Aggregate enantiostyly: Floral visitor interactions with a previously unreported form of floral display

Floral herkogamy, or the spatial separation of reproductive structures, plays an important role in the evolution of plant mating systems. One form of herkogamy is enantiostyly, or the alternate presentation of stigmas to the left and right of the floral axis. Theoretically, enantiostyly increases ou...

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Main Authors: Sarah Kelley Richman, D Lawrence Venable
Format: Article
Language:English
Published: Enviroquest Ltd. 2018-02-01
Series:Journal of Pollination Ecology
Online Access:https://pollinationecology.org/index.php/jpe/article/view/479
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author Sarah Kelley Richman
D Lawrence Venable
author_facet Sarah Kelley Richman
D Lawrence Venable
author_sort Sarah Kelley Richman
collection DOAJ
description Floral herkogamy, or the spatial separation of reproductive structures, plays an important role in the evolution of plant mating systems. One form of herkogamy is enantiostyly, or the alternate presentation of stigmas to the left and right of the floral axis. Theoretically, enantiostyly increases outcrossing rate by promoting reciprocal pollen deposition and export, but empirical evidence of this is lacking. Understanding how pollinators interact with enantiostylous flowers will illuminate the mechanisms by which enantiostyly encourages outcross pollination. We quantified style deployment within and among plants, of Allionia incarnata L. (Nyctaginaceae), a species with a new kind of enantiostyly we call “aggregate enantiostyly”. A. incarnata is the first species known to have “compound blossoms”, with different flowers each containing a left- or right-handed style. We quantify the autonomous selfing rate and describe floral visitor interactions with this unique floral structure. We found equal frequency of left- and right-handed blossoms within and among plants. Common floral visitors, Hemiargus ceraunus and Halictus sp., interacted with either anthers or stigmas, but not both, indicating effective outcrossing at the flower level. Outcrossing produced more fruits than selfing. The order in which floral visitors interacted with reproductive structures indicates that enantiostyly may increase pollen export. However, we did not find evidence that enantiostyly affected pollen deposition. Our study provides an intriguing first look at the reproductive ecology of a species with a new unique form of herkogamy, and provides evidence on the adaptive significance of enantiostyly.
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spelling doaj.art-624a925a3a82416ca866f37d285565842022-12-21T21:29:47ZengEnviroquest Ltd.Journal of Pollination Ecology1920-76032018-02-0122495410.26786/1920-7603(2018)seven284Aggregate enantiostyly: Floral visitor interactions with a previously unreported form of floral displaySarah Kelley Richman0D Lawrence Venable1University of ArizonaUniversity of ArizonaFloral herkogamy, or the spatial separation of reproductive structures, plays an important role in the evolution of plant mating systems. One form of herkogamy is enantiostyly, or the alternate presentation of stigmas to the left and right of the floral axis. Theoretically, enantiostyly increases outcrossing rate by promoting reciprocal pollen deposition and export, but empirical evidence of this is lacking. Understanding how pollinators interact with enantiostylous flowers will illuminate the mechanisms by which enantiostyly encourages outcross pollination. We quantified style deployment within and among plants, of Allionia incarnata L. (Nyctaginaceae), a species with a new kind of enantiostyly we call “aggregate enantiostyly”. A. incarnata is the first species known to have “compound blossoms”, with different flowers each containing a left- or right-handed style. We quantify the autonomous selfing rate and describe floral visitor interactions with this unique floral structure. We found equal frequency of left- and right-handed blossoms within and among plants. Common floral visitors, Hemiargus ceraunus and Halictus sp., interacted with either anthers or stigmas, but not both, indicating effective outcrossing at the flower level. Outcrossing produced more fruits than selfing. The order in which floral visitors interacted with reproductive structures indicates that enantiostyly may increase pollen export. However, we did not find evidence that enantiostyly affected pollen deposition. Our study provides an intriguing first look at the reproductive ecology of a species with a new unique form of herkogamy, and provides evidence on the adaptive significance of enantiostyly.https://pollinationecology.org/index.php/jpe/article/view/479
spellingShingle Sarah Kelley Richman
D Lawrence Venable
Aggregate enantiostyly: Floral visitor interactions with a previously unreported form of floral display
Journal of Pollination Ecology
title Aggregate enantiostyly: Floral visitor interactions with a previously unreported form of floral display
title_full Aggregate enantiostyly: Floral visitor interactions with a previously unreported form of floral display
title_fullStr Aggregate enantiostyly: Floral visitor interactions with a previously unreported form of floral display
title_full_unstemmed Aggregate enantiostyly: Floral visitor interactions with a previously unreported form of floral display
title_short Aggregate enantiostyly: Floral visitor interactions with a previously unreported form of floral display
title_sort aggregate enantiostyly floral visitor interactions with a previously unreported form of floral display
url https://pollinationecology.org/index.php/jpe/article/view/479
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