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Dynamic Evolution of α-Gliadin Prolamin Gene Family in Homeologous Genomes of Hexaploid Wheat

机译:六倍体小麦同源基因组中α-醇溶蛋白醇溶蛋白基因家族的动态进化

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Wheat Gli-2 loci encode complex groups of α-gliadin prolamins that are important for breadmaking, but also major triggers of celiac disease (CD). Elucidation of α-gliadin evolution provides knowledge to produce wheat with better end-use properties and reduced immunogenic potential. The Gli-2 loci contain a large number of tandemly duplicated genes and highly repetitive DNA, making sequence assembly of their genomic regions challenging. Here, we constructed high-quality sequences spanning the three wheat homeologous α-gliadin loci by aligning PacBio-based sequence contigs with BioNano genome maps. A total of 47 α-gliadin genes were identified with only 26 encoding intact full-length protein products. Analyses of α-gliadin loci and phylogenetic tree reconstruction indicate significant duplications of α-gliadin genes in the last ~2.5 million years after the divergence of the A, B and D genomes, supporting its rapid lineage-independent expansion in different Triticeae genomes. We showed that dramatic divergence in expression of α-gliadin genes could not be attributed to sequence variations in the promoter regions. The study also provided insights into the evolution of CD epitopes and identified a single indel event in the hexaploid wheat D genome that likely resulted in the generation of the highly toxic 33-mer CD epitope.
机译:小麦Gli-2基因座编码复杂的α-麦醇溶蛋白醇溶蛋白,对面包制造很重要,但也是导致腹腔疾病(CD)的主要诱因。对α-麦醇溶蛋白进化的阐明为生产具有更好最终用途特性和降低的免疫原性潜力的小麦提供了知识。 Gli-2基因座包含大量串联重复的基因和高度重复的DNA,这使得它们的基因组区域的序列组装具有挑战性。在这里,我们通过将基于PacBio的序列重叠群与BioNano基因组图谱进行比对,构建了跨越三个小麦同源α-麦醇溶蛋白基因座的高质量序列。总共鉴定出47个α-麦醇溶蛋白基因,其中只有26个编码完整的全长蛋白质产物。对α-麦醇溶蛋白基因座和系统树重建的分析表明,在A,B和D基因组发生分歧后的最后约250万年中,α-麦醇溶蛋白基因有大量重复,支持了其在不同小麦属植​​物基因组中的快速谱系非依赖性扩增。我们表明,α-麦醇溶蛋白基因表达的巨大差异不能归因于启动子区域的序列变异。该研究还提供了对CD表位进化的见解,并鉴定了六倍体小麦D基因组中的一个indel事件,可能导致了高毒性的33-mer CD表位的产生。

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