首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Impact of food type on respiration, fractionation and turnover of carbon and nitrogen stable isotopes in the marine amphipod Gammarus aequicauda (Martynov, 1931)
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Impact of food type on respiration, fractionation and turnover of carbon and nitrogen stable isotopes in the marine amphipod Gammarus aequicauda (Martynov, 1931)

机译:食物类型对海洋两栖动物Gammarus aequicauda的碳,氮稳定同位素的呼吸作用,分馏和周转的影响(Martynov,1931年)

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This study experimentally determined the impact of food source type on tumover rate and trophic enrichment factors (TEFs or Delta) of delta C-13 and delta N-15, as well as on respiration rate, in captive populations of the marine amphipod Gammarus aequicauda. Gammarus aequicauda (318 individuals) were fed ad libitum with three food sources animal, algae, and dead Posidonia oceanica leaves (also called "litter"), varying in palatability, digestibility, nutritional qualities and isotopic compositions, for between four and six weeks in a controlled feeding experiment. The resulting death rate was lower for the amphipods fed with animal treatment (30.9%) than for individuals fed with algal (65.9%) or litter treatment (64.4%), indicating a better fitness of the individuals fed with the animal food source. Respiration rates also differed highly among the treatments. Animal treatment showed higher respiration rates than algal and litter treatments, potentially due to the toxicity of the algae and the very low nutritional quality of the litter. Amphipods fed with these treatments might have entered in a "low activity state" to cope with these unsuitable food sources, inducing low respiration rates. Due to the very low assimilation and toxicity of the algae source, turnover rate for delta C-13 was impossible to determine. Turnover rate for delta C-13 was much faster (half-life = 12.55 days) for amphipods fed with the animal food source than for amphipods fed with litter (half-life = 51.62 days), showing the faster assimilation of the most nutritionally optimal food sources by G. aequicauda. Turnover for delta N-15 was impossible to determine because the amphipods were already at isotopic equilibrium at the beginning of the experiment. Despite the detritus feeder status of Gammarus aequicauda, TEFs for the animal treatments were in accordance with values generally found for carnivorous organisms (Delta C-13 = 0.9 +/- 0.7%.; Delta N-15 = 2.9 +/- 0.6%0). TEFs for the litter treatment were in accordance with values generally corresponding to detritivorous organisms (Delta C-13 = 1.2%.; Delta N-15 = 1.0 +/- 0.4%0). SIAR mixing model outputs obtained with these new TEF values were more constrained and coherent than outputs obtained with general literature TEFs. This study thus demonstrated the non-negligible impact of the food source on Gammarus aequicauda physiological status, fitness and turnover rates, but also on TEFs-highlighting the importance of TEF experimental calculations for every potential food source of a given organism to ensure more robust isotopic data interpretation. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究通过实验确定了食物来源类型对海洋两栖类动物马被圈养圈闭种群中C-13和N-15三角洲的转化率和营养富集因子(TEF或Delta)的影响以及对呼吸速率的影响。随意给γ羊驼(318头)喂食三种食物来源的动物,藻类和死去的波塞冬草海洋叶子(也称为“凋落物”),它们的适口性,消化率,营养质量和同位素组成各不相同,持续4至6周。受控喂养实验。接受动物处理的两栖类动物的死亡率(30.9%)低于接受藻类处理的两栖动物(65.9%)或垫料处理的个体(64.4%),表明接受动物食物来源的个体的适应性更高。各治疗之间的呼吸速率也有很大差异。与藻类和垃圾处理相比,动物处理显示出更高的呼吸速率,这可能是由于藻类的毒性和垃圾的营养质量非常低所致。用这些疗法喂养的两栖动物可能已进入“低活动状态”以应对这些不合适的食物来源,从而导致呼吸频率降低。由于藻类源的吸收和毒性非常低,因此无法确定C-13的周转率。用动物食源喂养的两栖类动物的三角洲C-13的周转率要快得多(半衰期= 12.55天),而用垃圾喂养的两栖动物的周转率要快得多(半衰期= 51.62天),这表明营养最佳的两栖类动物的吸收更快Gequ aequicauda的食物来源。由于两栖动物在实验开始时就已经处于同位素平衡状态,因此无法确定N-15的周转率。尽管Gammarus aequicauda的碎屑饲养者状态,但用于动物治疗的TEF仍与食肉生物的普遍发现值一致(Delta C-13 = 0.9 +/- 0.7%.; Delta N-15 = 2.9 +/- 0.6%0 )。垫料处理的TEF符合通常对应于有害生物的值(Delta C-13 = 1.2%; Delta N-15 = 1.0 +/- 0.4%0)。用这些新的TEF值获得的SIAR混合模型输出比一般文献TEF所获得的输出更受约束和连贯。因此,这项研究证明了食物来源对马氏杆菌的生理状态,适应性和周转率的影响不可忽略,而且对TEF的影响不容忽视-强调了TEF实验计算对于给定生物体的每种潜在食物来源的重要性,以确保更强大的同位素数据解释。 (C)2016 Elsevier B.V.保留所有权利。

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