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农业中的进化:进化方法在农业生态系统生物相互作用管理中的应用。

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

作者信息

Thrall Peter H, Oakeshott John G, Fitt Gary, Southerton Simon, Burdon Jeremy J, Sheppard Andy, Russell Robyn J, Zalucki Myron, Heino Mikko, Ford Denison R

机构信息

CSIRO Plant Industry Canberra, ACT, Australia.

CSIRO Ecosystem Sciences Canberra, ACT, Australia.

出版信息

Evol Appl. 2011 Mar;4(2):200-15. doi: 10.1111/j.1752-4571.2010.00179.x.

Abstract

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.

摘要

人为影响在许多时空尺度上日益推动着生态和进化过程,这就需要具备更强的能力来预测和管理其后果。农业生态系统尤其如此,它不仅占土地利用的很大比例,而且在扩大或强化生产的同时还要减少环境影响,这两种需求相互冲突。这些需求增加了未来30至40年农业进一步发生重大变化的可能性。关键变革包括基因技术以及土地利用的变化。进化原理在农业中的应用并非新鲜事(例如作物育种、动物驯化、害虫抗性选择管理),但鉴于生产景观中的土地利用趋势和其他变革过程,农业生态系统中的生态和进化研究必须在更广泛的系统背景下考虑此类问题。在此,我们聚焦于涉及害虫和病原体的生物相互作用,以此作为农艺、生态和进化视角整合具有实际价值的情形的范例。尽管它们在农业生态系统中的存在可能是新现象,但这些关联中涉及的许多性状是在自然环境中进化而来的。我们提倡使用基于进化模型的预测框架作为预防性管理工具,并确定一些具体的研究机会以推动此事。最后,我们简要讨论应用进化问题中的多学科方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b0c/3352559/6aa799d7e655/eva0004-0200-f1.jpg

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