Landscape Genetics: From Classic Molecular Markers to Genomics

E. R. Konzen, M. Zucchi
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引用次数: 3

Abstract

Landscape genetics combines population genetics and landscape ecology to understand processes that shape the distribution and organization of human, animal, or plant populations. This field of genetics emerged from the availability of several studies with classical molecular markers, such as isozymes, RAPD, AFLP, and microsatellites. Population genetic studies enabled the detection of population structure with those markers, but a more comprehensive analysis of natural populations was only possible with the development of statistical methods that combined both molecular data and environmental variables. Ultimately, the rapid development of sequencing technologies allowed studies at the genomic level, augmenting the resolution of association with environment factors. This chapter outlines basic concepts in landscape genetics, the main statistical methods used so far, and the perspectives of this field of knowledge into strategies for conservation of natural populations of plant and animal species. Moreover, we briefly describe the application of the field to understand historical human migration processes as well as how some diseases are spread throughout the world.
景观遗传学:从经典分子标记到基因组学
景观遗传学结合了种群遗传学和景观生态学来理解塑造人类、动物或植物种群分布和组织的过程。这一领域的遗传学兴起于一些经典分子标记的研究,如同工酶、RAPD、AFLP和微卫星。种群遗传研究可以用这些标记来探测种群结构,但是只有发展出结合分子数据和环境变量的统计方法,才能对自然种群进行更全面的分析。最终,测序技术的快速发展使基因组水平的研究成为可能,增加了与环境因素关联的分辨率。本章概述了景观遗传学的基本概念,迄今为止使用的主要统计方法,以及这一知识领域对植物和动物自然种群保护策略的看法。此外,我们简要地描述了该领域的应用,以了解历史上的人类迁移过程以及一些疾病如何在世界范围内传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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