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The richness of small pockets: Decapod species peak in small seagrass patches where fish predators are absent

机译:小口袋的丰富性:十足纲物种在没有鱼类捕食者的小海草斑块中达到顶峰

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摘要

Patchy landscapes behave differently from continuous ones. Patch size can influence species behaviour, movement, feeding and predation rates, with flow-on consequences for the diversity of species that inhabit these patches. To understand the importance of patchiness on regional species pools, we measured decapod richness and abundance in several seagrass patches with contrasting sizes. Additionally, we evaluated potential drivers of patch-specific species distribution including resource abundance, predator habitat use and the structural complexity of patches. Our results showed a non-random distribution of decapod species: small patches were clear hotspots of diversity and abundance, particularly of larger-bodied epifaunal decapods. Interestingly, these hotspots were characterized by lower nutrient resources, lower canopy height, but also lower predator use. Small fish invertivores such as Coris fulls and several species of Symphodus were mostly restricted to large patches. These resident predators may be critical in clumping predation in large patches with consequences for how biodiversity of their prey is distributed across the seascape. Our results highlight the idea that a habitat mosaic with both large and small seagrass patches would potentially bolster biodiversity because preys and predators may seek refuge in patches of different sizes.
机译:斑驳的景观与连续的景观表现不同。斑块的大小会影响物种的行为,移动,进食和捕食速度,并对栖息在这些斑块中的物种的多样性产生持续影响。为了了解斑块对区域物种库的重要性,我们测量了几种大小不同的海草斑块中十足动物的丰富度和丰度。此外,我们评估了斑块特定物种分布的潜在驱动因素,包括资源丰富,捕食者栖息地的使用以及斑块的结构复杂性。我们的研究结果表明十足动物种类是非随机分布的:小斑块是多样性和丰度明显的热点,特别是大体表足类十足动物。有趣的是,这些热点地区的特征是营养物质含量较低,树冠高度较低,但捕食者的使用量也较低。小型鱼类无食性,例如科里斯河满腹和数种Symphodus,大多局限于大型斑块。这些常驻捕食者可能在将捕食团成块状聚集时发挥关键作用,从而影响其猎物的生物多样性在整个海景中的分布。我们的研究结果突出了这样一个想法,即具有大小不一的海草斑块的栖息地马赛克都可能会增强生物多样性,因为猎物和掠食者可能会躲避不同大小的斑块。

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