Merging indigenous and scientific knowledge links climate with the growth of a large migratory caribou population

被引:23
作者
Gagnon, Catherine A. [1 ,2 ]
Hamel, Sandra [3 ,4 ]
Russell, Don E. [5 ]
Powell, Todd [6 ]
Andre, James [7 ]
Svoboda, Michael Y. [8 ]
Berteaux, Dominique [1 ,2 ]
机构
[1] Univ Quebec, Ctr Northern Studies, Canada Res Chair Northern Biodivers, Rimouski, PQ, Canada
[2] Univ Quebec, Quebec Ctr Biodivers Sci, Rimouski, PQ, Canada
[3] UiT Arctic Univ Norway, Dept Arctic & Marine Biol, Tromso, Norway
[4] Univ Laval, Dept Biol, Quebec City, PQ, Canada
[5] Yukon Coll, Whitehorse, YT, Canada
[6] Yukon Govt, Dept Environm, Whitehorse, YT, Canada
[7] Arctic Borderlands Ecol Knowledge Soc, Whitehorse, YT, Canada
[8] Environm & Climate Change Canada, Canadian Wildlife Serv, Whitehorse, YT, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
body condition; caribou; community-based monitoring; demography; icing events; indigenous knowledge; seasonal; snow; RANGIFER-TARANDUS; BODY CONDITION; REPRODUCTIVE SUCCESS; DENSITY-DEPENDENCE; PLANT PHENOLOGY; ARCTIC REINDEER; MASS; DYNAMICS; WINTER; VARIABILITY;
D O I
10.1111/1365-2664.13558
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Climate change in the Arctic is two to three times faster than anywhere else in the world. It is therefore crucial to understand the effects of weather on keystone arctic species, particularly those such as caribou (Rangifer tarandus) that sustain northern communities. Bridging long-term scientific and indigenous knowledge offers a promising path to achieve this goal, as both types of knowledge can complement one another. We assessed the influence of environmental variables on the spring and fall body condition of caribou from the Porcupine Caribou Herd. This herd ranges in the Yukon and Northwest Territories (Canada) and Alaska (USA), and is the only large North American herd that has not declined since the 2000s. Using observations recorded through an indigenous community-based monitoring programme between 2000 and 2010, we analysed temporal trends in caribou condition and quantified the effects of weather and critical weather-dependent variables (insect harassment and vegetation growth), on spring (n = 617 individuals) and fall (n = 711) caribou condition. Both spring and fall body condition improved from 2000 to 2010, despite a continuous population increase of ca. 3.6% per year. Spring and fall caribou condition were influenced by weather on the winter and spring ranges, particularly snow conditions and spring temperatures. Both snow conditions and spring temperatures improved during our study period, likely contributing to the observed caribou population increase. Insect harassment during the previous summer and the frequency of icing events also influenced caribou condition. Synthesis and applications. Our study shows how untangling the relative influences of seasonal weather variables allows a much better understanding of variation in seasonal body condition of caribou. It indicates that a large migratory caribou population can grow and improve condition in a global context of caribou decline and climate warming, thereby warning against generalizations about the influence of climate on all caribou populations. Finally, it testifies how data from indigenous community-based monitoring can remarkably improve ecological understanding of wildlife sustaining human communities. Where possible, we recommend management practices that respectfully engage with indigenous community-based monitoring, as this can enhance knowledge and relationships with communities, both prerequisites of successful resource management.
引用
收藏
页码:1644 / 1655
页数:12
相关论文
共 66 条
[31]  
Kofinas Gary, 2003, Rangifer Special Issue, V14, P43
[32]  
LAPERRIERE AJ, 1977, ARCTIC, V30, P101
[33]   Climate change and caribou: effects of summer weather on forage [J].
Lenart, EA ;
Bowyer, RT ;
Hoef, JV ;
Ruess, RW .
CANADIAN JOURNAL OF ZOOLOGY, 2002, 80 (04) :664-678
[34]  
Lyver POB, 2005, ARCTIC, V58, P44
[35]   Use of climatic data to model the presence of oestrid flies in caribou herds [J].
Mörschel, FM .
JOURNAL OF WILDLIFE MANAGEMENT, 1999, 63 (02) :588-593
[36]   Hierarchical path analysis of deer responses to direct and indirect effects of climate in northern forest [J].
Mysterud, Atle ;
Yoccoz, Nigel G. ;
Langvatn, Rolf ;
Pettorelli, Nathalie ;
Stenseth, Nils Chr. .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2008, 363 (1501) :2359-2368
[37]  
Nadasdy P, 1999, ARCTIC ANTHROPOL, V36, P1
[38]  
*NASA, 2017, GOAL MOD ASS OFF MOD
[39]  
*NAT WEATH SERV, 2017, MON WEATH CLIM
[40]   Nutrition integrates environmental responses of ungulates [J].
Parker, Katherine L. ;
Barboza, Perry S. ;
Gillingham, Michael P. .
FUNCTIONAL ECOLOGY, 2009, 23 (01) :57-69