globalchange  > 气候变化事实与影响
DOI: 10.1111/1365-2435.13274
WOS记录号: WOS:000466375600006
论文题名:
The functional significance of facultative hyperthermia varies with body size and phylogeny in birds
作者: Gerson, Alexander R.1; McKechnie, Andrew E.2,3; Smit, Ben4; Whitfield, Maxine C.3; Smith, Eric K.5; Talbot, William A.5; McWhorter, Todd J.6; Wolf, Blair O.5
通讯作者: Gerson, Alexander R. ; Wolf, Blair O.
刊名: FUNCTIONAL ECOLOGY
ISSN: 0269-8463
EISSN: 1365-2435
出版年: 2019
卷: 33, 期:4, 页码:597-607
语种: 英语
英文关键词: body temperature ; climate change ; Endothermy ; hyperthermia ; ornithology ; thermoregulation ; water balance ; water economy
WOS关键词: EVAPORATIVE COOLING CAPACITY ; HEAT RESTING METABOLISM ; AVIAN THERMOREGULATION ; ADAPTIVE THERMOREGULATION ; WATER-LOSS ; TEMPERATURE ; TOLERANCE ; RESPONSES ; DIVERSITY ; PATTERNS
WOS学科分类: Ecology
WOS研究方向: Environmental Sciences & Ecology
英文摘要:

Facultative hyperthermia, the elevation of body temperature above normothermic levels, during heat exposure, importantly affects the water economy and heat balance of terrestrial endotherms. We currently lack a mechanistic understanding of the benefits hyperthermia provides for avian taxa. Facultative hyperthermia has been proposed to minimize rates of water loss via three distinct mechanisms: M1) by maintaining body temperature (T-b) above environmental temperatures (T-e), heat can be lost non-evaporatively, saving water; M2) by minimizing the thermal gradient when T-e > T-b, environmental heat gain and evaporative water loss rates are reduced; and M3) by storing heat via increases in T-b which reduces evaporative heat loss demands and conserves water. Although individuals may benefit from all three mechanisms during heat exposure, the relative importance of each mechanism has not been quantified among species that differ in their body size, heat tolerance and mechanisms of evaporative heat dissipation. We measured resting metabolism, evaporative water loss and real-time T-b from 33 species of birds representing nine orders ranging in mass from 8 to 300 g and estimated the water savings associated with each proposed mechanism. We show that facultative hyperthermia varies in its benefits among species. Small songbirds with comparatively low evaporative cooling capacities benefit most from (M1), and hyperthermia maintains a thermal gradient that allows non-evaporative heat losses. Other species benefited most from (M2) minimizing evaporative losses via a reduced thermal gradient for heat gain at high T-e. We found that (M3), heat storage, only improved the water economy of the sandgrouse, providing little benefit to other species. We propose that differences in the frequency and magnitude of hyperthermia will drive taxon-specific differences in temperature sensitivity of tissues and enzymes and that the evolution of thermoregulatory mechanisms of evaporative heat dissipation may contribute to differences in basal metabolic rate among avian orders. Understanding the mechanistic basis of heat tolerance is essential to advance our understanding of the ecology of birds living in hot environments that are warming rapidly, where extreme heat events are already re-structuring avian communities.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/132630
Appears in Collections:气候变化事实与影响

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作者单位: 1.Univ Massachusetts, Dept Biol, Amherst, MA 01003 USA
2.South African Natl Biodivers Inst, Natl Zool Garden, South African Res Chair Conservat Physiol, Pretoria, South Africa
3.Univ Pretoria, DST NRF Ctr Excellence FitzPatrick Inst, Dept Zool & Entomol, Hatfield, South Africa
4.Rhodes Univ, DST NRF Ctr Excellence FitzPatrick Inst, Dept Zool & Entomol, Grahamstown, South Africa
5.Univ New Mexico, Dept Biol, Albuquerque, NM 87131 USA
6.Univ Adelaide, Sch Anim & Vet Sci, Adelaide, SA, Australia

Recommended Citation:
Gerson, Alexander R.,McKechnie, Andrew E.,Smit, Ben,et al. The functional significance of facultative hyperthermia varies with body size and phylogeny in birds[J]. FUNCTIONAL ECOLOGY,2019-01-01,33(4):597-607
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