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首页> 外文期刊>Functional & integrative genomics >Structural organization of fatty acid desaturase loci in linseed lines with contrasting linolenic acid contents
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Structural organization of fatty acid desaturase loci in linseed lines with contrasting linolenic acid contents

机译:亚麻籽中脂肪酸去饱和酶基因座在亚麻籽中的结构组成

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Flax (Linum usitatissimum L.), the richest crop source of omega-3 fatty acids (FAs), is a diploid plant with an estimated genome size of similar to 370 Mb and is well suited for studying genomic organization of agronomically important traits. In this study, 12 bacterial artificial chromosome clones harbouring the six FA desaturase loci sad1, sad2, fad2a, fad2b, fad3a and fad3b from the conventional variety CDC Bethune and the high linolenic acid line M5791 were sequenced, analysed and compared to determine the structural organization of these loci and to gain insights into the genetic mechanisms underlying FA composition in flax. With one gene every 3.2-4.6 kb, the desaturase loci have a higher gene density than the genome's average of one gene per 7.8-8.2 kb. The gene order and orientation across the two genotypes were generally conserved with the exception of the sad1 locus that was predicted to have additional genes in CDC Bethune. High sequence conservation in both genic and intergenic regions of the sad and fad2b loci contrasted with the significant level of variation of the fad2a and fad3 loci, with SNPs being the most frequently observed mutation type. The fad2a locus had 297 SNPs and 36 indels over similar to 95 kb contrasting with the fad2b locus that had a mere seven SNPs and four indels in similar to 110 kb. Annotation of the gene-rich loci revealed other genes of known role in lipid or carbohydrate metabolic/catabolic pathways. The organization of the fad2b locus was particularly complex with seven copies of the fad2b gene in both genotypes. The presence of Gypsy, Copia, MITE, Mutator, hAT and other novel repeat elements at the desaturase loci was similar to that of the whole genome. This structural genomic analysis provided some insights into the genomic organization and composition of the main desaturase loci of linseed and of their complex evolution through both tandem and whole genome duplications.
机译:亚麻(Linum usitatissimum L.)是omega-3脂肪酸(FAs)的最丰富的农作物来源,是一种二倍体植物,估计基因组大小类似于370 Mb,非常适合研究农学上重要性状的基因组组织。在这项研究中,对来自常规CDC白求恩和高亚麻酸系M5791的六个FA去饱和酶基因座sad1,sad2,fad2a,fad2b,fad3a和fad3b的12个细菌人工染色体克隆进行了测序,分析和比较,以确定结构组织这些位点,并深入了解亚麻中FA组成的遗传机制。每个3.2-4.6 kb有一个基因,去饱和酶基因座的基因密度高于基因组平均每个7.8-8.2 kb一个基因的基因密度。除sad1基因座被预测在CDC Bethune中具有其他基因外,跨这两个基因型的基因顺序和方向通常是保守的。在sad和fad2b基因座的基因和基因间区域中的高序列保守性与fad2a和fad3基因座的显着变化水平形成对比,其中SNP是最常观察到的突变类型。 fad2a基因座的297个SNP和36个indel超过95 kb,而fad2b基因座的仅有7个SNP和4个indel约110 kb。富含基因位点的注释揭示了在脂质或碳水化合物代谢/分解代谢途径中具有已知作用的其他基因。 fad2b基因座的组织特别复杂,两种基因型中都有7个拷贝的fad2b基因。在去饱和酶基因座处的吉普赛人,科皮亚人,MITE,突变者,hAT和其他新的重复元件的存在与整个基因组的相似。这种结构基因组学分析为亚麻籽主要去饱和酶基因座的基因组组织和组成以及通过串联和全基因组重复的复杂进化提供了一些见识。

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