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首页> 外文期刊>Aquaculture >A Dynamic Energy Budget (DEB) growth model for Pacific oyster larvae, Crassostrea gigas.
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A Dynamic Energy Budget (DEB) growth model for Pacific oyster larvae, Crassostrea gigas.

机译:太平洋牡蛎幼体 Crassostrea gigas 的动态能量预算(DEB)增长模型。

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Dynamic Energy Budget (DEB) theory aims to quantify the energetic framework of an individual organism as a dynamic model, from the uptake of food to its utilisation in metabolic processes (maintenance, growth, development and reproduction). The purpose of the present paper is to extend the existing DEB model for adult Pacific oyster Crassostrea gigas to the larval life stage of this species. We present the application of generic DEB theory to oyster larvae, with the formulation of the specific assumptions based on the characteristics of this stage. The model depends on seawater temperature and food density, as forcing variables, followed throughout the whole larval development. We calculated DEB parameter values for larvae by means of laboratory experiments specifically designed to collect datasets on ingestion and growth at different levels of phytoplankton density and temperature. The DEB model developed here showed good growth simulations and provided an extensive description of the energetic needs of C. gigas during its larval stage. It was demonstrated that, at 27 degrees C, a food density of 1400 micro m3 micro l-1 must be maintained throughout larval development to maximise growth and metamorphosis success. Timing of metamorphosis decreases exponentially with increasing temperature.
机译:动态能量预算(DEB)理论旨在量化单个生物体的能量框架,将其作为动态模型,从食物摄取到其在代谢过程中的利用(维持,生长,发育和繁殖)。本文的目的是将成年太平洋牡蛎Crassostrea gigas的现有DEB模型扩展到该物种的幼体生命阶段。我们介绍了通用DEB理论在牡蛎幼虫上的应用,并根据这一阶段的特征制定了特定的假设。该模型取决于海水温度和食物密度(作为强迫变量),并在整个幼体发育过程中遵循。我们通过专门设计用于收集不同浮游植物密度和温度水平下的摄入和生长数据集的实验室实验,计算了幼虫的DEB参数值。在此开发的DEB模型显示出良好的增长模拟,并提供了对iC能量需求的广泛描述。幼虫阶段的吉加斯虫。结果表明,在27摄氏度时,必须在整个幼体发育过程中保持1400 micro m 3 micro l -1 的食物密度,以使生长和变态成功最大化。变态的时间随着温度的升高呈指数下降。

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