin alleles known to be associated with grain hardness. Five allelic variants of Pinb-D1 were observed. Four allelic classes Pinb-D1a, Pinb-D1b, Pinb-D1c and Pinb-D1e resulted from separate single nucleotide substitutions leading to mis-sense changes, while a single base deletion at position 213 resulted in the Pinb-D1p allele exhibiting a frame shift and consequently stop codons. These five alleles occurred in six different allelic combinations with two Pina-D1 alleles (wild type and null), i.e. Pina-D1a/Pinb-D1a, Pine-D1b/Pinb-D1a, Pina-D1a/Pinb-D1b, Pina-D1a/Pina-D1c, Pina-D1a/Pinb-D1e and Pina-D1a/Pina-D1p. The alleles identified in this study provide additional resources for breeding programs for grain texture manipulations and may also have implications in microbial pathogen defence. Near-isogenic lines carrying different alleles are currently being produced to study the effect of this genetic variation on flour processing properties. (C) 2014 Elsevier Ltd. All rights reserved.
机译:使用基于基因特异性PCR的方法,从Watkins集合(绿色革命前)的小麦地方品种中研究了谷物纹理控制连锁位点Pina-D1和Pinb-D1的等位变异。在803个地方品种中,有593个在这些位点携带野生型等位基因,被归类为质地柔软。根据已知与谷物硬度相关的突变Pin等位基因的存在,将其余210个基因型分类为硬质感。观察到了Pinb-D1的五个等位基因变体。四个等位基因类别Pinb-D1a,Pinb-D1b,Pinb-D1c和Pinb-D1e由单独的单个核苷酸取代导致错义改变而产生,而在213位的单个碱基缺失导致Pinb-D1p等位基因表现出移码从而终止密码子。这五个等位基因以六个不同的等位基因组合与两个Pina-D1等位基因(野生型和无效)出现,即Pina-D1a / Pinb-D1a,Pine-D1b / Pinb-D1a,Pina-D1a / Pinb-D1b,Pina-D1a / Pina-D1c,Pina-D1a / Pinb-D1e和Pina-D1a / Pina-D1p。在这项研究中确定的等位基因为操纵谷物纹理的育种程序提供了额外的资源,也可能对微生物病原体防御产生影响。目前正在生产带有不同等位基因的近等基因系,以研究这种遗传变异对面粉加工特性的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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