Pollinators differ in their contribution to the male fitness of a self‐incompatible composite

Author:

Pearson Avery E.1ORCID,Zelman Zeke1,Hill Lauryn A.1,Stevens Mia A.12ORCID,Jackson Evan X.1,Incarnato Miyauna M. N.1ORCID,Johnson Ren M.1ORCID,Wagenius Stuart2ORCID,Ison Jennifer L.1ORCID

Affiliation:

1. Biology Department College of Wooster 1189 Beall Avenue Wooster OH 44691 USA

2. Negaunee Institute for Plant Conservation Science and Action at the Chicago Botanic Garden 1000 Lake Cook Road Glencoe IL 60022 USA

Abstract

AbstractPremiseReproductive fitness in plants is often determined by the quantity and quality of pollen transferred by pollinators. However, many fitness studies measure only female fitness or rely on proxies for male fitness. Here we assessed how five bee taxon groups affect male fitness in a prairie plant by quantifying pollen removal, visitation, and siring success using paternity assignments and a unique pollinator visitation experiment.MethodsIn Echinacea angustifolia, we measured per‐visit pollen removal for each pollinator taxon and estimated the number of pollen grains needed for successful ovule fertilization. Additionally, we directly measured pollinator influence on siring by allowing only one bee taxon to visit each pollen‐donor plant, while open‐pollinated plants acted as unrestricted pollen recipients. We genotyped the resulting offspring, assigned paternity, and used aster statistical models to quantify siring success.ResultsSiring success of pollen‐donor plants differed among the five pollinator groups. Nongrooming male bees were associated with increased siring success. Bees from all taxa removed most of the flowering head's pollen in one visit. However, coneflower‐specialist bee Andrena helianthiformis removed the most pollen per visit. Female fitness and proxy measures of male fitness, such as pollinator visitation and pollen removal, did not align with our direct quantifications of male fitness.ConclusionsOur results illustrate the need for more studies to directly quantify male fitness, and we caution against using male fitness proxy measures. In addition, conservation efforts that preserve a diverse pollinator community can benefit plants in fragmented landscapes.

Publisher

Wiley

Subject

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

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