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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Marine meso-herbivore consumption scales faster with temperature than seaweed primary production
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Marine meso-herbivore consumption scales faster with temperature than seaweed primary production

机译:海洋中-草食动物的消费量随温度的变化比海藻初级生产更快

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Respiration of ectotherms is predicted to increase faster with rising environmental temperature than photosynthesis of primary producers because of the differential temperature dependent kinetics of the key enzymes involved. Accordingly, if biological processes at higher levels of complexity are constrained by underlying metabolic functions, food consumption by heterotrophs should increase more rapidly with rising temperature than photo-autoptrophic primary production. We compared rates of photosynthesis and growth of the benthic seaweed Fucus vesiculosus with respiration and consumption of the isopod Idotea baltica to achieve a mechanistic understanding why warming strengthens marine plant-herbivore interactions. In laboratory experiments thallus pieces of the seaweed and individuals of the grazer were exposed to constant temperatures at a range from 10 to 20 degrees C. Photosynthesis of F. vesiculosus did not vary with temperature indicating efficient thermal acclimation whereas growth of the algae clearly increased with temperature. Respiration and food consumption of I. baltica also increased with temperature. Grazer consumption scaled about 2.5 times faster with temperature than seaweed production. The resulting mismatch between algal production and herbivore consumption may result in a net loss of algal tissue at elevated temperatures. Our study provides an explanation for faster decomposition of seaweeds at elevated temperatures despite the positive effects of high temperatures on algal growth. (C) 2016 Elsevier B.V. All rights reserved.
机译:预计随着环境温度的升高,与主要生产者的光合作用相比,随着温度升高,等温线的呼吸会更快地增加,因为所涉及的关键酶的温度依赖性动力学不同。因此,如果复杂程度更高的生物过程受到潜在的代谢功能的限制,则随着温度的升高,异养生物的食物消耗应比光养植物的初级生产增长得更快。我们将底栖海藻褐藻(Fusus vesiculosus)的光合作用和生长速率与等脚形海藻(Idotea baltica)的呼吸作用和消耗量进行了比较,从而获得了机制性的理解,从而说明了变暖为什么会增强海洋植物-草食动物的相互作用。在实验室实验中,将海藻的海藻碎片和放牧者的个体暴露于10至20摄氏度的恒定温度下。葡萄球菌的光合作用不会随温度变化而变化,这表明有效的热驯化,而藻类的生长明显随温度的增加而增加。温度。波罗的海I.的呼吸和食物消耗也随温度增加。 Grazer的消耗量随温度的变化比海藻生产快约2.5倍。在升高的温度下,藻类生产和食草动物的消耗之间所产生的不匹配可能导致藻类组织的净损失。我们的研究为高温下海藻的快速分解提供了解释,尽管高温对藻类的生长有积极影响。 (C)2016 Elsevier B.V.保留所有权利。

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