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DOI10.3389/fevo.2019.00097
Starting on the Right Foot: Carryover Effects of Larval Hydroperiod and Terrain Moisture on Post-metamorphic Frog Movement Behavior
Bredeweg, Evan M.1; Urbina, Jenny1; Morzillo, Anita T.2; Garcia, Tiffany S.1
发表日期2019
ISSN2296-701X
卷号7
英文摘要

Changing patterns of precipitation and drought will dramatically influence the distribution and persistence of lentic habitats. Pond-breeding amphibians can often respond to changes in habitat by plastically shifting behavioral and developmental trait response. However, fitness tradeoffs inherent in life history strategies can carry over to impact development, behavior, and fitness in later life stages. In this experiment, we investigated carryover effects of hydroperiod permanence on the movement behavior of newly-metamorphosed juvenile Northern Red-legged Frogs (Rana aurora). Frogs were raised through metamorphosis in mesocosms under either permanent or ephemeral hydroperiod conditions. After metamorphosis, individuals were removed from the mesocosms, measured, uniquely tagged with elastomer, and moved to holding terrariums. Movement behavior was quantified under two terrain conditions: a physiologically-taxing, dry runway treatment, or a control, moist runway treatment. Individuals were given 30 min to move down the 1 x 20 m enclosed structure before distance was measured. We applied a hurdle model to examine two distinct components of movement behavior: (1) the probability of moving away from the start location, and (2) movement distance. We found that hydroperiod condition had an indirect carryover effect on movement via the relationship between individual size and the propensity to move. Individuals from ephemeral mesocosm conditions metamorphosed at a smaller size but showed increased growth rates as compared to individuals from permanent hydroperiod conditions. Individual snout-vent length and runway condition (moist or dry) were significant predictors of both aspects of movement behavior. Larger individuals were more likely to move down the runway and able to move a farther distance than smaller individuals. In addition to the influence of size, dry runway conditions reduced the probability of individuals moving from the start location, but increased the distance traveled relative to the moist runway. The demonstrated cumulative impact of stressors suggests the importance of addressing direct, indirect, and carryover effects of stressors throughout ontogeny.


WOS研究方向Environmental Sciences & Ecology
来源期刊FRONTIERS IN ECOLOGY AND EVOLUTION
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/96283
作者单位1.Oregon State Univ, Dept Fisheries & Wildlife, Corvallis, OR 97331 USA;
2.Univ Connecticut, Dept Nat Resources & Environm, Storrs, CT USA
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GB/T 7714
Bredeweg, Evan M.,Urbina, Jenny,Morzillo, Anita T.,et al. Starting on the Right Foot: Carryover Effects of Larval Hydroperiod and Terrain Moisture on Post-metamorphic Frog Movement Behavior[J],2019,7.
APA Bredeweg, Evan M.,Urbina, Jenny,Morzillo, Anita T.,&Garcia, Tiffany S..(2019).Starting on the Right Foot: Carryover Effects of Larval Hydroperiod and Terrain Moisture on Post-metamorphic Frog Movement Behavior.FRONTIERS IN ECOLOGY AND EVOLUTION,7.
MLA Bredeweg, Evan M.,et al."Starting on the Right Foot: Carryover Effects of Larval Hydroperiod and Terrain Moisture on Post-metamorphic Frog Movement Behavior".FRONTIERS IN ECOLOGY AND EVOLUTION 7(2019).
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