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A trade-off between female lifespan and larval diet breadth at the interspecific level in Lepidoptera

机译:在鳞翅目种间水平上女性寿命与幼虫饮食宽度之间的权衡

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A prediction arising from several evolutionary diet breadth models is that, in insect herbivores whose adults practise adaptive host plant selection based on larval performance, female adult lifespan should be negatively correlated with larval diet breadth. In one category of models, female adult lifespan drives evolutionary changes in larval diet breadth; in the other category, larval diet breadth drives evolutionary changes in female adult lifespan. Applying the method of independent contrasts to a biologically and phylogenetically diverse array of Lepidoptera, we ask whether larval diet breadth—as measured by the number of larval food plant species reported in the literature—is negatively correlated with female adult lifespan at the interspecific level. We show that these two life history variables are indeed inversely related. Next, we relax the assumption, common to all of the models, that the female adult is the life stage responsible for the distribution of progeny among different host plants. By introducing into our data set three species whose females are incapable of flight (due to either aptery or brachyptery), and whose larvae are the dispersive stage, the negative correlation between female adult lifespan and larval diet breadth is lost, when using the independent contrasts method. We interpret this effect as supporting the models' common prediction. Ours is the first reported evidence of a lifespan/diet breadth trade-off at the interspecific level among insects, and it confirms the findings of a previous study in which the degree of habitat specialisation among arthropods was inversely related to proxy measures of the degree of search time constraint. In one of our "diet breadth drives changes in lifespan" models, the females' type of egg maturation strategy (as measured by the ovigeny index) is predicted to be positively correlated with larval diet breadth, and it mediates a female adult lifespan/larval diet breadth trade-off; however, we found no convincing support for such a role.
机译:几种进化饮食宽度模型得出的预测是,在昆虫食草动物的成虫根据幼虫表现进行适应性寄主植物选择的情况下,成年雌性寿命与幼虫饮食宽度呈负相关。在一种模型中,女性成年寿命驱动着幼虫饮食宽度的进化变化。在另一类中,幼虫的饮食宽度驱动女性成年寿命的进化变化。将独立的对比方法应用于鳞翅目的生物学和系统发育多样性的阵列中,我们询问幼虫的饮食宽度(通过文献中报道的幼虫食用植物种类的数量来衡量)是否在种间水平上与成年雌性成负相关。我们证明这两个生活史变量确实成反比。接下来,我们放宽所有模型共有的假设,即成年是负责不同宿主植物之间子代分布的生命阶段。通过将我们的数据集引入三个物种,它们的雌性无法飞行(由于适足或近距离捕食),并且其幼虫处于分散阶段,当使用独立的对比时,雌性成年寿命与幼虫饮食广度之间的负相关性消失了。方法。我们将这种影响解释为支持模型的通用预测。我们的研究报告是昆虫之间跨物种水平的寿命/饮食广度折衷的第一个报道证据,它证实了先前研究的发现,在该研究中,节肢动物之间的生境特化程度与替代程度的代用指标成反比。搜索时间限制。在我们的一种“饮食宽度驱动寿命变化”模型中,女性的卵子成熟策略类型(通过卵形指数衡量)预计与幼虫的饮食宽度呈正相关,它介导了成年雌性的寿命/幼虫饮食宽度权衡;但是,我们发现没有令人信服的支持这种角色。

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