Base–compositional biases and the bat problem. III. The question of microchiropteran monophyly
- 29 April 1998
- journal article
- research article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 353 (1368), 607-617
- https://doi.org/10.1098/rstb.1998.0229
Abstract
Using single–copy DNA hybridization, we carried out a whole genome study of 16 bats (from ten families) and five outgroups (two primates and one each dermopteran, scandentian, and marsupial). Three of the bat species represented as many families of Rhinolophoidea, and these always associated with the two representatives of Pteropodidae. All other microchiropterans, however, formed a monophyletic unit displaying interrelationships largely in accord with current opinion. Thus noctilionoids comprised one clade, while vespertilionids, emballonurids, and molossids comprised three others, successively more closely related in that sequence. The unexpected position of rhinolophoids may be due either to the high AT bias they share with pteropodids, or it may be phylogenetically authentic. Reanalysis of the data with varying combinations of the five outgroups does not indicate a rooting problem, and the inclusion of many bat lineages divided at varying levels similarly discounts long branch attraction as an explanation for the pteropodid–rhinolophoid association. If rhinolophoids are indeed specially related to pteropodids, many synapomorphies of Microchiroptera are called into question, not least the unitary evolution of echolocation (although this feature may simply have been lost in pteropodids). Further, a rhinolophoid–pteropodid relationship — if true — has serious implications for the classification of bats. Finally, among the outgroups, an apparent sister–group relation of Dermoptera and Primates suggests that flying lemurs do not represent the ancestors of some or all bats; yet, insofar as gliding of the type implemented in dermopterans is an appropriate model for the evolution of powered mammalian flying, the position of Cynocephalus in our tree indirectly strengthens the argument that true flight could have evolved more than once among bats.Keywords
This publication has 47 references indexed in Scilit:
- Base-compositional biases and the bat problem. II. DNA-hybridization trees based on AT- and GC-enriched tracersPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1998
- Base–compositional biases and the bat problem. I. DNA–hybridization melting curves based on AT– and GC–enriched tracersPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1998
- Evidence on Mammalian Phylogeny from Sequences of Exon 28 of the von Willebrand Factor GeneMolecular Phylogenetics and Evolution, 1996
- Unusual Pattern of Retinogeniculate Projections in the Controversial Primate TarsiusBrain, Behavior and Evolution, 1996
- Phylogeny of the Pteropodidae (Mammalia, Chiroptera) Based on Dna Hybridization, With Evidence for Bat MonophylyAustralian Journal of Zoology, 1995
- Jackknifing of Weighted Trees: Validation of Phylogenies Reconstructed from Distance MatricesMolecular Phylogenetics and Evolution, 1994
- Genomic Evolution: Flying DNACurrent Biology, 1994
- DNA/DNA hybridization studies of the carnivorous marsupials. I: The intergeneric relationships of bandicoots (Marsupialia: Perameloidea)Journal of Molecular Evolution, 1990
- Evidence for echolocation in the oldest known batsNature, 1985
- Early Eocene Bat from WyomingScience, 1966