首页> 外文期刊>Oikos: A Journal of Ecology >Variation in species light acquisition traits under fluctuating light regimes: implications for non-equilibrium coexistence
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Variation in species light acquisition traits under fluctuating light regimes: implications for non-equilibrium coexistence

机译:波动灯制度下物种光采集性状的变化:非平衡共存的影响

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Resource distribution heterogeneity offers niche opportunities for species with different functional traits to develop and potentially coexist. Available light (photosynthetically active radiation or PAR) for suspended algae (phytoplankton) may fluctuate greatly over time and space. Species-specific light acquisition traits capture important aspects of the ecophysiology of phytoplankton and characterize species growth at either limiting or saturating daily PAR supply. Efforts have been made to explain phytoplankton coexistence using species-specific light acquisition traits under constant light conditions, but not under fluctuating light regimes that should facilitate non-equilibrium coexistence. In the well-mixed, hypertrophic Lake TaiHu (China), we incubated the phytoplankton community in bottles placed either at fixed depths or moved vertically through the water column to mimic vertical mixing. Incubations at constant depths received only the diurnal changes in light, while the moving bottles received rapidly fluctuating light. Species-specific light acquisition traits of dominant cyanobacteria (Anabaena flos-aquae, Microcystis spp.) and diatom (Aulacoseira granulata, Cyclotella pseudostelligera) species were characterized from their growth-light relationships that could explain relative biomasses along the daily PAR gradient under both constant and fluctuating light. Our study demonstrates the importance of interspecific differences in affinities to limiting and saturating light for the coexistence of phytoplankton species in spatially heterogeneous light conditions. Furthermore, we observed strong intraspecific differences in light acquisition traits between incubation under constant and fluctuating light - leading to the reversal of light utilization strategies of species. This increased the niche space for acclimated species, precluding competitive exclusion. These observations could enhance our understanding of the mechanisms behind the Paradox of the Plankton.
机译:资源分配异质性为具有不同功能性状的物种提供利基机会,以发展和潜在共存。悬浮藻类(Phytoplankton)的可用光(光合活性辐射或PAR)可能会随着时间和空间大大波动。特定的曝光特征捕获浮游植物生态学的重要方面,并在限制或饱和每日施加施用时表征物种生长。已经努力在恒定光线条件下使用物种特异性的光获取性状来解释浮游植物共存,但不在波动的光线状态下应促进非平衡共存。在富裕的肥大湖太湖(中国)中,我们在固定深度孵育的瓶子中孵化在固定深度或通过水柱垂直移动以模仿垂直混合。在恒定深度下孵育仅接收昼夜变化,而移动瓶子接收到光的较快波动。占主导地段的特异性亮相性状(Anabaena Flos-Aquae,Microcystis SPP。)和硅藻(Aulacoseira Granulata,Cyclotella pseudostelligera)物种的特征在于它们的生长光关系,其可以在恒定下沿着日常分析梯度解释相对生物量和波动的光线。我们的研究表明,在空间异质光条件下浮游植物的共存的限制和饱和光线的相似性差异的重要性。此外,我们观察到恒定和波动光线下孵化之间的光采集性状的强烈拆散差异 - 导致物种光利用策略的逆转。这增加了适应物种的利基空间,排除竞争排斥。这些观察可能会提高我们对浮游生物悖论背后的机制的理解。

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