Published August 6, 2020 | Version v1

Phylogenomics of monitor lizards and the role of competition in dictating body size disparity

  • 1. Australian National University
  • 2. Department of Biological Science, Florida State University, Tallahassee, FL, USA*
  • 3. Severtsov Institute of Ecology and Evolution
  • 4. Meyer Turku (Finland)
  • 5. Kansas Academy of Science
  • 6. University of Adelaide
  • 7. University of Canberra

Description

Organismal interactions drive the accumulation of diversity by influencing species ranges, morphology, and behavior. Interactions vary from agonistic to cooperative and should result in predictable patterns in trait and range evolution. However, despite a conceptual understanding of these processes, they have been difficult to model, particularly on macroevolutionary timescales and across broad geographic spaces. Here we investigate the influence of biotic interactions on trait evolution and community assembly in monitor lizards (Varanus). Monitors are an iconic radiation with a cosmopolitan distribution and the greatest size disparity of any living terrestrial vertebrate genus. Between the colossal Komodo dragon Varanus komodoensis and the smallest Australian dwarf goannas, Varanus length and mass vary by multiple orders of magnitude. To test the hypothesis that size variation in this genus was driven by character displacement, we extended existing phylogenetic comparative methods which consider lineage interactions to account for dynamic biogeographic history and apply these methods to Australian monitors and marsupial predators. Incorporating both exon-capture molecular and morphological datasets we use a combined evidence approach to estimate the relationships among living and extinct varaniform lizards. Our results suggest that communities of Australian Varanus show high functional diversity as a result of continent-wide interspecific competition among monitors but not with faunivorous marsupials. We demonstrate that patterns of trait evolution resulting from character displacement on continental scales are recoverable from comparative data and highlight that these macroevolutionary patterns may develop in parallel across widely distributed sympatric groups.

Notes

This Dryad project holds the molecular, morphological, and distributional data, as well as R scripts and walk-throughs of the analyses required to repeat our study on monitor lizard phylogenetics and evolution. Data and code (with the exception of molecular alignments) can also be found at:
www.github.com/IanGBrennan/MonitorPhylogenomics

Funding provided by: Australian Government
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100015539
Award Number: International Postgraduate Research Scholarship,

Funding provided by: Australian Research Council
Crossref Funder Registry ID: http://dx.doi.org/10.13039/501100000923
Award Number:

Files

Varanus_Manuscript_SysBio_Supplemental.pdf

Files (85.3 MB)

Name Size
md5:b748871d5ea662fabcfed8e305cd32e8
16.3 MB Preview Download
md5:cc2e0040631a47312564ce6ff14be712
18.5 MB Preview Download
md5:1293a7c5f88077001704e6baf32f128b
50.5 MB Preview Download

Additional details

Related works

Is cited by
10.1093/sysbio/syaa046 (DOI)