van der Linden Corné F H, WallisDeVries Michiel F, Simon Sabrina
Biosystematics Group Wageningen University & Research Wageningen The Netherlands.
De Vlinderstichting/Dutch Butterfly Conservation Wageningen The Netherlands.
Ecol Evol. 2021 May 27;11(13):8595-8613. doi: 10.1002/ece3.7673. eCollection 2021 Jul.
Plants constantly cope with insect herbivory, which is thought to be the evolutionary driver for the immense diversity of plant chemical defenses. Herbivorous insects are in turn restricted in host choice by the presence of plant chemical defense barriers. In this study, we analyzed whether butterfly host-plant patterns are determined by the presence of shared plant chemical defenses rather than by shared plant evolutionary history. Using correlation and phylogenetic statistics, we assessed the impact of host-plant chemical defense traits on shaping northwestern European butterfly assemblages at a macroevolutionary scale. Shared chemical defenses between plant families showed stronger correlation with overlap in butterfly assemblages than phylogenetic relatedness, providing evidence that chemical defenses may determine the assemblage of butterflies per plant family rather than shared evolutionary history. Although global congruence between butterflies and host-plant families was detected across the studied herbivory interactions, cophylogenetic statistics showed varying levels of congruence between butterflies and host chemical defense traits. We attribute this to the existence of multiple antiherbivore traits across plant families and the diversity of insect herbivory associations per plant family. Our results highlight the importance of plant chemical defenses in community ecology through their influence on insect assemblages.
植物不断应对昆虫的取食,昆虫取食被认为是植物化学防御种类繁多的进化驱动力。反过来,植食性昆虫的寄主选择也受到植物化学防御屏障的限制。在本研究中,我们分析了蝴蝶寄主植物模式是否由共享的植物化学防御决定,而非共享的植物进化史。我们运用相关性分析和系统发育统计学方法,在宏观进化尺度上评估寄主植物化学防御特征对塑造欧洲西北部蝴蝶群落的影响。植物科之间的共享化学防御与蝴蝶群落重叠的相关性,比系统发育相关性更强,这表明化学防御可能决定每个植物科的蝴蝶群落组成,而非共享的进化史。尽管在所研究的取食相互作用中,蝴蝶与寄主植物科之间存在全球一致性,但共系统发育统计显示,蝴蝶与寄主化学防御特征之间的一致性水平各不相同。我们将此归因于植物科中存在多种抗食草动物特征以及每个植物科昆虫取食关联的多样性。我们的研究结果突出了植物化学防御通过对昆虫群落的影响在群落生态学中的重要性。