...
首页> 外文期刊>Annual review of ecology, evolution, and systematics >Climate Change and Phenological Mismatch in Trophic Interactions Among Plants, Insects, and Vertebrates
【24h】

Climate Change and Phenological Mismatch in Trophic Interactions Among Plants, Insects, and Vertebrates

机译:植物,昆虫和脊椎动物中营养相互作用的气候变化和鉴别效果

获取原文
获取原文并翻译 | 示例

摘要

Phenological mismatch results when interacting species change the timing of regularly repeated phases in their life cycles at different rates. We review whether this continuously ongoing phenomenon, also known as trophic asynchrony, is becoming morecommonunder ongoing rapid climate change. In antagonistic trophic interactions, any mismatch will have negative impacts for only one of the species, whereas in mutualistic interactions, both partners are expected to suffer. Trophic mismatch is therefore expected to last for evolutionarily short periods, perhaps only a few seasons, adding to the difficulty of attributing it to climate change, which requires long-term data. So far, the prediction that diverging phenologies linked to climate change will cause mismatch is most clearly met in antagonistic interactions at high latitudes in the Artic. There is limited evidence of phenological mismatch in mutualistic interactions, possibly because of strong selection on mutualists to have co-adapted phenological strategies. The study of individual plasticity, population variation, and the genetic bases for phenological strategies is in its infancy. Recent work on woody plants revealed the large imprint of historic climate change on temperature, chilling, and day-length thresholds used by different species to synchronize their phenophases, which in the Northern Hemisphere has led to biogeographic phenological regions inwhich long-lived plants have adapted to particular interannual and intermillennial amplitudes of climate change.
机译:当相互作用的物种时,鉴别的母匹配结果在不同速率下改变其生命周期中的定期重复阶段的时序。我们审查这一持续持续的现象,也被称为营养不良的异步,正在成为潮流的迅速迅速的气候变化。在拮抗营养互动中,任何不匹配对于只有一种物种,而在互相互动中,任何合作伙伴都会受到影响。因此,预计营养不匹配将持续为进化的短期,也许只有几季,增加了难以将其归因于气候变化的难度,这需要长期数据。到目前为止,与气候变化有关的发散的预测将导致不匹配的抗匹配在艺术中的高纬度地区的拮抗互动中得到了最明显的达到。有限的挥手匹配在互相互动中存在有限的证据,可能是因为相互主义者的强烈选择,以具有共同适应的酚类策略。婴儿策略的个体可塑性,人口变异和遗传基因的研究是其初期的。最近的Woody植物的工作揭示了不同物种使用的历史性气候变化的大量印记,以使不同物种同步其苯虫酸的苯虫种,这在北半球导致了生物地图鉴于长寿植物的改编特别是气候变化的特别持续的和中间幅度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号