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Tactical departures and strategic arrivals: Divergent effects of climate and weather on caribou spring migrations

机译:战术出发和战略到达:气候和天气对北美驯鹿春季迁徙的不同影响

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The Arctic has been warming rapidly, affecting ecological processes across the region. Caribou and reindeer (Rangifer tarandus ) is a keystone Arctic species undergoing declines in many parts of its range, but definitive links between climate and populations remain elusive. The conspicuous and dramatic mass migration of many caribou populations, during which nearly all pregnant females move from wintering ranges to calving grounds shortly before giving birth, may be an important link between climate and caribou populations. The drivers of migration, however, are similarly mysterious. It is unknown, for example, whether caribou respond to immediate phenological cues, anticipate conditions on calving grounds, or are driven by lagged effects related to physical condition. To investigate the drivers of migration, we analyzed movement data from over 1000 individual caribou from seven major herds, spanning 3000?km across Alaska, Yukon, Northwest Territories?(NWT), and Nunavut in Canada, from 1995 to 2017. We developed a hierarchical model to estimate migration departure and arrival times, and analyzed these variables against global climate indices and local weather conditions, exploring immediate and lagged effects, as well as snowmelt timing and vegetation indices. We discovered a continent‐wide synchrony in spring migration departure times, driven mainly by large‐scale, ocean‐driven climate indices (Pacific Decadal Oscillation, Arctic Oscillation, and North Atlantic Oscillation). However, we also found that the speed of migration was highly plastic with later?migration departure times?followed by shorter migration durations. This plasticity made arrival timing independent of departure timing and its respective drivers. Rather, arrival timing depended strongly on weather conditions from the previous summer: cooler and windier summers generally led to earlier arrival at calving grounds the following year. We suggest that maternal body condition, mainly influenced by conditions that limit insect harassment, is a major factor for earlier spring migration arrival timing, and therefore earlier calving and higher survival rates. We place these results in the context of mechanistic links between climate and caribou population dynamics. Long‐term and large‐scale observations of migratory animals can provide insights into the mechanisms by which long‐distance, collective migrants may adapt to dynamic and unpredictable environments.
机译:北极一直在迅速变暖,影响了整个地区的生态进程。驯鹿和驯鹿(Rangifer tarandus)是北极的重要物种,在其范围的许多部分都在下降,但气候与人口之间的确定联系仍然难以捉摸。许多驯鹿种群的显着而剧烈的大规模迁徙可能是气候与驯鹿种群之间的重要联系,在此期间,几乎所有怀孕的雌性在分娩前不久就从越冬区移到产犊场。但是,迁移的驱动因素同样是神秘的。例如,驯鹿是否会立即响应物候学线索,预测产犊场的状况,还是受到与身体状况相关的滞后效应的驱动,这是未知的。为了调查移民的动因,我们分析了1995年至2017年横跨加拿大阿拉斯加,育空地区,西北地区和加拿大努纳武特地区3000多公里的7个主要牧群的1000多只北美驯鹿的运动数据。评估移民离开和到达时间的分层模型,并针对全球气候指数和当地天气状况分析了这些变量,探索了直接和滞后的影响,以及融雪时间和植被指数。我们发现春季迁徙出发时间在整个大陆范围内是同步的,这主要是由大型海洋驱动的气候指数(太平洋年代际涛动,北极涛动和北大西洋涛动)驱动的。但是,我们还发现,迁移速度具有较高的可塑性,且迁移时间较晚,随后迁移时间较短。这种可塑性使到达时间独立于出发时间及其各自的驱动因素。相反,到达的时间很大程度上取决于前一个夏天的天气条件:夏天凉爽多风导致第二年更早到达产犊场。我们建议,主要受限制昆虫骚扰的条件所影响的孕产妇身体状况,是春季迁徙到达时间提前的主要因素,因此产犊时间和成活率较高。我们将这些结果放在气候与北美驯鹿种群动态之间的机械联系中。对迁徙动物的长期和大规模观察可以洞察长距离集体移民可能适应动态和不可预测的环境的机制。

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