The global pattern of epiphytic liverwort disparity: insights from Frullania.

BMC Ecol Evol

College of Life and Environmental Sciences, Huangshan University, Huangshan, 245041, China.

Published: May 2024

AI Article Synopsis

  • The study investigates how morphological variation in the liverwort genus Frullania is distributed globally, focusing on the impact of evolutionary history and ecological factors.
  • Researchers compiled data on eight traits from 244 species and found a geographic disparity pattern linked to ancient landmasses Gondwana and Laurasia, indicating ecological opportunities are greater at lower latitudes.
  • The findings suggest that extinction rates in dry tropical areas limit morphological diversity, and long-distance dispersal has influenced how Frullania species are spread across different regions.

Article Abstract

The geographical and ecological patterns of morphological disparity are crucial to understand how species are assembled within communities in the context of the evolutionary history, morphological evolution and ecological interactions. However, with limited exceptions, rather few studies have been conducted on the global pattern of disparity, particularly in early land plants. Here we explored the spatial accumulation of disparity in a morphologically variable and species rich liverwort genus Frullania in order to test the hypothesis of latitude disparity gradient. We compiled a morphological data set consisting of eight continuous traits for 244 currently accepted species, and scored the species distribution into 19 floristic regions worldwide. By reconstructing the morphospace of all defined regions and comparisons, we identified a general Gondwana-Laurasia pattern of disparity in Frullania. This likely results from an increase of ecological opportunities and / or relaxed constraints towards low latitudes. The lowest disparity occurred in arid tropical regions, largely due to a high extinction rate as a consequence of paleoaridification. There was weak correlation between species diversity and disparity at different spatial scales. Furthermore, long-distance dispersal may have partially shaped the present-day distribution of Frullania disparity, given its frequency and the great contribution of widely distributed species to local morphospace. This study not only highlighted the crucial roles of paleoenvironmental changes, ecological opportunities, and efficient dispersal on the global pattern of plant disparity, but also implied its dependence on the ecological and physiological function of traits.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11092184PMC
http://dx.doi.org/10.1186/s12862-024-02254-xDOI Listing

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