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Biology subjects

Brown, M. J. M.

Publications and source records attributed to Brown, M. J. M..

2 recordsLinked to original sources

Extinction risk predictions for the world's flowering plants to support their conservation

O_LIMore than 70% of all vascular plants lack conservation status assessments. We aimed to address this shortfall in knowledge of species extinction risk by using the World Checklist of Vascular Plants to generate the first comprehensive set of predictions for a large clade: angiosperms (flowering plants, [~]330,000 species). C_LIO_LIWe used Bayesian Additive Regression Trees (BART) to predict the extinction risk of all angiosperms using predictors relating to range size, human footprint, climate, and evolutionary history and applied a novel approach to estimate uncertainty of individual species level predictions. C_LIO_LIFrom our model predictions we estimate 45.1% of angiosperm species are potentially threatened with a lower bound of 44.5% and upper bound of 45.7%. C_LIO_LIOur species-level predictions, with associated uncertainty estimates, do not replace full Red List assessments, but can be used to prioritise predicted threatened species for full Red List assessment and fast-track predicted non-threatened species for Least Concern assessments. Our predictions and uncertainty estimates can also guide fieldwork, inform systematic conservation planning and support global plant conservation efforts and targets. C_LI

ecology↗

The global biogeography of angiosperm genome size is shaped by climate and range size

O_LIAngiosperms, which inhabit diverse environments across all continents, exhibit significant variation in genome sizes, making them an excellent model system for examining hypotheses about the global distribution of genome size. These include the previously proposed large-genome-constraint, mutational-hazard, polyploidy-mediated, and climate-mediated hypotheses. C_LIO_LIWe compiled the largest genome size dataset to date, encompassing >5% of known angiosperm species, and analyzed genome size distribution using a comprehensive geographic distribution dataset for all angiosperms. C_LIO_LIWe observed that angiosperms with large range sizes generally had small genomes, supporting the large-genome-constraint hypothesis. Climate was shown to exert a strong influence on genome size distribution along the global latitudinal gradient, while the frequency of polyploidy and the type of growth form had negligible effects. In contrast to the unimodal patterns along the global latitudinal gradient shown by plant size traits and polyploid proportions, the increase in angiosperm genome size from the equator to 40-50{degrees}N/S is probably mediated by different (mostly climatic) mechanisms than the decrease in genome sizes observed from 40-50{degrees}N northwards. C_LIO_LIOur analysis suggests that the global distribution of genome sizes in angiosperms is mainly shaped by climatically-mediated purifying selection, genetic drift, relaxed selection, and environmental filtering. C_LI

evolutionary biology↗