Modularity increases rate of floral evolution and adaptive success for functionally specialized pollination systems

Author:

Dellinger Agnes S.ORCID,Artuso Silvia,Pamperl SusanneORCID,Michelangeli Fabián A.,Penneys Darin S.,Fernández-Fernández Diana M.,Alvear Marcela,Almeda Frank,Scott Armbruster W.,Staedler Yannick,Schönenberger JürgORCID

Abstract

AbstractAngiosperm flowers have diversified in adaptation to pollinators, but are also shaped by developmental and genetic histories. The relative importance of these factors in structuring floral diversity remains unknown. We assess the effects of development, function and evolutionary history by testing competing hypotheses on floral modularity and shape evolution in Merianieae (Melastomataceae). Merianieae are characterized by different pollinator selection regimes and a developmental constraint: tubular anthers adapted to specialized buzz-pollination. Our analyses of tomography-based 3-dimensional flower models show that pollinators selected for functional modules across developmental units and that patterns of floral modularity changed during pollinator shifts. Further, we show that modularity was crucial for Merianieae to overcome the constraint of their tubular anthers through increased rates of evolution in other flower parts. We conclude that modularity may be key to the adaptive success of functionally specialized pollination systems by making flowers flexible (evolvable) for adaptation to changing selection regimes.

Funder

NSF | BIO | Division of Environmental Biology

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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