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种间专化互惠关系中的异步多样化

Asynchronous diversification in a specialized plant-pollinator mutualism.

机构信息

Museum of Comparative Zoology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Science. 2011 Sep 23;333(6050):1742-6. doi: 10.1126/science.1209175.

Abstract

Most flowering plants establish mutualistic associations with insect pollinators to facilitate sexual reproduction. However, the evolutionary processes that gave rise to these associations remain poorly understood. We reconstructed the times of divergence, diversification patterns, and interaction networks of a diverse group of specialized orchids and their bee pollinators. In contrast to a scenario of coevolution by race formation, we show that fragrance-producing orchids originated at least three times independently after their fragrance-collecting bee mutualists. Whereas orchid diversification has apparently tracked the diversification of orchids' bee pollinators, bees appear to have depended on the diverse chemical environment of neotropical forests. We corroborated this apparent asymmetrical dependency by simulating co-extinction cascades in real interaction networks that lacked reciprocal specialization. These results suggest that the diversification of insect-pollinated angiosperms may have been facilitated by the exploitation of preexisting sensory biases of insect pollinators.

摘要

大多数开花植物与昆虫传粉者建立互利共生关系,以促进有性繁殖。然而,这些共生关系的进化过程仍知之甚少。我们重建了一组多样化的专门兰花及其蜜蜂传粉者的分歧时间、多样化模式和相互作用网络。与种族形成的协同进化情景相反,我们表明,产生香味的兰花至少在它们的香味收集蜜蜂互惠共生之后独立起源了三次。虽然兰花的多样化显然与兰花的蜜蜂传粉者的多样化有关,但蜜蜂似乎依赖于新热带森林多样化的化学环境。我们通过模拟缺乏互惠专业化的真实相互作用网络中的共同灭绝级联来证实这种明显的不对称依赖性。这些结果表明,昆虫传粉被子植物的多样化可能是通过利用昆虫传粉者预先存在的感觉偏见来促进的。

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