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Environmental factors drive interannual variation in estuarine food-chain length

机译:环境因素在河口食物链长度延续依赖性变化

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Biological communities are strongly affected by environmental factors and their variability. Estuarine biota is driven by abiotic factors such as salinity, rainfall, and river flow, varying at distinct spatial and time scales. The El Niño is a coupled ocean–atmosphere phenomenon occurring at irregular time scales that affects biological communities worldwide, including changes in species composition and diversity patterns. One of the most important attributes in community ecology is the food-chain length (FCL) because affects the ecosystem functioning. Based on the ‘intermediate disturbance’ theory and prior evidences showing effects of El Niño on animal diversity, we hypothesized this phenomenon will increase richness (both at species and trophic guilds levels) and FCL in a shallow-water estuarine community. To evaluate our hypothesis, we analyzed a 9-yr dataset of carbon and nitrogen stable isotope ratios of food web components in a shallow embayment of a subtropical estuary. We estimated consumer's trophic positions (TP) using a recent Bayesian approach that incorporates individual variability and sampling error in isotope fractionation, isotopic baselines and consumers. As expected, both species and trophic guilds richness were higher during El Niño events. FCL ranged from 2.45 to 4.60, but against our prediction showed a slight decreased during higher rainfall periods. These finding suggest FCL in estuaries is resilient to environmental variability and natural climatic perturbations.
机译:生物群群受到环境因素的强烈影响及其变异性。河口Biota由非生物因子(如盐度,降雨和河流)驱动,在不同的空间和时间尺度上变化。 ElNiño是一种耦合的海洋气氛现象,在不规则的时间尺度上发生影响全世界的生物社区,包括物种组成和多样性模式的变化。社区生态学中最重要的属性之一是食物链长度(FCL),因为影响生态系统功能。基于“中间干扰”理论和表现出ElNiño对动物多样性效果的现有证据,我们假设这种现象将增加丰富性(在物种和营养促进会议级别)和FCL在浅水河口群落中的FCL。为了评估我们的假设,我们在亚热带浅腹部浅埋到亚热带浅层灌输中分析了9 yr的碳和氮稳定同位素比例的食物网组分的数据集。我们估计了使用最近的贝叶斯方法的消费者的营养职位(TP),其在同位素分馏,同位素基线和消费者中融入了个体变异和取样误差。正如预期的那样,ELNiño事件期间,种类和营养行会均较高。 FCL范围从2.45到4.60,但在更高的降雨期间,我们的预测表明略有下降。这些发现建议在河口中的FCL是环境变异性和自然气候扰动的弹性。

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