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Boudinot, B. E.

Publications and source records attributed to Boudinot, B. E..

3 recordsLinked to original sources

Go thou to the ant: A comparative biomechanical analysis of locomotion in Hymenoptera (Hexapoda)

Although ants are conceived of as paragons of social complexity, it may be their locomotory capacity that truly sets them apart from other Hymenoptera. Based on our comparative kinematic analysis of Formicidae for level, straight-line locomotion in a broad phylogenetic context, we observe that ants are distinctly capable runners. No sampled hymenopteran paralleled the body-scaled speed of ants. Relative stride lengths for ants were longer than other sampled taxa despite short ground contact durations relative to swing durations. With respect to spatial gait patterns, ants had relatively narrow hindleg and broad midleg step-widths on average, possibly enhancing speed and turning ability. Ants were able to extend their propulsive pair of legs, those of the metathorax, extremely far posterad relative to other sampled taxa, and had a distinct locomotory posture, with a high ground clearance and the femorotibial joints raised above their backs. Despite the unique modifications of their coxotrochanteral articulations, ant forelimbs were largely unremarkable with respect to our quantified variables. Sawflies, in contrast, had extremely wide and perhaps inefficient foreleg stances, and were observed for the first time to have what appears to be a dominant tetrapodal gait pattern, which raises unexpected questions about the early evolution of the Hymenoptera. Finally, we observed variability in attachment abilities and no consistent pattern of leg liftoff sequence across the sampled taxa. Our results establish locomotory evolution in the Hymenoptera as a functionally and structurally variable system with numerous directions of future research, particularly for phylogenetic comparison across wing-monomorphic and wing-polymorphic lineages. Summary statementThis work establishes a comparative phylogenetic approach to hymenopteran kinematics, demonstrating that ant locomotory capacity is derived and observes, unexpectedly, that the sampled sawflies (symphyta) never used a tripod gait.

evolutionary biology↗

Evolution and systematics of the Aculeata and kin (Hymenoptera),with emphasis on the ants (Formicoidea: {dagger}@@@idae fam. nov., Formicidae).

Fossils provide unique opportunity to understand the tempo and mode of evolution and are essential for modeling the history of lineage diversification. Here, we interrogate the Mesozoic fossil record of the Aculeata, with emphasis on the ants (Formicidae), and conduct an extended series of ancestral state estimation exercises on distributions of tip-dated combined-evidence phylogenies. We developed and illustrated from ground-up a series of 576 morphological characters which we scored for 144 extant and 431 fossil taxa, including all families of Aculeata, Trigonaloidea, Evanioidea, and {dagger}Ephialtitoidea. We used average posterior probability support to guide composition of a target matrix of 303 taxa, for which we integrated strongly filtered ultraconserved element (UCE) data for 115 living species. We also implemented reversible jump MCMC (rjMCMC) and hidden state methods to model complex behavioral characters to test hypotheses about the pathway to obligate eusociality. In addition to revising the higher classification of all sampled groups to family or subfamily level using estimated character polarities to diagnose nodes across the phylogeny, we find that the mid-Cretaceous genera {dagger}Camelomecia and {dagger}Camelosphecia form a clade which is robustly supported as sister to all living and fossil Formicidae. For this reason, we name this extinct clade as {dagger}@@@idae fam. nov. and provide a definition for the expanded Formicoidea. Based on our results, we recognize three major phases in the early evolution of the ants: (1) origin of Formicoidea as ground-adapted huntresses during the Late Jurassic in the "stinging aggressor" guild (Aculeata) among various lineages of "sneaking parasitoids" (non-aculeate Vespina); (2) the first formicoid radiation during the Early Cretaceous, by the end of which all major extant linages originated; and (3) turnover of the Formicoidea at the end-Cretaceous leading to the second formicoid radiation. We conclude with a concentrated series of considerations for future directions of study with this dataset and beyond.

evolutionary biology↗

Phylogeny, evolution, and classification of the ant genus Lasius, the tribe Lasiini, and the subfamily Formicinae (Hymenoptera: Formicidae)

Within the Formicidae, the higher classification of nearly all subfamilies has been recently revised due to the findings of molecular phylogenetics. Here, we integrate morphology and molecular data to holistically address the evolution and classification of the ant genus Lasius, its tribe Lasiini, and their subfamily Formicinae. We accomplish this through a critical re-examination of morphology of extant and fossil taxa, molecular phylogenetic analyses, total-evidence dating under fossilized birth-death process, phylogeography, and ancestral state estimation. We use these results to provide revised taxonomic definitions for the Lasiini and select genera, and we provide a key to the genera of the Lasiini with emphasis on the Lasius genus group. We find that the crown Lasiini originated around the end of the Cretaceous on the Eurasian continent and is divisible into four morphologically distinct clades: Cladomyrma, the Lasius genus group, the Prenolepis genus group, and a previously undetected lineage we name XXX gen. n. The crown of the Lasius genus group is considerably younger than that of the Prenolepis genus group, indicating that extinction has played a major role in the evolution of the former clade. Lasius itself is divided into two well-supported monophyletic groups which are approximately equally speciose. We present evidence that temporary social parasitism and fungiculture arose in Lasius two times independently. Additionally, we recover the paraphyly of three Lasius subgenera and propose replacing all subgenera with an informal species group classification: Lasius = Acanthomyops syn. rev., = Austrolasius syn. n., = Cautolasius syn. n., = Chthonolasius syn. n., = Dendrolasius syn. n. Total-evidence analysis reveals that the Baltic-region amber fossil species {dagger}Lasius pumilus and {dagger}Pseudolasius boreus are misplaced to genus; we therefore designate {dagger}XXX gen. n. for the former and {dagger}XXX gen. n. for the latter. Further, we transfer {dagger}XXX and {dagger}Glaphyromyrmex out of the tribe, considering the former to be incertae sedis in the subfamily, and the latter a member of the Formicini (tribal transfer). Two final taxonomic actions are deemed necessary: synonymy of Lasius escamole Reza, 1925 with Liometopum apiculatum Mayr, 1870 syn. n. (subfamilial transfer), and transfer of Paratrechina kohli to Anoplolepis (tribal transfer, forming A. kohli (Forel, 1916) n. comb.). Summary of taxonomic actionsO_LISubgenera of Lasius synonymized: Lasius = Acanthomyops syn. rev. = Austrolasius syn. n. = Cautolasius syn. n. = Chthonolasius syn. n. = Dendrolasius syn. n. C_LIO_LILasius myrmidon transferred to XXX gen. n. (Lasiini, XXX genus group). C_LIO_LI{dagger}Lasius pumilus transferred to {dagger}XXX gen. n. (Lasiini, XXX genus group). C_LIO_LI{dagger}Pseudolasius boreus transferred to {dagger}XXX gen. n. (incertae sedis in Formicinae) (tribal transfer). C_LIO_LI{dagger}Glaphyromyrmex transferred to the Formicini from the Lasiini (tribal transfer). C_LIO_LILasius escamole Reza, 1925 synonymized with Liometopum apiculatum Mayr, 1870, syn. n. (subfamilial transfer). C_LIO_LIParatrechina kohli (Forel, 1916) transferred to Anoplolepis (Plagiolepidini) (genus and tribal transfer). C_LI

evolutionary biology↗