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Garcia-Simpson, B.

Publications and source records attributed to Garcia-Simpson, B..

2 recordsLinked to original sources

Mixed-vertebrate pollination traits and pollinators of Haageocereus acranthus (Cactaceae) in a Lomas desert ecosystem of coastal Peru

O_LICacti are key components of arid ecosystems and, as predominantly outcrossing plants, rely on animal pollination. Although bee pollination is ancestral, systems supported by birds, moths, bats, and mixed strategies have evolved. Despite the ecological uniqueness and extreme seasonality of the fog-dependent lomas ecosystem of coastal Peru, cacti pollination remains unstudied. This work examines Haageocereus acranthus, a common columnar cactus of this ecosystem, in a population where individuals consistently produce either white or pink-red flowers. It was hypothesized that white flowers would be associated with bat pollination and pink-red flowers with hummingbird pollination, reflected in differences in floral morphology, phenology and pollinator visitation. C_LIO_LIYear-round monitoring of a population was conducted to characterize flowering phenology. Floral morphology, daily anthesis patterns, and nectar production were quantified and compared between color morphotypes. Floral visitor frequency, behavior and preference were recorded using trail cameras. C_LIO_LIFloral phenology, morphology, and nectar characteristics were broadly consistent with vertebrate pollination, showing traits associated primarily with bat pollination but also compatible with hummingbird pollination. These floral traits did not differ between color morphotype. Hummingbirds were the most frequent visitors, followed by bats; yet, neither group showed a preference for a specific flower color. C_LIO_LIFindings support a mixed pollination system involving both hummingbirds and bats in an ecosystem where the availability of pollinators could shift over geographic or temporal scales. This mixed strategy could reduce vulnerability to the absence or decline of specific pollinator groups, ensuring consistent reproductive success. C_LI Key messageIn a lomas desert ecosystem of coastal Peru, the columnar cactus Haageocereus acranthus shows traits and interactions consistent with a mixed-vertebrate pollination system (hummingbirds and bats), with no detectable differences between flower color morphotypes in either traits or interactions.

ecology↗

The fate of pollen in two morphologically contrasting buzz-pollinated Solanum flowers

Pollen transfer efficiency (PTE) and pollen deposition patterns on a pollinators body significantly influence plant reproductive success. However, studies on pollen fates (i.e., the destination of pollen grains after anther dehiscence) in animal-pollinated species offering pollen as the sole reward are limited. This study investigated pollen fates in two nectarless, buzz-pollinated Solanum species with contrasting floral morphology. Experimental trials were conducted involving one pollen donor and four recipient flowers of Solanum rostratum Dunal or S. dulcamara L., using captive Bombus terrestris L. as pollinator. The number of pollen grains remaining in the anthers, deposited on stigmas, placed on the pollinator, and falling to the ground was quantified. Both species produced a relatively high number of pollen grains as expected for buzz-pollinated plants. Pollen deposition curves followed exponential decay patterns, with a higher number of pollen grains deposited for S. dulcamara, and a similar rate of decline for both species. PTE was similar between species (0.86 % vs. 1.00 %, for S. rostratum and S. dulcamara, respectively) but these values could be 25 % higher if we were to measure pollen deposition in 20 recipients rather than four as in the present study. Although both species had similar PTE values, their pollen fates differed: pollen was mainly lost on the ground in S. rostratum and due to bee grooming in S. dulcamara, potentially explained by their different floral architectures. These findings suggest that species with different flower morphology could exhibit different pollen fates without impacting pollen transfer to conspecific stigmas.

plant biology↗