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Nutrient compensatory foraging in a free-living social insect

机译:自由生活的社会昆虫的营养补偿觅食

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The geometric framework model predicts that animal foraging decisions are influenced by their dietary history, with animals targeting a combination of essential nutrients through compensatory foraging. We provide experimental confirmation of nutrient-specific compensatory foraging in a natural, free-living population of social insects by supplementing their diet with sources of protein- or carbohydrate-rich food. Colonies of the ant Iridomyrmex suchieri were provided with feeders containing food rich in either carbohydrate or protein for 6 days, and were then provided with a feeder containing the same or different diet. The patterns of recruitment were consistent with the geometric framework: while feeders with a carbohydrate diet typically attracted more workers than did feeders with protein diet, the difference in recruitment between the two nutrients was smaller if the colonies had had prior access to carbohydrate than protein. Further, fewer ants visited feeders if the colony had had prior access to protein than to carbohydrates, suggesting that the larvae play a role in worker foraging behaviour.
机译:几何框架模型预测动物的觅食决策受其饮食历史的影响,而动物则通过补偿性觅食来靶向必需营养素的组合。我们通过添加富含蛋白质或碳水化合物的食物来补充其饮食,从而为自然,自由生活的社会昆虫种群提供营养特异性补偿性觅食的实验性证实。给蚂蚁Iridomyrmexsuchieri的菌落提供含有富含碳水化合物或蛋白质的食物的饲养器6天,然后提供含有相同或不同饮食的饲养器。募集的模式与几何框架相符:虽然碳水化合物饮食的饲养者通常比蛋白质饮食的饲养者吸引更多的工人,但是如果菌落比碳水化合物更容易获得碳水化合物,那么两种营养素之间的征募差异就较小。此外,如果菌落事先获得蛋白质的机会要比获得碳水化合物的机会多,而访问碳水化合物的蚂蚁的人数就少于碳水化合物,这表明幼虫在工人觅食的行为中起着重要的作用。

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