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- W2169462417 abstract "Abstract There is a long tradition in ecology of studying models of biodiversity at equilibrium. These models, including the influential Neutral Theory of Biodiversity, have been successful at predicting major macroecological patterns, such as species abundance distributions. But they have failed to predict macroevolutionary patterns, such as those captured in phylogenetic trees. Here, we develop a model of biodiversity in which all individuals have identical demographic rates, metacommunity size is allowed to vary stochastically according to population dynamics, and speciation arises naturally from the accumulation of point mutations. We show that this model generates phylogenies matching those observed in nature if the metacommunity is out of equilibrium. We develop a likelihood inference framework that allows fitting our model to empirical phylogenies, and apply this framework to various mammalian families. Our results corroborate the hypothesis that biodiversity dynamics are out of equilibrium." @default.
- W2169462417 created "2016-06-24" @default.
- W2169462417 creator A5041891931 @default.
- W2169462417 creator A5043927899 @default.
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- W2169462417 date "2015-02-24" @default.
- W2169462417 modified "2023-10-13" @default.
- W2169462417 title "Phylogenies support out-of-equilibrium models of biodiversity" @default.
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- W2169462417 doi "https://doi.org/10.1111/ele.12415" @default.
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