Search bioRxiv⌕ Search

Biology subjects

de Queiroz, L. P.

Publications and source records attributed to de Queiroz, L. P..

2 recordsLinked to original sources

Did Moldehawera flowers evolve through mimicry with oil-producing Malpighiaceae?

Floral mimicry is a captivating phenomenon wherein flowers imitate traits of other species to attract specific pollinators. The Caesalpinioideae legumes in general have relatively unspecialized flowers, which has allowed the development of disparate morphologies associated with adaptation to different types of pollinators. This study describes the pollination of Moldenhawera nutans and explores its potential floral mimicry towards Malpighiaceae flowers. Our investigation revealed that M. nutans is pollinated by species of Centris Fabricius, 1804 and Xylocopa Latreille, 1802. It also presents compelling evidence supporting the hypothesis of floral mimicry, including striking similarities in floral display, shared oil-collecting pollinators, oil collection behavior in M. nutans despite the absence of oil production, and the reliance on exogenous pollen for reproduction. These findings suggest that species of Centris bees visit M. nutans flowers under the mistaken impression of oil availability, subsequently transitioning to pollen collection. We explored other potential cases of floral mimicry with Malpighiaceae in the Caesalpinioideae legumes by optimizing the Malpighiaceae-like floral display on a dated phylogeny of this subfamily. However, current information does not allow us to determine whether the similarities in floral morphology represent cases of floral mimicry, phylogenetic inertia, or simple convergence. Several hypothesis tests are suggested that can guide the study of these fascinating evolutionary processes in the group.

plant biology↗

Precipitation is the main axis of tropical phylogenetic turnover across space and time

Early natural historians - Compte de Buffon, von Humboldt and De Candolle - established ecology and geography as two principal axes determining the distribution of groups of organisms, laying the foundations for biogeography over the subsequent 200 years, yet the relative importance of these two axes remains unresolved. Leveraging phylogenomic and global species distribution data for Mimosoid legumes, an pantropical plant clade of 3,400 species, we show that the water availability gradient from deserts to rainforests dictates turnover of lineages within continents across the tropics. We demonstrate that 95% of speciation occurs within a precipitation niche, showing profound phylogenetic niche conservatism, and that lineage turnover boundaries coincide with isohyets of precipitation. We reveal similar patterns on different continents, implying that evolution and dispersal follow universal processes.

evolutionary biology↗