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首页> 外文期刊>Journal of Thermal Biology >Is the temperature-size rule mediated by oxygen in aquatic ectotherms?
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Is the temperature-size rule mediated by oxygen in aquatic ectotherms?

机译:温度大小规律是由水外温中的氧气介导的吗?

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Temperature is an important environmental factor that influences key traits like body size, growth rate and maturity. Ectotherms reared under high temperatures usually show faster growth, but reach a smaller final size, a phenomenon known as the temperature-size rule (TSR). Oxygen may become a limiting resource at high temperatures, when demand for oxygen is high, especially in water as oxygen uptake is far more challenging under water than in air. Therefore, in aquatic ectotherms, the TSR might very well be mediated by temperature effects on oxygen availability and oxygen demand. To distinguish between the direct effects of temperature and oxygen mediated effects, growth rate and final size were measured in the aquatic ectotherm Asellus aquaticus (Linnaeus, 1758) reared under different temperature and oxygen conditions in a factorial design. Growth could be best described by a modified Von Bertalanffy growth function. Both temperature and oxygen affected age at maturity and growth. Growth responses to temperature were dependent on oxygen conditions (interactive effect of temperature and oxygen). Only under hypoxic conditions, when oxygen was mast limiting, did we find a classic TSR. Moreover, when comparing treatments differing in temperature, but where the balance between oxygen demand and supply was similar, high temperature increased both growth rate and final size. Thus effects of oxygen may resolve the life-history puzzle of the TSR in aquatic ectotherms. (C) 2014 Elsevier Ltd. All rights reserved.
机译:温度是一个重要的环境因素,会影响诸如体重,生长速度和成熟度等关键特征。在高温下饲养的等温线通常显示出较快的生长,但最终尺寸较小,这种现象称为温度尺寸规则(TSR)。当对氧气的需求很高时,尤其是在水中,氧气可能成为高温下的限制资源,因为在水中比在空气中吸收氧气更具挑战性。因此,在水外热中,TSR可能很好地由温度对氧气可用性和氧气需求的影响来介导。为了区分温度的直接作用和氧气介导的作用,在析因设计中,在不同温度和氧气条件下饲养的水生外温放线菌Asellus aquaticus(Linnaeus,1758)中测量了生长速率和最终大小。用改良的冯·贝塔朗菲的增长函数最好地描述增长。温度和氧气都会影响成熟和生长的年龄。生长对温度的响应取决于氧气条件(温度和氧气的相互作用)。只有在缺氧条件下,当氧气限制了肥大时,我们才能找到经典的TSR。此外,在比较温度不同但氧供需平衡相似的处理时,高温会增加生长速率和最终尺寸。因此,氧气的影响可能解决了水外热中TSR的生命历程难题。 (C)2014 Elsevier Ltd.保留所有权利。

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