Mercer Kristin L, Perales Hugo R
Department of Horticulture and Crop Science, The Ohio State University Columbus, OH, USA.
Departamento de Agroecologia, El Colegio de la Frontera Sur, San Cristobal, Chiapas, Mexico and Diversity for Livelihoods Programme, Bioversity International Rome, Italy.
Evol Appl. 2010 Sep;3(5-6):480-93. doi: 10.1111/j.1752-4571.2010.00137.x. Epub 2010 Jun 10.
Landraces cultivated in centers of crop diversity result from past and contemporary patterns of natural and farmer-mediated evolutionary forces. Successful in situ conservation of crop genetic resources depends on continuity of these evolutionary processes. Climate change is projected to affect agricultural production, yet analyses of impacts on in situ conservation of crop genetic diversity and farmers who conserve it have been absent. How will crop landraces respond to alterations in climate? We review the roles that phenotypic plasticity, evolution, and gene flow might play in sustaining production, although we might expect erosion of genetic diversity if landrace populations or entire races lose productivity. For example, highland maize landraces in southern Mexico do not express the plasticity necessary to sustain productivity under climate change, but may evolve in response to altered conditions. The outcome for any given crop in a given region will depend on the distribution of genetic variation that affects fitness and patterns of climate change. Understanding patterns of neutral and adaptive diversity from the population to the landscape scale is essential to clarify how landraces conserved in situ will continue to evolve and how to minimize genetic erosion of this essential natural resource.
在作物多样性中心种植的地方品种是过去和当代自然及农民介导的进化力量模式的产物。作物遗传资源的成功原地保护取决于这些进化过程的连续性。预计气候变化将影响农业生产,但目前缺乏对作物遗传多样性原地保护以及从事保护工作的农民所受影响的分析。作物地方品种将如何应对气候的变化?我们回顾了表型可塑性、进化和基因流动在维持生产中可能发挥的作用,不过,如果地方品种群体或整个品种丧失生产力,我们可能会预期遗传多样性遭到侵蚀。例如,墨西哥南部的高地玉米地方品种在气候变化下无法表现出维持生产力所需的可塑性,但可能会随着条件的改变而进化。特定区域内任何特定作物的结果将取决于影响适应性的遗传变异分布以及气候变化模式。了解从种群到景观尺度的中性和适应性多样性模式,对于阐明原地保护的地方品种将如何继续进化以及如何尽量减少这种重要自然资源的遗传侵蚀至关重要。