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肉食哺乳动物产生的种子扩散核心的功能多样性。

Functional diversity among seed dispersal kernels generated by carnivorous mammals.

机构信息

Estación Biológica de Doñana (EBD-CSIC), Avd. Américo Vespucio s/n, Isla de la Cartuja, 41092, Sevilla, Spain.

出版信息

J Anim Ecol. 2013 May;82(3):562-71. doi: 10.1111/1365-2656.12024. Epub 2012 Dec 10.

Abstract
  1. Knowledge of the spatial scale of the dispersal service provided by important seed dispersers (i.e. common and/or keystone species) is essential to our understanding of their role on plant ecology, ecosystem functioning and, ultimately, biodiversity conservation. 2. Carnivores are the main mammalian frugivores and seed dispersers in temperate climate regions. However, information on the seed dispersal distances they generate is still very limited. We focused on two common temperate carnivores differing in body size and spatial ecology - red fox (Vulpes vulpes) and European pine marten (Martes martes) - for evaluating possible functional diversity in their seed dispersal kernels. 3. We measured dispersal distances using colour-coded seed mimics embedded in experimental fruits that were offered to the carnivores in feeding stations (simulating source trees). The exclusive colour code of each simulated tree allowed us to assign the exact origin of seed mimics found later in carnivore faeces. We further designed an explicit sampling strategy aiming to detect the longest dispersal events; as far we know, the most robust sampling scheme followed for tracking carnivore-dispersed seeds. 4. We found a marked functional heterogeneity among both species in their seed dispersal kernels according to their home range size: multimodality and long-distance dispersal in the case of the fox and unimodality and short-distance dispersal in the case of the marten (maximum distances = 2846 and 1233 m, respectively). As a consequence, emergent kernels at the guild level (overall and in two different years) were highly dependent on the relative contribution of each carnivore species. 5. Our results provide the first empirical evidence of functional diversity among seed dispersal kernels generated by carnivorous mammals. Moreover, they illustrate for the first time how seed dispersal kernels strongly depend on the relative contribution of different disperser species, thus on the composition of local disperser assemblages. These findings provide a key starting point for understanding and modelling plant population processes that include mammal-mediated seed dispersal, such as connectivity, range expansion and colonization.
摘要
  1. 了解重要种子传播者(即常见和/或关键物种)提供的扩散服务的空间尺度对于我们理解它们在植物生态学、生态系统功能以及最终的生物多样性保护中的作用至关重要。

  2. 食肉动物是温带气候地区主要的哺乳动物食果者和种子传播者。然而,关于它们产生的种子扩散距离的信息仍然非常有限。我们专注于两种体型和空间生态不同的常见温带食肉动物——红狐(Vulpes vulpes)和欧洲松貂(Martes martes)——以评估它们的种子扩散核中可能存在的功能多样性。

  3. 我们通过在喂食站(模拟源树)中向食肉动物提供的实验果实中嵌入彩色编码的种子模拟物来测量扩散距离。每个模拟树的唯一颜色代码使我们能够将在食肉动物粪便中发现的种子模拟物的准确起源分配。我们进一步设计了一个明确的采样策略,旨在检测最长的扩散事件;据我们所知,这是跟踪食肉动物传播种子最可靠的采样方案。

  4. 我们发现,根据其家域大小,两种物种的种子扩散核都存在明显的功能异质性:狐狸的多模态和长距离扩散,而貂的单模态和短距离扩散(最大距离分别为 2846 米和 1233 米)。因此,在公会层面(总体和在两年)的新兴核取决于每种食肉动物物种的相对贡献。

  5. 我们的研究结果首次提供了有关食肉哺乳动物产生的种子扩散核功能多样性的经验证据。此外,它们首次说明了种子扩散核如何强烈依赖于不同传播者物种的相对贡献,从而依赖于当地传播者组合的组成。这些发现为理解和模拟包括哺乳动物介导的种子扩散在内的植物种群过程提供了一个关键起点,例如连通性、范围扩展和殖民化。

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