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时空三营养层物候匹配失配。

Tritrophic phenological match-mismatch in space and time.

机构信息

RSPB Centre for Conservation Science, Sandy, UK.

Centre for Research in Animal Behaviour, University of Exeter, Exeter, UK.

出版信息

Nat Ecol Evol. 2018 Jun;2(6):970-975. doi: 10.1038/s41559-018-0543-1. Epub 2018 Apr 23.

DOI:10.1038/s41559-018-0543-1
PMID:29686235
Abstract

Increasing temperatures associated with climate change may generate phenological mismatches that disrupt previously synchronous trophic interactions. Most work on mismatch has focused on temporal trends, whereas spatial variation in the degree of trophic synchrony has largely been neglected, even though the degree to which mismatch varies in space has implications for meso-scale population dynamics and evolution. Here we quantify latitudinal trends in phenological mismatch, using phenological data on an oak-caterpillar-bird system from across the UK. Increasing latitude delays phenology of all species, but more so for oak, resulting in a shorter interval between leaf emergence and peak caterpillar biomass at northern locations. Asynchrony found between peak caterpillar biomass and peak nestling demand of blue tits, great tits and pied flycatchers increases in earlier (warm) springs. There is no evidence of spatial variation in the timing of peak nestling demand relative to peak caterpillar biomass for any species. Phenological mismatch alone is thus unlikely to explain spatial variation in population trends. Given projections of continued spring warming, we predict that temperate forest birds will become increasingly mismatched with peak caterpillar timing. Latitudinal invariance in the direction of mismatch may act as a double-edged sword that presents no opportunities for spatial buffering from the effects of mismatch on population size, but generates spatially consistent directional selection on timing, which could facilitate rapid evolutionary change.

摘要

与气候变化相关的温度升高可能会产生物候不匹配,从而破坏以前同步的营养相互作用。大多数关于不匹配的研究都集中在时间趋势上,而营养同步程度的空间变化在很大程度上被忽视了,尽管不匹配在空间上的变化程度对中尺度种群动态和进化有影响。在这里,我们使用来自英国各地的橡树-毛毛虫-鸟类系统的物候数据,量化了物候不匹配的纬度趋势。纬度的增加会延迟所有物种的物候期,但对橡树的影响更大,导致在北部地区叶片出现和毛毛虫生物量峰值之间的间隔更短。在更早(温暖)的春天,发现蓝山雀、大山雀和白眉鸫的高峰期幼虫生物量和高峰期雏鸟需求之间存在不同步现象。对于任何物种,都没有证据表明高峰期雏鸟需求相对于高峰期毛毛虫生物量的时间存在空间变化。因此,物候不匹配本身不太可能解释种群趋势的空间变化。鉴于春季持续变暖的预测,我们预测温带森林鸟类将与毛毛虫高峰期的时间越来越不匹配。不匹配方向的纬度不变性可能是一把双刃剑,它为种群大小免受不匹配影响提供了空间缓冲的机会,但对时间产生了一致的定向选择,这可能促进了快速的进化变化。

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