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Introduction beyond a species range: A relationship between population origin, adaptive potential and plant performance

机译:超出物种范围的引种:种群起源,适应潜力和植物生长性能之间的关系

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摘要

The adaptive potential of a population defines its importance for species survival in changing environmental conditions such as global climate change. Very few empirical studies have examined adaptive potential across species' ranges, namely, of edge vs core populations, and we are unaware of a study that has tested adaptive potential (namely, variation in adaptive traits) and measured performance of such populations in conditions not currently experienced by the species but expected in the future. Here we report the results of a Triticum dicoccoides population study that employed transplant experiments and analysis of quantitative trait variation. Two populations at the opposite edges of the species range (1) were locally adapted; (2) had lower adaptive potential (inferred from the extent of genetic quantitative trait variation) than the two core populations; and (3) were outperformed by the plants from the core population in the novel environment. The fact that plants from the species arid edge performed worse than plants from the more mesic core in extreme drought conditions beyond the present climatic envelope of the species implies that usage of peripheral populations for conservation purposes must be based on intensive sampling of among-population variation.
机译:种群的适应潜力定义了它在不断变化的环境条件(例如全球气候变化)中对物种生存的重要性。很少有实证研究检查物种跨范围(即边缘种群与核心种群)的适应潜力,而我们没有意识到一项研究了适应潜力(即适应性状的变异)并在不存在条件下测量此类种群性能的研究。该物种目前有经验,但预计会在未来。在这里,我们报告了小麦二粒种群研究的结果,该研究采用了移植实验并分析了数量性状变异。在物种范围(1)相对边缘的两个种群是局部适应的; (2)具有比两个核心人群更低的适应潜力(从遗传数量性状变异的程度推断); (3)在新环境中的表现优于核心种群的植物。在超出该物种当前气候范围的极端干旱条件下,来自该物种干旱边缘的植物的表现要比来自该物种更边缘核的植物的表现差,这表明出于保护目的使用外围种群必须基于种群间变异的密集采样。

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