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Genetic Admixture in the Population of Wild Apple (

机译:野生苹果群中的遗传混合物(

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摘要

There is growing attention given to gene flow between crops and the wild relatives as global landscapes have been rapidly converted into agricultural farm fields over the past century. Crop-to-wild introgression may advance the extinction risks of rare plants through demographic swamping and/or genetic swamping. Malus sieversii, the progenitor of the apple, is exclusively distributed along the Tien Shan mountains. Habitat fragmentation and hybridization between M. sieversii and the cultivated apples have been proposed to be the causal mechanism of the accelerated extinction risk. We examined the genetic diversity pattern of eleven wild and domesticated apple populations and assessed the gene flow between M. sieversii and the cultivated apples in Kazakhstan using thirteen nuclear microsatellite loci. On average, apple populations harbored fairly high within-population diversity, whereas population divergences were very low suggesting likely influence of human-mediated dispersal. Assignment results showed a split pattern between the cultivated and wild apples and frequent admixture among the apple populations. Coupled with the inflated contemporary migration rates, the admixture pattern might be the signature of increased human intervention within the recent past. Our study highlighted the prevalent crop to wild gene flow of apples occurring in Kazakhstan, proposing an accelerated risk of genetic swamping.
机译:随着全球景观在过去的世纪过去迅速转换为农业农场,越来越关注农作物和野生亲属之间的注意力。作物对野生血栓球可能通过人口沼泽和/或遗传沼泽来推进稀有植物的消光风险。苹果祖先的Malus Sieversii专门分布在天山山脉沿着天山山脉。已提出栖息地分散和培养苹果之间的杂交,是加速灭绝风险的因果机制。我们研究了十六核微卫星基因座的11野生和驯化苹果种群的遗传多样性模式,并评估了哈萨克斯坦的M. Sieversii和栽培苹果之间的基因流动。平均而言,苹果种群遭到相当高的人口群体多样性,而人口分歧非常低,表明人类介导的分散的可能影响。作业结果表明,栽培和野生苹果之间的分裂模式以及苹果种群的频繁混合。再加上充气的当代迁移率,混合物模式可能是最近在过去的人类干预增加的签名。我们的研究突出了在哈萨克斯坦发生的苹果野生基因流量的普遍存在作物,提出了加速遗传沼泽的风险。

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