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Locus-dependent selection in crop-wild hybrids of lettuce under field conditions and its implication for GM crop development

机译:田间条件下莴苣-野生杂种的基因座选择及其对转基因作物发展的影响

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摘要

Gene escape from crops has gained much attention in the last two decades, as transgenes introgressing into wild populations could affect the latter's ecological characteristics. However, different genes have different likelihoods of introgression. The mixture of selective forces provided by natural conditions creates an adaptive mosaic of alleles from both parental species. We investigated segregation patterns after hybridization between lettuce (Lactuca sativa) and its wild relative, L. serriola. Three generations of hybrids (S1, BC1, and BC1S1) were grown in habitats mimicking the wild parent's habitat. As control, we harvested S1 seedlings grown under controlled conditions, providing very limited possibility for selection. We used 89 AFLP loci, as well as more recently developed dominant markers, 115 retrotransposon markers (SSAP), and 28 NBS loci linked to resistance genes. For many loci, allele frequencies were biased in plants exposed to natural field conditions, including over-representation of crop alleles for various loci. Furthermore, Linkage disequilibrium was locally changed, allegedly by selection caused by the natural field conditions, providing ample opportunity for genetic hitchhiking. Our study indicates that when developing genetically modified crops, a judicious selection of insertion sites, based on knowledge of selective (dis)advantages of the surrounding crop genome under field conditions, could diminish transgene persistence.
机译:在过去的二十年中,从农作物中逃逸的基因备受关注,因为转基因进入野生种群可能会影响野生种群的生态特征。但是,不同的基因有不同的渗入可能性。自然条件提供的选择性力的混合产生了来自两个亲本物种的等位基因的适应性镶嵌。我们调查了莴苣(Lactuca sativa)与其野生近缘种L. serriola杂交后的分离模式。在模仿野生父母的栖息地的栖息地中生长了三代杂种(S1,BC1和BC1S1)。作为对照,我们收获了在受控条件下生长的S1幼苗,因此选择的可能性非常有限。我们使用了89个AFLP基因座,以及最近开发的显性标记,115个反转录转座子标记(SSAP)和28个与抗性基因相关的NBS基因座。对于许多基因座,等位基因频率在暴露于自然田野条件下的植物中有偏见,包括各种等位基因作物等位基因的过量表达。此外,连锁不平衡发生了局部变化,据称是由于自然田间条件引起的选择,为遗传搭便车提供了充足的机会。我们的研究表明,在开发转基因作物时,根据田间条件下周围作物基因组的选择性(不利)知识,明智地选择插入位点可以减少转基因的持久性。

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