Apostolos‐Manuel Koussoroplis, Toni Klauschies, S. Pincebourde, D. Giron, A. Wacker
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引用次数: 4
摘要
Wetzel et al.(2016)植物养分的变化会降低昆虫的食草性表现。[Nature 539: 425-427]预测植物营养水平的变化通过非线性平均效应(作者称之为Jensen效应)降低了食草动物的表现,而防御水平的变化则不会。我们认为,这项研究可能低估了植物防御变异导致詹森效应的潜力,原因有两个。首先,该结论是基于各种防御性状对各种食草动物的平均Jensen效应为零,这并不意味着特定防御性状对特定食草动物的Jensen效应为零,只是在全局上相互平衡。其次,该研究忽略了营养性状和防御性状之间的协同作用或共同发生的防御性状之间对食草动物生产性能的非线性影响。相互作用的植物防御性状之间或植物营养性状与防御性状之间的协方差对生产性能的影响不同于营养性状或单一植物防御性状之间的协方差。忽视植物性状和性状协方差之间的相互作用,可能会影响对植物性状变异在自然环境下对草食动物种群的真正作用的评估。
A comment on “Variability in plant nutrients reduces insect herbivore performance”
In their recent contribution, Wetzel et al. [Wetzel et al. (2016) Variability in plant nutrients reduces insect herbivore performance. Nature 539: 425-427] predict that variance in the plant nutrient level reduces herbivore performance via the nonlinear averaging effect (named Jensen’s effect by the authors) while variance in the defense level does not. We argue that the study likely underestimates the potential of plant defenses’ variance to cause Jensen’s effects for two reasons. First, this conclusion is based on the finding that the average Jensen’s effect of various defense traits on various herbivores is zero which does not imply that the Jensen’s effect of specific defense traits on specific herbivores is null, just that the effects balance each other globally. Second, the study neglects the nonlinearity effects that may arise from the synergy between nutritive and defense traits or between co-occurring defenses on herbivore performance. Covariance between interacting plant defense traits, or between plant nutritive and defense traits, can affect performance differently than would nutritive or single plant defense variance alone. Overlooking the interactive effects of plant traits and the traits’ covariance could impair the assessment of the true role of plant trait variability on herbivore populations in natural settings.