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大型溞呼吸速率对食物条件变化的响应。

Response of the respiratory rate of Daphnia magna to changing food conditions.

作者信息

Lampert Winfried

机构信息

Abteilung Ökophysiologie, Max-Planck-Institut für Limnologie, Postfach 165, D-2320, Plön, Federal Republic of Germany.

出版信息

Oecologia. 1986 Nov;70(4):495-501. doi: 10.1007/BF00379894.

Abstract

The respiratory rate of the cladoceran Daphnia magna was measured at varying concentrations of a green alga in a flow-through respirometer. Daphnids were either preconditioned to the respective food concentration or the food concentration was suddenly changed during the experiment and the response of the respiratory rate monitored. Previously starved animals were provided with food or prefed animals were deprived of food. The respiratory rate increased considerably with increasing concentrations of algae until a maximum rate was reached at a critical algal concentration corresponding to the "incipient limiting level" for feeding. The response of the respiratory rate to changing food conditions was fast, lagging only a few minutes behind the change in food. The respiratory rate of starved daphnids increased quickly when they received food, even at low concentrations. Prefed daphnids responded to the replacement of the food suspension by filtered water with reductions in their respiratory rates. A linear relationship between the assimilation rate and the respiration rate was found, indicating that the more than twofold range of the respiratory rate was due to specific dynamic action. The SDA coefficients of 0.15-0.24 found for Daphnia are consistent with values for marine zooplankton.

摘要

在流通式呼吸计中,测量了不同绿藻浓度下枝角类大型溞的呼吸速率。大型溞要么预先适应各自的食物浓度,要么在实验过程中食物浓度突然改变,并监测呼吸速率的响应。给先前饥饿的动物喂食,或者剥夺预先喂食动物的食物。随着藻类浓度的增加,呼吸速率显著增加,直到在对应于摄食“初始限制水平”的临界藻类浓度下达到最大速率。呼吸速率对食物条件变化的响应很快,仅比食物变化滞后几分钟。饥饿的大型溞即使在低食物浓度下获得食物时,其呼吸速率也会迅速增加。预先喂食的大型溞对用过滤水替代食物悬浮液的反应是呼吸速率降低。发现同化率与呼吸速率之间存在线性关系,这表明呼吸速率超过两倍的范围是由于特殊动力作用。大型溞的特殊动力作用系数为0.15 - 0.24,与海洋浮游动物的值一致。

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