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Evolutionary agroecology: individual fitness and population yield in wheat (Triticum aestivum)

机译:进化yrococology:小麦的个人健身和人口产量(Triticum aestivum)

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Although the importance of group selection in nature is highly controversial, several researchers have argued that plant breeding for agriculture should be based on group selection, because the goal in agriculture is to optimize population production, not individual fitness. A core hypothesis behind this claim is that crop genotypes with the highest individual fitness in a mixture of genotypes will not produce the highest population yield, because fitness is often increased by "selfish" behaviors, which reduce population performance. We tested this hypothesis by growing 35 cultivars of spring wheat (Triticum aestivum L.) in mixtures and monocultures, and analyzing the relationship between population yield in monoculture and individual yield in mixture. The relationship was unimodal, as predicted. The highest-yielding populations were from cultivars that had intermediate fitness, and these produced, on average, 35% higher yields than cultivars with the highest fitness. It is unlikely that plant breeding or genetic engineering can improve traits that natural selection has been optimizing for millions of years, but there is unutilized potential in traits that increase crop yield by decreasing individual fitness.
机译:虽然本质上集团选择的重要性是高度争议的,但有几位研究人员认为,农业植物育种应基于集团选择,因为农业的目标是优化人口产量,而不是个人健康。核心假设背后是这种权利要求的作物基因型在基因型中的混合物中具有最高的个体健身不会产生最高的人群产量,因为健身通常会增加“自私”行为,这减少人口性能。我们通过在混合物和单一栽培中生长35种春小麦(Triticum Aestivum L.)来测试这一假设,并分析了单一栽培中人口产量与混合物中的个体产率之间的关系。如预期的那样,这种关系是单峰的。产量最高的群体来自具有中间体健康的品种,并且平均产生的产量比具有最高的品种的产率高35%。植物繁殖或基因工程不太可能改善自然选择达到数百万年的特征,但通过降低个体健康,具有未利用的特征潜力。

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