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Inclusive fitness in agriculture

机译:农业的全民健身

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摘要

Trade-offs between individual fitness and the collective performance of crop and below-ground symbiont communities are common in agriculture. Plant competitiveness for light and soil resources is key to individual fitness, but higher investments in stems and roots by a plant community to compete for those resources ultimately reduce crop yields. Similarly, rhizobia and mycorrhizal fungi may increase their individual fitness by diverting resources to their own reproduction, even if they could have benefited collectively by providing their shared crop host with more nitrogen and phosphorus, respectively. Past selection for inclusive fitness (benefits to others, weighted by their relatedness) is unlikely to have favoured community performance over individual fitness. The limited evidence for kin recognition in plants and microbes changes this conclusion only slightly. We therefore argue that there is still ample opportunity for human-imposed selection to improve cooperation among crop plants and their symbionts so that they use limited resources more efficiently. This evolutionarily informed approach will require a better understanding of how interactions among crops, and interactions with their symbionts, affected their inclusive fitness in the past and what that implies for current interactions.
机译:在农业中,个体适应性与作物和地下共生体群落的集体表现之间的权衡是很常见的。植物在光和土壤资源上的竞争力是个人适应性的关键,但是植物群落对茎和根的更高投资以争夺这些资源最终降低了作物产量。同样,根瘤菌和菌根真菌可通过将资源转移到自己的繁殖中来提高自身的适应性,即使它们可以通过分别向其共享的作物宿主提供更多的氮和磷而共同受益。过去对包容性健身的选择(对他人的好处,由他们的相关性加权)不太可能偏向于社区表现而不是个人健身。关于植物和微生物中亲属识别的有限证据仅使该结论稍有改变。因此,我们认为,人为选择仍然有充分的机会来改善农作物及其共生体之间的合作,以便它们更有效地利用有限的资源。这种以进化为依据的方法将需要更好地了解作物之间的相互作用以及与共生体的相互作用如何影响过去的包容性以及当前相互作用的含义。

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