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首页> 外文期刊>Global change biology >Anomalous, extreme weather disrupts obligate seed dispersal mutualism: snow in a subtropical forest ecosystem.
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Anomalous, extreme weather disrupts obligate seed dispersal mutualism: snow in a subtropical forest ecosystem.

机译:异常的极端天气破坏了专一的种子传播共生:亚热带森林生态系统中的积雪。

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Ongoing global climate change is predicted to increase the frequency and magnitude of extreme weather events, impacting population dynamics and community structure. There is, however, a critical lack of case studies considering how climatic perturbations affect biotic interactions. Here, we document how an obligate seed dispersal mutualism was disrupted by a temporally anomalous and meteorologically extreme interlude of unseasonably frigid weather, with accompanying snowstorms, in subtropical China, during January-February 2008. Based on the analysis of 5892 fecal samples (representing six mammalian seed dispersers), this event caused a substantial disruption to the relative seed dispersal function for the raisin tree Hovenia dulcis from prestorm 6.29 (2006) and 11.47 (2007), down to 0.35 during the storm (2008). Crucially, this was due to impacts on mammalian seed dispersers and not due to a paucity of fruit, where 4.63 fruit per branch were available in January 2008, vs. 3.73 in 2006 and 3.58 in 2007. An induced dietary shift occurred among omnivorous carnivores during this event, from the consumption fruit to small mammals and birds, reducing their role in seed dispersal substantially. Induced range shift extinguished the functionality of herbivorous mammals completely, however, seed dispersal function was compensated in part by three omnivorous carnivores during poststorm years, and thus while the mutualism remained intact it was enacted by a narrower assemblage of species, rendering the system more vulnerable to extrinsic perturbations. The storm's extended effects also had anthropogenic corollaries - migrating ungulates becoming exposed to heightened levels of illegal hunting - causing long-term modification to the seed dispersal community and mutualism dynamics. Furthermore, degraded forests proved especially vulnerable to the storm's effects. Considering increasing climate variability and anthropogenic disturbance, the impacts of such massive, aberrant events warrant conservation concern, while affording unique insights into the stability of mutualisms and the processes that structure biodiversity and mediate ecosystem dynamics.
机译:预计持续的全球气候变化将增加极端天气事件的频率和强度,影响人口动态和社区结构。然而,考虑到气候扰动如何影响生物相互作用,案例研究严重缺乏。在这里,我们记录了2008年1月至2月在中国亚热带发生的异常季节严寒天气的时间异常和气象极端插值如何干扰了专心的种子传播共生。基于对5892份粪便样本的分析(代表六个哺乳动物种子分散剂),此事件从暴风雨前的6.29(2006)和11.47(2007)降到了暴风雨期间(2008)的0.35,对葡萄干树Hovenia dulcis的相对种子传播功能造成了重大破坏。至关重要的是,这是由于对哺乳动物种子分散剂的影响,而不是由于缺乏水果,2008年1月每个分支可获得4.63个水果,而2006年为3.73个,2007年为3.58个。这一事件,从食用水果到小型哺乳动物和鸟类,大大降低了它们在种子传播中的作用。诱导的范围转移完全消除了草食性哺乳动物的功能,但是,种子的散布功能在暴风雨后的三年中被三种杂食性食肉动物部分补偿,因此虽然共生关系仍然完整无缺,但物种组成更窄,使系统更加脆弱。外在的扰动。暴风雨的扩大影响还带来了人为的推论-有蹄类动物的迁徙暴露于非法狩猎的加剧-长期改变了种子传播社区并促进了共生关系的发展。此外,退化的森林特别容易受到暴风雨的影响。考虑到日益增加的气候变异性和人为干扰,此类大规模异常事件的影响值得保护,同时也对共存主义的稳定性以及构造生物多样性和调节生态系统动态的过程提供了独特的见解。

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