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DLA-Based Strategies for Cloning Insertion Mutants: Cloning the gl4 Locus of Maize Using Mu Transposon Tagged Alleles

机译:基于DLA的克隆插入突变体的策略:使用Mu转座子标记的等位基因克隆玉米的gl4基因座。

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摘要

Digestion–ligation–amplification (DLA), a novel adaptor-mediated PCR-based method that uses a single-stranded oligo as the adaptor, was developed to overcome difficulties of amplifying unknown sequences flanking known DNA sequences in large genomes. DLA specifically overcomes the problems associated with existing methods for amplifying genomic sequences flanking Mu transposons, including high levels of nonspecific amplification. Two DLA-based strategies, MuClone and DLA-454, were developed to isolate Mu-tagged alleles. MuClone allows for the amplification of subsets of the numerous Mu transposons in the genome, using unique three-nucleotide tags at the 3′ ends of primers, simplifying the identification of flanking sequences that cosegregate with mutant phenotypes caused by Mu insertions. DLA-454, which combines DLA with 454 pyrosequencing, permits the efficient cloning of genes for which multiple independent insertion alleles are available without the need to develop segregating populations. The utility of each approach was validated by independently cloning the gl4 (glossy4) gene. Mutants of gl4 lack the normal accumulation of epicuticular waxes. The gl4 gene is a homolog of the Arabidopsis CUT1 gene, which encodes a condensing enzyme involved in the synthesis of very-long-chain fatty acids, which are precursors of epicuticular waxes.
机译:消化-连接-扩增(DLA)是一种新的基于衔接子介导的基于PCR的方法,该方法使用单链寡核苷酸作为衔接子,以克服扩增大基因组中已知DNA序列两侧未知序列的困难。 DLA特别克服了与现有的扩增Mu转座子侧翼基因组序列的方法相关的问题,包括高水平的非特异性扩增。开发了两种基于DLA的策略MuClone和DLA-454来分离Mu标记的等位基因。 MuClone允许在引物3'端使用独特的三核苷酸标签扩增基因组中众多Mu转座子的子集,从而简化了与由Mu插入引起的突变表型共分离的侧翼序列的鉴定。将DLA与454焦磷酸测序结合在一起的DLA-454,可以有效克隆具有多个独立插入等位基因的基因,而无需发展分离群体。通过独立克隆gl4(glossy4)基因来验证每种方法的效用。 gl4的突变体缺乏表皮蜡的正常积累。 gl4基因是拟南芥CUT1基因的同源物,其编码参与超长链脂肪酸合成的缩合酶,超长链脂肪酸是表皮蜡的前体。

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