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首页> 外文期刊>Frontiers in Plant Science >Adaptive Introgression: An Untapped Evolutionary Mechanism for Crop Adaptation
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Adaptive Introgression: An Untapped Evolutionary Mechanism for Crop Adaptation

机译:适应性旋转:作物适应的未开发进化机制

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Global environmental changes strongly impact wild and domesticated species biology and their associated ecosystem services. For crops, global warming has led to significant changes in terms of phenology and/or yield. To respond to the agricultural challenges of this century, there is a strong need for harnessing the genetic variability of crops and adapting them to new conditions. Gene flow, from either the same species or a different species, may be an immediate primary source to widen genetic diversity and adaptions to various environments. When the incorporation of a foreign variant leads to an increase of the fitness of the recipient pool, it is referred to as “adaptive introgression”. Crop species are excellent case studies of this phenomenon since their genetic variability has been considerably reduced over space and time but most of them continue exchanging genetic material with their wild relatives. In this paper, we review studies of adaptive introgression, presenting methodological approaches and challenges to detecting it. We pay particular attention to the potential of this evolutionary mechanism for the adaptation of crops. Furthermore, we discuss the importance of farmers’ knowledge and practices in shaping wild-to-crop gene flow. Finally, we argue that screening the wild introgression already existing in the cultivated gene pool may be an effective strategy for uncovering wild diversity relevant for crop adaptation to current environmental changes and for informing new breeding directions.
机译:全球环境变化强烈影响野生和驯养物种生物学及其相关的生态系统服务。对于作物来说,全球变暖导致候选和/或产量的重大变化。为应对本世纪的农业挑战,有强烈需要利用作物的遗传变异,并使它们适应新的条件。来自相同物种或不同物种的基因流动可能是扩大遗传多样性和对各种环境的遗传多样性和适应性的直接主要来源。当掺入异物导致受体池的适应性增加时,它被称为“适应性迟滞”。作物物种是对这种现象的优秀案例研究,因为它们的遗传变异性在空间和时间上显着降低,但大多数人继续与野生亲属交换遗传物质。在本文中,我们审查了对自适应血栓引入的研究,提出了检测方法的方法论方法和挑战。我们特别注意这种进化机制的适应作物的潜力。此外,我们讨论了农民知识和实践在塑造野生对作物基因流动方面的重要性。最后,我们认为筛查培养基因库中已经存在的野生血液可能是揭示与作物适应对当前环境变化相关的野生多样性的有效策略,并告知新的繁殖方向。

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