Effects of temperature experienced across life stages on morphology and flight behavior of painted lady butterflies (Vanessa cardui)

被引:0
作者
Mesler, Sarah P. [1 ]
Mabry, Karen E. [1 ]
机构
[1] New Mexico State Univ, Dept Biol, MSC 3AF, Las Cruces, NM 88003 USA
关键词
Climate change; Temperature; Flight; Movement behavior; Butterfly; SIZE RULE; BODY-SIZE; PERFORMANCE; ECTOTHERMS; RESPONSES; CLIMATE; CONSEQUENCES; ARTHROPODS; MIGRATION;
D O I
10.1186/s40462-024-00516-3
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
BackgroundWith ongoing anthropogenic climate change, there is increasing interest in how organisms are affected by higher temperatures, including how animals respond behaviorally to increasing temperatures. Movement behavior is especially relevant, as the ability of a species to shift its range is implicitly dependent upon movement capacity and motivation. Temperature may influence movement behavior of ectotherms both directly, through an increase in body temperature, and indirectly, through temperature-dependent effects on physiological and morphological traits.MethodsWe investigated the influence of ambient temperature during two life stages, larval and adult, on body size and movement behavior of the painted lady butterfly (Vanessa cardui). We reared painted ladies to emergence at either a "low" (24 degrees C) or "high" (28 degrees C) temperature. At eclosion, we assessed flight behavior in an arena test. We used a full factorial experimental design in which half of the adults that emerged from each rearing treatment were tested at either the "low" or "high" temperature. We measured adult body size, including wingspan, and determined flight speed, distance, and duration from video recordings.ResultsAdult butterflies that experienced the higher temperature during development were larger. We documented an interaction of rearing x testing temperature on flight behavior: unexpectedly, the fastest butterflies were those who experienced a change in temperature, whether an increase or decrease, between rearing and testing. Individuals that experienced matching thermal environments flew more slowly, but for more time and covering more distance. We found no influence of body size per se on flight.ConclusionsWe conclude that the potential role of "matching" thermal environments across life stages has been underinvestigated with regard to how organisms may respond to warming conditions.
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页数:8
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共 45 条
[1]  
Angilletta MJ, 2009, BIO HABIT, P1, DOI 10.1093/acprof:oso/9780198570875.001.1
[2]  
Angilletta MJ, 2003, AM NAT, V162, P332
[3]   Wing shape-mediated carry-over effects of a heat wave during the larval stage on post-metamorphic locomotor ability [J].
Arambourou, Helene ;
Sanmartin-Villar, Iago ;
Stoks, Robby .
OECOLOGIA, 2017, 184 (01) :279-291
[4]   TEMPERATURE AND ORGANISM SIZE - A BIOLOGICAL LAW FOR ECTOTHERMS [J].
ATKINSON, D .
ADVANCES IN ECOLOGICAL RESEARCH, VOL 25, 1994, 25 :1-58
[5]   Integrating across life-history stages: Consequences of natal habitat effects on dispersal [J].
Benard, Michael F. ;
McCauley, Shannon J. .
AMERICAN NATURALIST, 2008, 171 (05) :553-567
[6]   Does flight morphology relate to flight performance?: An experimental test with the butterfly Pararge aegeria [J].
Berwaerts, K ;
Van Dyck, H ;
Aerts, P .
FUNCTIONAL ECOLOGY, 2002, 16 (04) :484-491
[7]   Causes and consequences of animal dispersal strategies: relating individual behaviour to spatial dynamics [J].
Bowler, DE ;
Benton, TG .
BIOLOGICAL REVIEWS, 2005, 80 (02) :205-225
[8]   Warming experiments test the temperature sensitivity of an endangered butterfly across life history stages [J].
Bristow, Lainey V. ;
Grundel, Ralph ;
Dzurisin, Jason D. K. ;
Wu, Grace C. ;
Li, Yudi ;
Hildreth, Andrew ;
Hellmann, Jessica J. .
JOURNAL OF INSECT CONSERVATION, 2024, 28 (01) :1-13
[9]   Modelling species' range shifts in a changing climate: The impacts of biotic interactions, dispersal distance and the rate of climate change [J].
Brooker, Rob W. ;
Travis, Justin M. J. ;
Clark, Ewen J. ;
Dytham, Calvin .
JOURNAL OF THEORETICAL BIOLOGY, 2007, 245 (01) :59-65
[10]   Multiple temperature effects on phenology and body size in wild butterflies predict a complex response to climate change [J].
Davies, W. James .
ECOLOGY, 2019, 100 (04)