首页> 外文OA文献 >Association genetics studies on frost tolerance in wheat (Triticum aestivum L.) reveal new highly conserved amino acid substitutions in CBF-A3, CBF-A15, VRN3 and PPD1 genes
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Association genetics studies on frost tolerance in wheat (Triticum aestivum L.) reveal new highly conserved amino acid substitutions in CBF-A3, CBF-A15, VRN3 and PPD1 genes

机译:结合遗传学研究小麦(Triticum Aestivum L.)的冻胀性研究揭示了CBF-A3,CBF-A15,VRN3和PPD1基因中的新高度保守的氨基酸取代

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摘要

Abstract Background Understanding the genetic basis of frost tolerance (FT) in wheat (Triticum aestivum L.) is essential for preventing yield losses caused by frost due to cellular damage, dehydration and reduced metabolism. FT is a complex trait regulated by a number of genes and several gene families. Availability of the wheat genomic sequence opens new opportunities for exploring candidate genes diversity for FT. Therefore, the objectives of this study were to identity SNPs and insertion-deletion (indels) in genes known to be involved in frost tolerance and to perform association genetics analysis of respective SNPs and indels on FT. Results Here we report on the sequence analysis of 19 candidate genes for FT in wheat assembled using the Chinese Spring IWGSC RefSeq v1.0. Out of these, the tandem duplicated C-repeat binding factors (CBF), i.e. CBF-A3, CBF-A5, CBF-A10, CBF-A13, CBF-A14, CBF-A15, CBF-A18, the vernalisation response gene VRN-A1, VRN-B3, the photoperiod response genes PPD-B1 and PPD-D1 revealed association to FT in 235 wheat cultivars. Within six genes (CBF-A3, CBF-A15, VRN-A1, VRN-B3, PPD-B1 and PPD-D1) amino acid (AA) substitutions in important protein domains were identified. The amino acid substitution effect in VRN-A1 on FT was confirmed and new AA substitutions in CBF-A3, CBF-A15, VRN-B3, PPD-B1 and PPD-D1 located at highly conserved sites were detected. Since these results rely on phenotypic data obtained at five locations in 2 years, detection of significant associations of FT to AA changes in CBF-A3, CBF-A15, VRN-A1, VRN-B3, PPD-B1 and PPD-D1 may be exploited in marker assisted breeding for frost tolerance in winter wheat. Conclusions A set of 65 primer pairs for the genes mentioned above from a previous study was BLASTed against the IWGSC RefSeq resulting in the identification of 39 primer combinations covering the full length of 19 genes. This work demonstrates the usefulness of the IWGSC RefSeq in specific primer development for highly conserved gene families in hexaploid wheat and, that a candidate gene association genetics approach based on the sequence data is an efficient tool to identify new alleles of genes important for the response to abiotic stress in wheat.
机译:抽象背景了​​解霜冻耐受性(FT)在小麦的遗传基础(小麦Triticum aestivum L.)是用于防止由于细胞损伤,脱水和降低的代谢引起的霜的产量损失是必不可少的。 FT是由多个基因和几个基因家族的调控的复杂性状。可用性小麦基因组序列的开启探索候选基因多样性FT新的机遇。因此,本研究的目的是身份SNP和在已知参与在霜冻耐受性和以对FT各自SNP和INDEL的关联遗传学分析基因插入 - 缺失(插入缺失)。结果在这里,我们使用的中国春IWGSC以RefSeq 1.0组装19个候选基因FT小麦序列分析报告。这些中,串联重复的C-重复结合因子(CBF),即CBF-A3,CBF-A5,CBF-A10,CBF-A13,CBF-A14,CBF-A15,CBF-A18,所述春化响应基因VRN -A1,VRN-B3,光周期响应基因PPD-B1和PPD-D1在235个小麦品种显示关联FT。内六种基因(CBF-A3,CBF-A15,VRN-A1,VRN-B3,PPD-B1和PPD-D1)的氨基酸(AA)取代在重要的蛋白质结构域进行了鉴定。关于FT在VRN-A1氨基酸取代效果被证实和在CBF-A3,CBF-A15新AA取代,检测VRN-B3,PPD-B1和PPD-D1位于高度保守的位点。由于这些结果依赖于在2年内在五个位置获得的表型数据,FT的在CBF-A3,CBF-A15 AA变化显著关联的检测,VRN-A1,VRN-B3,PPD-B1和PPD-D1可以是利用标记辅助育种在冬小麦耐霜冻。结论一组用于从先前的研究中上述基因65的引物对进行blast靠在IWGSC RefSeq中导致的39个引物组合覆盖的19个基因的全长的鉴定。这项工作表明了IWGSC以RefSeq的特异性引物发展的作用在普通小麦高度保守的基因家族,并在此候选基因关联遗传学方法基于序列数据是一个有效的工具,以确定应对重要基因的新等位基因小麦非生物胁迫。

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