Sexual dimorphism in a dioecious species with complex, specialist‐pollinated flowers

Author:

Ushimaru Atushi12ORCID,Seo Natsumi12,Sakagami Kota3ORCID,Funamoto Daichi345ORCID

Affiliation:

1. Graduate School of Human Development and Environment Kobe University Kobe Japan

2. Faculty of Human Development Kobe University Kobe Japan

3. Graduate School of Agricultural Science Kobe University Kobe Japan

4. The Botanical Gardens, Graduate School of Science The University of Tokyo Tokyo Japan

5. Faculty of Agriculture Tokyo University of Agriculture Tokyo Japan

Abstract

AbstractPremisePollinators with flower constancy and long nectar‐feeding organs should favor less or no sexual dimorphism in the individual flowers of dioecious plants. This hypothesis is deduced because such pollinators can discriminate between intersexual flower size differences, and morphological differences between male and female flowers often diminish pollen transfer.MethodsWe compared floral traits and pollinator behavior between male and female flowers in the hawkmoth‐pollinated species, Trichosanthes cucumeroides. In field studies, we removed petal fringes on both sexes and observed pollinators to assess the role of elaborate petal fringes in pollinator attraction and pollination success for each flower sex.ResultsFemale flowers had a similar front flower size and fringe extension as male flowers, supporting our hypothesis. In contrast, females allocated fewer resources to floral biomass. Additionally, they had smaller and narrower petal lobes, lower fringe density, shorter tubes with inferior nectar rewards, and lower display size than males, which is inconsistent with the hypothesis. Nocturnal hawkmoths prefer flowers with long fringe extensions. Fringe removal significantly decreased hawkmoth visitations to both female and male flowers but reduced success only in females. A literature survey indicated that female flowers of specialist‐pollinated species are similar in size or larger than the males and thus tend to attract more pollinators compared with female flowers of generalist‐pollinated species.ConclusionsFemale flowers have evolved fringe extensions that are similar to those of male flowers, likely increasing pollinator attraction even slightly, and had less biomass in other floral parts and produced less nectar compared with male flowers. Our findings imply that female‐biased resource limitation and flower‐size sensitivity of pollinators together exert sex‐specific selection of floral traits in T. cucumeroides.

Publisher

Wiley

Subject

Plant Science,Genetics,Ecology, Evolution, Behavior and Systematics

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