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Morphological Diversification under High Integration in a Hyper Diverse Mammal Clade

  • Brandon P. Hedrick
  • , Gregory L. Mutumi
  • , V. David Munteanu
  • , Alexa Sadier
  • , Kalina T.J. Davies
  • , Stephen J. Rossiter
  • , Karen E. Sears
  • , Liliana M. Dávalos
  • , Elizabeth Dumont
  • University of Oxford
  • Harvard University
  • University of California Merced
  • Clemson University
  • University of California at Los Angeles
  • Queen Mary University of London

Research output: Contribution to journalArticlepeer-review

63 Scopus citations

Abstract

Diversification and adaptive radiations are tied to evolvability, which in turn is linked to morphological integration. Tightly integrated structures typically evolve in unison, whereas loosely integrated structures evolve separately. Highly integrated structures are therefore thought to constrain evolutionary change by limiting morphological disparity. Mounting evidence suggests that high integration may facilitate evolutionary change along a single trajectory. We used geometric morphometrics to compare cranial disparity and integration among phyllostomid bats—which exhibit the greatest dietary diversity of any mammalian family— and their sister taxa within the superfamily Noctilionoidea. Our results reveal that phyllostomids are more tightly integrated and have less disparity in cranial shape than their outgroups, despite exhibiting tenfold higher species richness and significantly increased rates of speciation. Phyllostomid cranial morphology appears to have diverged from that of other noctilionoids by evolving along a single axis of morphological variation that describes the relative length of the rostrum. We propose that phyllostomids were able to evolve to occupy a wide range of dietary niches by varying rostrum length, possibly along a line of least evolutionary resistance. This study provides a compelling empirical example of how increased integration can lead to adaptation, implying that both high and low integration can underlie diverse phenotypes in adaptive radiation.

Original languageEnglish
Pages (from-to)563-575
Number of pages13
JournalJournal of Mammalian Evolution
Volume27
Issue number3
DOIs
StatePublished - Sep 1 2020

Keywords

  • Chiroptera
  • Disparity
  • Lines of least evolutionary resistance
  • Morphological evolution
  • Phyllostomidae
  • Three-dimensional geometric morphometrics

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