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Thinking beyond organism energy use: A trait-based bioenergetic mechanistic approach for predictions of life history traits in marine organisms

机译:超越生物能源利用的思考:一种基于特征的生物能机制方法,用于预测海洋生物的生命历史特征

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摘要

The functional trait-based bioenergetic approach is emergent in many ecological spectra, from the conservation of natural resources to mitigation and adaptation strategies in a global climate change context. Such an approach relies on being able to exploit mechanistic rules to connect environmental human-induced variability to functional traits (i.e. all those specific traits defining species in terms of their ecological roles) and use these to provide estimates of species life history traits (LH; e.g. body size, fecundity per life span, number of reproductive events). LHs are species-specific and proximate determinants of population characteristics in a certain habitat. They represent the most valuable quantitative information to investigate how broad potential distributional boundaries of a species are, and to feed predictive population models. There is much to be found in the current literature that describes mechanistic functional trait-based bioenergetics models, using them to test ecological hypotheses, but a mathematical framework often renders interpretation and use complicated. Here, we wanted to present a simpler interpretation and description of one of the most important recent mechanistic bioenergetic theories: the dynamic energy budget theory by Kooijman (Dynamic Energy Budget Theory for Metabolic Organisation, 2010, Cambridge University Press, Cambridge). Our main aim was to disentangle those aspects that at first reading may seem too mathematically challenging to many marine biologists, ecologists and environmental scientists, and present them for use in mechanistic applications.
机译:基于功能性状的生物能源方法已经出现在许多生态谱中,从自然资源保护到全球气候变化背景下的缓解和适应策略。这种方法依赖于能够利用机械规则将人为环境引起的变异性与功能性状联系起来(即,根据其生态作用定义物种的所有那些特定性状),并利用它们来提供物种生活史性状的估计(LH;例如身材大小,每个寿命的繁殖力,生殖事件的数量)。 LHs是特定栖息地中特定于物种的种群特征的近因。它们代表了最有价值的定量信息,可用来调查物种的潜在分布范围有多大,并提供预测性种群模型。在当前的文献中,有很多描述基于机械功能性状的生物能学模型,并用它们来检验生态学假设,但是数学框架常常使解释和使用变得复杂。在这里,我们想对最近最重要的机械生物能学理论之一进行简单的解释和描述:Kooijman的动态能量预算理论(代谢组织的动态能量预算理论,2010年,剑桥大学出版社,剑桥)。我们的主要目的是消除那些乍看之下对许多海洋生物学家,生态学家和环境科学家来说在数学上似乎具有挑战性的方面,并将其介绍用于机械应用。

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