Department of Ecology and Evolution, Stony Brook University, Stony Brook, New York, 11790, USA.
Biology Department, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts, 02543, USA.
Ecology. 2017 Apr;98(4):940-951. doi: 10.1002/ecy.1749. Epub 2017 Mar 20.
Evidence of climate-change-driven shifts in plant and animal phenology have raised concerns that certain trophic interactions may be increasingly mismatched in time, resulting in declines in reproductive success. Given the constraints imposed by extreme seasonality at high latitudes and the rapid shifts in phenology seen in the Arctic, we would also expect Antarctic species to be highly vulnerable to climate-change-driven phenological mismatches with their environment. However, few studies have assessed the impacts of phenological change in Antarctica. Using the largest database of phytoplankton phenology, sea-ice phenology, and Adélie Penguin breeding phenology and breeding success assembled to date, we find that, while a temporal match between Penguin breeding phenology and optimal environmental conditions sets an upper limit on breeding success, only a weak relationship to the mean exists. Despite previous work suggesting that divergent trends in Adélie Penguin breeding phenology are apparent across the Antarctic continent, we find no such trends. Furthermore, we find no trend in the magnitude of phenological mismatch, suggesting that mismatch is driven by interannual variability in environmental conditions rather than climate-change-driven trends, as observed in other systems. We propose several criteria necessary for a species to experience a strong climate-change-driven phenological mismatch, of which several may be violated by this system.
气候变化导致植物和动物物候变化的证据引起了人们的担忧,即某些营养相互作用可能在时间上越来越不匹配,从而导致繁殖成功率下降。鉴于高纬度地区极端季节性的限制以及北极地区物候的快速变化,我们还预计南极物种将非常容易受到气候变化导致的与环境的物候不匹配的影响。然而,很少有研究评估气候变化对南极洲的影响。利用迄今为止收集的最大的浮游植物物候、海冰物候和阿德利企鹅繁殖物候和繁殖成功率数据库,我们发现,虽然企鹅繁殖物候与最佳环境条件的时间匹配设定了繁殖成功率的上限,但与平均值之间仅存在弱关系。尽管之前的工作表明,阿德利企鹅繁殖物候在整个南极大陆上存在明显的分歧趋势,但我们没有发现这种趋势。此外,我们没有发现物候不匹配幅度的趋势,这表明不匹配是由环境条件的年际变化驱动的,而不是像在其他系统中观察到的气候变化驱动的趋势。我们提出了物种经历强烈气候变化驱动的物候不匹配所需的几个标准,其中一些标准可能会被该系统违反。