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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >A review of climate-driven mismatches between interdependent phenophases in terrestrial and aquatic ecosystems
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A review of climate-driven mismatches between interdependent phenophases in terrestrial and aquatic ecosystems

机译:陆地和水生生态系统相互依赖的表相之间的气候驱动失配研究述评

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Mismatches in phenology between mutually dependent species, resulting from climate change, can have far-reaching consequences throughout an ecosystem at both higher and lower trophic levels. Rising temperatures, due to climate warming, have resulted in advances in development and changes in behaviour of many organisms around the world. However, not all species or phenophases are responding to this increase in temperature at the same rate, thus creating a disruption to previously synchronised interdependent key life-cycle stages. Mismatches have been reported between plants and pollinators, predators and prey, and pests and hosts. Here, we review mismatches between interdependent phenophases at different trophic levels resulting from climate change. We categorized the studies into (1) terrestrial (natural and agricultural) ecosystems, and (2) aquatic (freshwater and marine) ecosystems. As expected, we found reports of 'winners' and 'losers' in each system, such as earlier emergence of prey enabling partial avoidance of predators, potential reductions in crop yield if herbivore pests emerge before their predators and possible declines in marine biodiversity due to disruption in plankton-fish phenologies. Furthermore, in the marine environment rising temperatures have resulted in synchrony in a previously mismatched prey and predator system, resulting in an abrupt population decline in the prey species. The examples reviewed suggest that more research into the complex interactions between species in terrestrial and aquatic ecosystems is necessary to make conclusive predictions of how climate warming may impact the fragile balances within ecosystems in future.CT International Conference on Phenology - Climate Change Impacts and AdaptationCY JUN, 2010CL Trinity Coll, Dublin, IRELANDHO Trinity Coll
机译:气候变化导致相互依赖的物种之间的物候学不匹配,在较高和较低的营养水平下,可能对整个生态系统产生深远的影响。由于气候变暖,气温上升导致世界各地许多生物的发展和行为改变。但是,并非所有的物种或表相都以相同的速率响应温度的升高,因此对先前同步的相互依赖的关键生命周期阶段造成了破坏。据报道,植物与传粉媒介,捕食者与猎物,害虫与寄主之间存在不匹配的情况。在这里,我们回顾了由于气候变化而在不同营养水平下相互依赖的表位之间的不匹配。我们将研究分类为(1)陆地(自然和农业)生态系统,以及(2)水生(淡水和海洋)生态系统。正如预期的那样,我们发现了每个系统中“赢家”和“失败者”的报告,例如较早出现的能够部分避开捕食者的猎物,如果食草动物害虫先于捕食者而出现,则农作物的产量可能降低,以及由于浮游生物-鱼类物候的破坏。此外,在海洋环境中,温度升高导致先前错配的猎物和捕食者系统同步,导致猎物物种的种群急剧减少。回顾的例子表明,有必要对陆生和水生生态系统中物种之间的复杂相互作用进行更多研究,以便对未来气候变暖可能如何影响生态系统内部脆弱平衡做出结论性预测.CT国际物候学会议-气候变化的影响和适应,2010CL Trinity Coll,都柏林,爱尔兰

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