The only purple-flower species in Actaea L. is pollinated by a hornet

Author:

Qiu Lin-Feng12,Zhang Jiu-Dong3,Li Ying12,Liu Xiao-Ying12,Zhang Dan-Qing12,Huang Long12,Yang Ya-Peng12,Wang Shi-Yu12,Li Yue-Yi12,Ma Zi-Wei12,Sui Jie12,Wang Lin12,Che Xiao-Fen12,Tian Xian-Hua12,Ren Yi12,Zhang Jian-Qiang12

Affiliation:

1. National Engineering Laboratory for Resource Development of Endangered Crude Drugs in Northwest China, College of Life Sciences, Shaanxi Normal University , Xi’an 710119 , China

2. Key Laboratory of Medicinal Plant Resource and Natural Pharmaceutical Chemistry of Ministry of Education, Shaanxi Normal University , Xi’an 710119 , China

3. College of Biological and Environmental Engineering, Xi’an University , Xi’an 710065 , China

Abstract

Abstract Examining the pollination biology of plant species is not only crucial for enhancing our understanding of their reproductive biology, but also essential for elucidating their adaptation and evolutionary history. Here, we investigated the breeding system and pollination biology of two closely related species in Actaea. The flower of A. purpurea is unique in the genus with purple and chartaceous (paper-like) sepals, fewer stamens with yellow anthers and purple filaments. Through three seasons of field observation and exclusion experiments, we determined that A. purpurea was primarily pollinated by a hornet species, Vespa bicolor, which also served as the most efficient pollinator. In contrast, A. japonica was primarily pollinated by large flies. Actaea purpurea exhibited a significantly higher cumulative nectar volume than A. japonica, which could be a crucial factor in attracting V. bicolor. A control experiment further demonstrated that removing the nectar leaf (petal) significantly decreased the visiting frequency of V. bicolor. Breeding system studies revealed that both species were self-compatible, yet they primarily underwent outcrossing in natural habitats. Our study presents a compelling case of possible pollinator shift in A. purpurea accompanied by morphological divergence. A more in-depth investigation of this system would offer crucial insights into the extent to which pollinators are involved in the plant speciation process and whether they contribute to reproductive isolation between closely related species.

Funder

National Natural Science Foundation of China

Innovation Capability Support Program of Shaanxi

Fundamental Research Funds for the Central Universities

Publisher

Oxford University Press (OUP)

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