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Baine, Q.

Publications and source records attributed to Baine, Q..

3 recordsLinked to original sources

NM-RARe: A FRAMEWORK FOR REGIONAL ARTHROPOD CONSERVATION ASSESSMENT: INSIGHTS FROM NEW MEXICO

Arthropods represent the most species-rich animal group on the planet, yet they remain largely overlooked in formal conservation planning. New Mexico is a US state with exceptional biodiversity, including numerous endemic, rare, and threatened arthropod species. Recent attention to global insect declines has highlighted the need to document possible threats to and declines of New Mexico insects and other arthropods. All terrestrial arthropods in New Mexico lacked state-level regulatory protection until 2025, and baseline data on the taxonomy, ecology, geographic distribution and conservation needs for most New Mexico arthropod species remained absent. To address this gap, we developed the New Mexico Rare Arthropod Resource (NM-RARe), a publicly accessible regional database for arthropod species and subspecies of conservation concern in New Mexico. Drawing from multiple vetted sources, we compiled an initial working list of 7,018 taxa and conducted 261 preliminary IUCN Red List assessments and 185 NatureServe state rank assessments, covering 285 total taxa. Of those assessed by IUCN Red List standards, 52 were subspecies and 209 were species level assessments, 165 of which met the criteria for inclusion and were incorporated into the NM-RARe database (https://nmrare.org/). Ninety-three of the pollinating insect species from NM-RARe were then formally incorporated into New Mexico's 2025 State Wildlife Action Plan (SWAP), representing a significant conservation milestone. Beyond its immediate regional impact, NM-RARe presents a standardized, scalable methodology adaptable to any region or taxonomic group, offering a replicable framework for arthropod conservation assessment worldwide.

ecology↗

Rediscovery and ecology of the Capulin Mountain Alberta arctic butterfly: informing data collection for rare endemics

Insect conservation in the southwestern United States is hindered by limited information on distribution, phenology, and habitat, especially for small-range endemics. The Capulin Mountain Alberta Arctic butterfly (Oeneis alberta capulinensis F.M. Brown, 1970), a New Mexico Species of Greatest Conservation Need, is restricted to the Raton Mesa Complex and threatened by isolation, low dispersal, and extirpation from its type locality. We surveyed historic and potential sites to document current distribution, refine flight phenology, investigate larval host plant use, and assess habitat condition. Our results confirm extant populations, identify the larval host plant (Festuca idahoensis Elmer), and describe habitat as montane grasslands with limited woody encroachment. A habitat suitability model predicted additional potentially occupied areas, highlighting under-explored habitat for future monitoring. This study provides the first comprehensive ecological assessment of O. a. capulinensis and establishes a framework for documenting poorly known endemic insects to guide future research and survey design.

ecology↗

Arthropod communities associated with gall-inducing Aciurina bigeloviae and Aciurina trixa (Diptera: Tephritidae) in New Mexico

Insect-induced galls are novel structures that serve as habitat to whole communities of associate arthropods that include predators, parasitoids and inquilines. Galling insects are generally under-described, but their associate communities, which can include many specialist organisms, are virtually unknown, particularly in the southwest United States. Aciurina bigeloviae (Cockerell 1890) and Aciurina trixa Curran 1932 are unusually common and abundant galling flies in New Mexico. The 2 species are sister and occur in sympatric areas but have distinct gall morphologies. We reared all arthropods from 3800 galls from 14 sites in the northern and central regions of the state and as a result characterized the complete communities of both species, including barcode sequences and eclosion phenology. We also investigate interactions of A. trixa galls with the abundant inquiline weevil Anthonomus cycliferus Fall 1913 and find no measurable effect of inquiline abundance on the size of the emerged adult fly or gall. The total species count is 24 and includes 6 guilds; both A. bigeloviae and A. trixa communities are richer and more complex than other documented Tephritidae-Asteraceae galling systems. This study highlights the potential of galling insects as ecosystem engineers to maintain large, rich and multi-trophic communities.

ecology↗