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Ecological versus phylogenetic determinants of trophic associations in a plant-leafminer-parisitoid food web

机译:植物叶民类食物网中营养联系的生态决定因素和系统发育决定因素

摘要

Specialized trophic interactions in plant–herbivore–parasitoid food webs can spur “bottom–up” diversification if speciation in plants leads to host-shift driven divergence in insect herbivores, and if the effect then cascades up to the third trophic level. Conversely, parasitoids that search for victims on certain plant taxa may trigger “top–down” diversification by pushing herbivores into “enemy-free space” on novel hosts. We used phylogenetic regression methods to compare the relative importance of ecology versus phylogeny on associations between Heterarthrinae leafmining sawflies and their parasitoids. We found that: (1) the origin of leafmining led to escape from most parasitoids attacking external-feeding sawflies; (2) the current enemies mainly consist of generalists that are shared with other leafmining taxa, and of more specialized lineages that may have diversified by shifting among heterarthrines; and (3) parasitoid–leafminer associations are influenced more by the phylogeny of the miners’ host plants than by relationships among miner species. Our results suggest that vertical diversifying forces have a significant—but not ubiquitous—role in speciation: many of the parasitoids have remained polyphagous despite niche diversification in the miners, and heterarthrine host shifts also seem to be strongly affected by host availability.
机译:如果植物的物种形成导致昆虫食草动物的寄主转移驱动发散,并且如果这种影响随后上升到第三个营养级,那么植物-草食动物-类寄生虫食物网中的特殊营养相互作用可以刺激“自下而上”的多样化。相反,通过将草食动物推入新型宿主的“无敌空间”,在某些植物类群上寻找受害者的寄生虫可能触发“自上而下”的多样化。我们使用了系统发育回归方法,比较了生态学和系统发育对杂种菊科采叶锯齿虫及其寄生虫之间的相对重要性。我们发现:(1)采叶的起源导致大多数寄生虫攻击外来的锯齿动物逃逸; (2)目前的敌人主要由通才与其他挖雷生物分类所共有,以及更专业的世系组成,这些世系可能因在异种神学之间转移而多样化。 (3)寄生者与叶民之间的联系受矿工寄主植物系统发育的影响大于受矿工物种之间关系的影响。我们的结果表明,垂直多样化力量在物种形成方面具有重要作用,但并非无处不在:尽管矿工的利基多样化,许多寄生虫仍处于食虫性,而且杂位氨酸宿主的转移似乎也受到宿主可用性的强烈影响。

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