A theory of evolution above the species level.

Steven M. Stanley

Proceedings of the National Academy of Sciences · 1975 · 690 citations · 5 references

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TL;DR

Natural selection acts too slowly within species to explain major evolutionary changes, so transspecific evolution is driven by species selection, which operates on species-level variation analogous to individual-level natural selection. Species selection favors species that speciate rapidly or persist long, and speciation rates can be estimated via exponential growth equations, revealing that mammals have higher rates than bivalve mollusks. Evolutionary change is concentrated in speciation events, with estimated speciation rates higher in mammals than in bivalve mollusks.

Abstract

Gradual evolutionary change by natural selection operates so slowly within established species that it cannot account for the major features of evolution. Evolutionary change tends to be concentrated within speciation events. The direction of transpecific evolution is determined by the process of species selection, which is analogous to natural selection but acts upon species within higher taxa rather than upon individuals within populations. Species selection operates on variation provided by the largely random process of speciation and favors species that speciate at high rates or survive for long periods and therefore tend to leave many daughter species. Rates of speciation can be estimated for living taxa by means of the equation for exponential increase, and are clearly higher for mammals than for bivalve mollusks.

References

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