The contribution of population genetic studies to plant conservation

R. Ennos
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引用次数: 7

Abstract

Summary The objective of this paper is to outline the diverse ways in which population genetic analysis can be used to develop effective species conservation policies. Studies of the geographic distribution of genetic markers have provided us with novel insights into the origins of the Scottish flora. The results reinforce the need for a conservation policy that embraces change over time. Investigations of quantitative characters have demonstrated the existence of substantial local adaptation of plant populations within Scotland. This has implications for conservation management involving transplantation and restoration. Analysis of the diversity and distribution of genetic markers within populations of rare and declining Scottish species have highlighted populations that are of particular conservation concern, and assisted in developing management guidelines for these species. Current research centres on understanding and modelling the genetic behaviour of fragmented populations. Key issues include the ability of such populations to produce seed of high genetic quality, and the extent to which gene flow via pollen and seed can take place between populations. These genetic processes are crucial for facilitating adaptive responses to environmental change, and will be major determinants of the ability of fragmented populations to persist in the future.
群体遗传研究对植物保护的贡献
本文的目的是概述群体遗传分析可用于制定有效的物种保护政策的各种方法。对遗传标记的地理分布的研究为我们了解苏格兰植物群的起源提供了新的见解。研究结果表明,随着时间的推移,有必要制定一项适应变化的保护政策。对数量性状的调查表明,在苏格兰存在大量的植物种群的地方适应性。这对涉及移植和恢复的保护管理具有启示意义。对苏格兰稀有物种种群中遗传标记的多样性和分布的分析突出了特别值得保护的种群,并有助于制定这些物种的管理指南。目前的研究集中在理解和模拟碎片化种群的遗传行为。关键问题包括这些种群生产高遗传质量种子的能力,以及通过花粉和种子在种群之间进行基因流动的程度。这些遗传过程对于促进对环境变化的适应性反应至关重要,并将成为分散种群在未来持续存在的能力的主要决定因素。
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