AI Article Synopsis

  • Evolutionary biologists are investigating the variations in mating strategies within species, focusing on how environmental conditions and human interventions impact these differences.
  • The study examines the common morning glory (*Ipomoea purpurea*) across 22 populations in the U.S., analyzing floral traits, mating systems, and environmental factors.
  • Findings reveal that herbicide resistance significantly influences mating system traits and their correlation with floral characteristics, highlighting the unexpected evolutionary effects of human activities on natural species.

Article Abstract

Evolutionary biologists remain puzzled by the often dramatic variation of mating strategies within single species. Of particular interest is the extent to which environmental conditions shape patterns of variation of mating system components within mixed mating species, and how widespread anthropogenic manipulations may influence these associations. Here, we address this question in the common morning glory (Ipomoea purpurea) by combining a dataset of floral traits, estimates of the mating system, and relevant environmental factors compiled for 22 populations of this species distributed along a wide range of environments from the Southeastern and Midwestern United States. We identify a disparate set of environmental factors to influence population-level variation in selfing, inbreeding, and flower morphology. Although floral traits are primarily associated with climatic variation, the outcrossing rate and inbreeding coefficient are primarily influenced by the level of herbicide resistance. Furthermore, we find that populations with higher levels of herbicide resistance exhibit a stronger correlation between mating system-floral traits and mating system estimates (outcrossing rate and inbreeding coefficient). Altogether, these results demonstrate the dominant role that herbicide application plays in the determination of I. purpurea's mating system, and more generally uncover the complex and unforeseen evolutionary consequences of anthropogenic manipulations in natural systems.

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http://dx.doi.org/10.1093/jhered/esx104DOI Listing

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