FitzPatrick Institute of African Ornithology, DST-NRF Centre of Excellence, University of Cape Town, Private Bag X3, Rondebosch 7701, South Africa.
Department of Zoology, University of Cambridge, Downing Street, Cambridge CB2 3EJ, UK.
Proc Biol Sci. 2020 Jul 29;287(1931):20201140. doi: 10.1098/rspb.2020.1140.
An improved understanding of life-history responses to current environmental variability is required to predict species-specific responses to anthopogenic climate change. Previous research has suggested that cooperation in social groups may buffer individuals against some of the negative effects of unpredictable climates. We use a 15-year dataset on a cooperative breeding arid zone bird, the southern pied babbler , to test (i) whether environmental conditions and group size correlate with survival of young during three development stages (egg, nestling, fledgling) and (ii) whether group size mitigates the impacts of adverse environmental conditions on survival of young. Exposure to high mean daily maximum temperatures (mean T) during early development was associated with reduced survival probabilities of young in all three development stages. No young survived when mean T > 38°C, across all group sizes. Low survival of young at high temperatures has broad implications for recruitment and population persistence in avian communities given the rapid pace of advancing climate change. Impacts of high temperatures on survival of young were not moderated by group size, suggesting that the availability of more helpers in a group is unlikely to buffer against compromised offspring survival as average and maximum temperatures increase with rapid anthropogenic climate change.
需要更好地了解生物对当前环境变化的生活史响应,以预测物种对人为气候变化的特定响应。先前的研究表明,在社会群体中的合作可以减轻不可预测气候的一些负面影响。我们使用了 15 年的关于合作繁殖干旱区鸟类——南方斑胸短翅莺的数据,以检验:(i)在三个发育阶段(卵、雏鸟、幼鸟)中,环境条件和群体大小是否与幼鸟的存活率相关;(ii)群体大小是否减轻了不利环境条件对幼鸟存活率的影响。在早期发育过程中,暴露于高平均每日最高温度(平均 T)与所有三个发育阶段的幼鸟存活率降低有关。在所有群体大小下,当平均 T>38°C 时,没有幼鸟存活。鉴于气候变化的快速步伐,高温对幼鸟存活率的影响对鸟类群落的招募和种群生存具有广泛的影响。幼鸟在高温下的存活率不受群体大小的影响,这表明随着平均温度和最高温度的升高,群体中更多助手的可用性不太可能缓冲受损后代的生存。