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首页> 外文期刊>Estuarine Coastal and Shelf Science >Seasonal succession of estuarine fish, shrimps, macrozoobenthos and plankton: Physico-chemical and trophic influence. The Gironde estuary as a case study
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Seasonal succession of estuarine fish, shrimps, macrozoobenthos and plankton: Physico-chemical and trophic influence. The Gironde estuary as a case study

机译:河口鱼类,虾类,大型动物和浮游生物的季节性演替:理化和营养作用。吉伦特河口为例

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Characterization of the structure and seasonal variability of biotic communities is essential for a better understanding of estuarine ecosystem functioning and in order to manage these highly fluctuating and naturally stressed systems. Numerous studies have investigated the role of environmental factors in controlling temporal variations in biotic communities. However, most have concluded that the explanatory power of physico-chemical variables was significant but not sufficient to explain ecological dynamics. The present study aimed to propose the importance of trophic interactions as an additional structuring factor of species seasonal variability by examining simultaneous dynamics of all estuarine biotic communities, using the oligo-mesohaline area of the Gironde estuary (SW France) as a case study. Data on the main biological groups (fish, shrimps, macrozoobenthos and plankton) sampled during a five-year period (2004-2008) at monthly intervals using a well standardized protocol, as well as data on environmental variables, were compiled here for the first time. According to species composition, the Gironde estuary is used as a nursery, feeding, resident and migratory habitat For almost all species, strong seasonal fluctuations occurred with a succession of species, indicating an optimization of the use of the available resources over a typical year by estuarine biological communities. Multivariate analyses discriminated four seasonal groups of species with two distinctive ecological seasons. A clear shift in July indicated a biomass transfer from a "planktonic phase" to a "bentho-demersal phase", corresponding to spring and summer-autumn periods, respectively. With regard to the temporal fluctuations of dominant species of all biological groups, this study highlighted the possible influence of trophic relationships, predation in particular, on seasonal variations in species abundance, in addition to the physico-chemical influence. This study enabled us to collate important seasonal data and to discuss their integration into seasonal models of estuarine functioning and/or specific prey-predator models. In a global change context, prey abundance variations could generate changes in the temporal dynamics of their predators (and conversely), and potentially in the functioning of the whole estuarine system.
机译:为了更好地了解河口生态系统的功能以及管理这些高度波动和自然压力的系统,对生物群落的结构和季节性变化进行表征至关重要。许多研究调查了环境因素在控制生物群落的时间变化中的作用。但是,大多数人得出的结论是,理化变量的解释力很重要,但不足以解释生态动力学。本研究旨在通过研究吉伦特河口(法国南部)的中低盐度地区,通过研究所有河口生物群落的同时动态,提出营养相互作用作为物种季节变异性的附加结构因素的重要性。在这里,我们采用标准化的方法,在五年期间(2004年至2008年)中,以每月间隔的时间对每个主要生物类别(鱼,虾,大型带状线虫和浮游生物)的数据进行了每月一次的采样,并收集了有关环境变量的数据时间。根据物种组成,吉伦特河口被用作苗圃,觅食,居民和迁徙栖息地。对于几乎所有物种,季节性的剧烈波动都伴随着一系列物种的出现,这表明在典型的一年中,现有资源的利用得到了优化。河口生物群落。多变量分析区分了具有两个独特生态季节的四个季节物种。 7月的明显变化表明生物量从“浮游相”转移到“底栖-解体期”,分别对应于春季和夏季-秋季。关于所有生物种群的优势物种的时间波动,该研究强调了营养关系(尤其是捕食)对物种丰富度的季节性变化以及物理化学影响的可能影响。这项研究使我们能够整理重要的季节性数据,并讨论将其整合到河口功能的季节性模型和/或特定捕食者-捕食者模型中的过程。在全球变化的背景下,猎物的丰富度变化可能会导致其捕食者的时间动态变化(反之),并可能改变整个河口系统的功能。

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