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Evolution in agriculture: the application of evolutionary approaches to the management of biotic interactions in agro-ecosystems

机译:农业进化:进化方法在农业生态系统中生物相互作用管理中的应用

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摘要

Anthropogenic impacts increasingly drive ecological and evolutionary processes at many spatio-temporal scales, demanding greater capacity to predict and manage their consequences. This is particularly true for agro-ecosystems, which not only comprise a significant proportion of land use, but which also involve conflicting imperatives to expand or intensify production while simultaneously reducing environmental impacts. These imperatives reinforce the likelihood of further major changes in agriculture over the next 30–40 years. Key transformations include genetic technologies as well as changes in land use. The use of evolutionary principles is not new in agriculture (e.g. crop breeding, domestication of animals, management of selection for pest resistance), but given land-use trends and other transformative processes in production landscapes, ecological and evolutionary research in agro-ecosystems must consider such issues in a broader systems context. Here, we focus on biotic interactions involving pests and pathogens as exemplars of situations where integration of agronomic, ecological and evolutionary perspectives has practical value. Although their presence in agro-ecosystems may be new, many traits involved in these associations evolved in natural settings. We advocate the use of predictive frameworks based on evolutionary models as pre-emptive management tools and identify some specific research opportunities to facilitate this. We conclude with a brief discussion of multidisciplinary approaches in applied evolutionary problems.
机译:人为影响越来越多地推动了许多时空尺度上的生态和进化过程,要求具有更大的预测和管理其后果的能力。对于农业生态系统来说尤其如此,因为农业生态系统不仅占土地使用的很大一部分,而且还涉及到相互冲突的要求,以扩大或集约生产,同时减少对环境的影响。这些紧迫性增加了未来30-40年农业进一步重大变化的可能性。关键的转变包括基因技术以及土地利用的变化。在农业中使用进化原理并不是新事物(例如,作物育种,动物驯养,抗虫性选择管理),但是鉴于土地使用趋势和生产环境中的其他转化过程,必须在农业生态系统中进行生态和进化研究在更广泛的系统环境中考虑此类问题。在这里,我们重点关注涉及病虫害和病原体的生物相互作用,作为整合农学,生态学和进化学观点具有实际价值的情况的典范。尽管它们在农业生态系统中的存在可能是新的,但这些关联中涉及的许多特征都是在自然环境中演变而来的。我们提倡使用基于进化模型的预测框架作为先发制人的管理工具,并确定一些具体的研究机会来促进这一目标。最后,我们简要讨论了应用进化问题中的多学科方法。

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