close
Skip to main page content
U.S. flag

An official website of the United States government

Dot gov

The .gov means it’s official.
Federal government websites often end in .gov or .mil. Before sharing sensitive information, make sure you’re on a federal government site.

Https

The site is secure.
The https:// ensures that you are connecting to the official website and that any information you provide is encrypted and transmitted securely.

Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
. 2019 Jun 25;116(26):12895-12900.
doi: 10.1073/pnas.1903866116. Epub 2019 Jun 10.

Climatic shifts drove major contractions in avian latitudinal distributions throughout the Cenozoic

Affiliations

Climatic shifts drove major contractions in avian latitudinal distributions throughout the Cenozoic

Erin E Saupe et al. Proc Natl Acad Sci U S A. .

Abstract

Many higher level avian clades are restricted to Earth's lower latitudes, leading to historical biogeographic reconstructions favoring a Gondwanan origin of crown birds and numerous deep subclades. However, several such "tropical-restricted" clades (TRCs) are represented by stem-lineage fossils well outside the ranges of their closest living relatives, often on northern continents. To assess the drivers of these geographic disjunctions, we combined ecological niche modeling, paleoclimate models, and the early Cenozoic fossil record to examine the influence of climatic change on avian geographic distributions over the last ∼56 million years. By modeling the distribution of suitable habitable area through time, we illustrate that most Paleogene fossil-bearing localities would have been suitable for occupancy by extant TRC representatives when their stem-lineage fossils were deposited. Potentially suitable habitat for these TRCs is inferred to have become progressively restricted toward the tropics throughout the Cenozoic, culminating in relatively narrow circumtropical distributions in the present day. Our results are consistent with coarse-scale niche conservatism at the clade level and support a scenario whereby climate change over geological timescales has largely dictated the geographic distributions of many major avian clades. The distinctive modern bias toward high avian diversity at tropical latitudes for most hierarchical taxonomic levels may therefore represent a relatively recent phenomenon, overprinting a complex biogeographic history of dramatic geographic range shifts driven by Earth's changing climate, variable persistence, and intercontinental dispersal. Earth's current climatic trajectory portends a return to a megathermal state, which may dramatically influence the geographic distributions of many range-restricted extant clades.

Keywords: climate change; ecological niche modeling; historical biogeography; latitudinal diversity gradient; niche conservatism.

PubMed Disclaimer

Conflict of interest statement

The authors declare no conflict of interest.

Figures

Fig. 1.
Fig. 1.
Present-day occurrences for the 10 neornithine clades studied. Geographic ranges are circumtropical and predominantly restricted to vestiges of Gondwana (Africa, South America, and Australasia).
Fig. 2.
Fig. 2.
Present-day occurrences (Top) for Coliidae as derived from GBIF. Using these occurrences, models of abiotic tolerances for this clade were projected onto estimates of past climate conditions at the Ypresian, an interval when numerous fossil representatives of this group were deposited. Note the accurate correspondence between fossil localities (shown on map) and model predictions. Maps are shown for both the least training presence (LTP; green) (Middle) and MaxSSS (blue) (Bottom) threshold methods; pink and white occurrences represent Getech and EarthByte paleo-plate rotational models, respectively (see Methods for details). For other clades, see SI Appendix, Figs. S21–S30.
Fig. 3.
Fig. 3.
Temporal shifts in the centroid of suitable habitat for each clade. Binary suitability maps were converted to polygons and used to find the “center of mass” for areas presenting suitable conditions in each time slice; Northern (blue) and Southern (green) Hemispheres were calculated separately. Results are shown for the least training presence (LTP) threshold; see SI Appendix, Fig. S31 for MaxSSS threshold results.

References

    1. Gill F., Donsker D., Eds., IOC World Bird List (Version 9.1, International Ornithological Congress, 2019), 10.14344/IOC.ML.9.1.
    1. Cracraft J., Avian evolution, Gondwana biogeography and the Cretaceous-Tertiary mass extinction event. Proc. Biol. Sci. 268, 459–469 (2001). - PMC - PubMed
    1. Ericson P. G. P., et al. , Diversification of neoaves: Integration of molecular sequence data and fossils. Biol. Lett. 2, 543–547 (2006). - PMC - PubMed
    1. Jarvis E. D., et al. , Whole-genome analyses resolve early branches in the tree of life of modern birds. Science 346, 1320–1331 (2014). - PMC - PubMed
    1. Prum R. O., et al. , A comprehensive phylogeny of birds (Aves) using targeted next-generation DNA sequencing. Nature 526, 569–573 (2015). - PubMed

Publication types

LinkOut - more resources