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首页> 外文期刊>Evolutionary Applications >Anthropogenic and natural drivers of gene flow in a temperate wild fruit tree: a basis for conservation and breeding programs in apples
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Anthropogenic and natural drivers of gene flow in a temperate wild fruit tree: a basis for conservation and breeding programs in apples

机译:温带野生果树中人为和自然的基因流驱动程序:苹果保护和育种计划的基础

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AbstractGene flow is an essential component of population adaptation and species evolution. Understanding of the natural and anthropogenic factors affecting gene flow is also critical for the development of appropriate management, breeding, and conservation programs. Here, we explored the natural and anthropogenic factors impacting crop-to-wild and within wild gene flow in apples in Europe using an unprecedented dense sampling of 1889 wild apple (Malus sylvestris) from European forests and 339 apple cultivars (Malus domestica). We made use of genetic, environmental, and ecological data (microsatellite markers, apple production across landscapes and records of apple flower visitors, respectively). We provide the first evidence that both human activities, through apple production, and human disturbance, through modifications of apple flower visitor diversity, have had a significant impact on crop-to-wild interspecific introgression rates. Our analysis also revealed the impact of previous natural climate change on historical gene flow in the nonintrogressed wild apple M. sylvestris, by identifying five distinct genetic groups in Europe and a north–south gradient of genetic diversity. These findings identify human activities and climate as key drivers of gene flow in a wild temperate fruit tree and provide a practical basis for conservation, agroforestry, and breeding programs for apples in Europe.
机译:摘要基因流是种群适应和物种进化的重要组成部分。了解影响基因流动的自然和人为因素对于制定适当的管理,育种和保护计划也至关重要。在这里,我们使用了来自欧洲森林和339个苹果品种(Malus domestica)的1889个野苹果(Malus sylvestris)前所未有的密集采样,探索了影响欧洲苹果农作物至野生和野生基因流内的自然和人为因素。我们利用了遗传,环境和生态数据(微卫星标记,横跨景观的苹果产量和苹果花访客记录)。我们提供的第一个证据表明,人类活动(通过苹果生产)和人类干扰(通过修改苹果花访客多样性)都对作物到野生种间的渗入速率产生了重大影响。我们的分析还通过确定欧洲的五个不同的遗传群体和遗传多样性的南北梯度,揭示了先前自然气候变化对野生苹果M.sylvestris中历史基因流动的影响。这些发现确定了人类活动和气候是野生温带果树中基因流动的主要驱动力,并为欧洲苹果的保护,农林业和育种计划提供了实用基础。

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