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Long-term data reveal effects of climate, road access, and latitude on mountain goat horn size
by
White, Kevin S.
, Martchenko, Daria
, Shafer, Aaron B. A.
in
Alaska
/ Animals
/ artificial selection
/ British Columbia
/ climate
/ Climate effects
/ Environmental conditions
/ Geographical distribution
/ Geographical locations
/ Goats
/ Harvesting
/ Horns
/ latitude
/ long‐term study
/ mountain goat
/ Mountains
/ Oreamnos americanus
/ Population Ecology
/ range‐wide variation
/ ungulate headgear
/ Ungulates
/ Variation
/ wildlife management
2022
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Long-term data reveal effects of climate, road access, and latitude on mountain goat horn size
by
White, Kevin S.
, Martchenko, Daria
, Shafer, Aaron B. A.
in
Alaska
/ Animals
/ artificial selection
/ British Columbia
/ climate
/ Climate effects
/ Environmental conditions
/ Geographical distribution
/ Geographical locations
/ Goats
/ Harvesting
/ Horns
/ latitude
/ long‐term study
/ mountain goat
/ Mountains
/ Oreamnos americanus
/ Population Ecology
/ range‐wide variation
/ ungulate headgear
/ Ungulates
/ Variation
/ wildlife management
2022
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Long-term data reveal effects of climate, road access, and latitude on mountain goat horn size
by
White, Kevin S.
, Martchenko, Daria
, Shafer, Aaron B. A.
in
Alaska
/ Animals
/ artificial selection
/ British Columbia
/ climate
/ Climate effects
/ Environmental conditions
/ Geographical distribution
/ Geographical locations
/ Goats
/ Harvesting
/ Horns
/ latitude
/ long‐term study
/ mountain goat
/ Mountains
/ Oreamnos americanus
/ Population Ecology
/ range‐wide variation
/ ungulate headgear
/ Ungulates
/ Variation
/ wildlife management
2022
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Long-term data reveal effects of climate, road access, and latitude on mountain goat horn size
Journal Article
Long-term data reveal effects of climate, road access, and latitude on mountain goat horn size
2022
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Overview
Potential negative artificial selection on horn size is a concern for many harvested ungulates. The mountain goat (Oreamnos americanus) has distinct black horns, but targeting animals based on horn size in the field can be challenging. We analyzed over 23,000 horn records that included base circumference and total length, from which we also derived horn volume, from mountain goats harvested in Alaska, British Columbia, and the Northwest Territories from 1980 to 2016. We tested 3 potential drivers of horn size variation: geographical location, environmental conditions, and artificial selection. We found no support for a latitudinal effect with surprisingly little variation across the sampling distribution. The Pacific Decadal Oscillation had the largest effect outside age in the model, suggesting a role of climate in shaping variation. Mountain goats harvested closer to roads had larger horns, indicating that ease of access might allow hunters to be more selective, though the effect size was small. Our findings reinforce the value of accurate and complete record keeping on horn size, age, and sex of harvested animals, and highlight the importance of explicitly considering climate and accessibility when devising management strategies for the mountain goat.
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