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考虑食物量和磷含量对水蚤钙限制的建模。

Modeling calcium-limitation in Daphnia with consideration of food quantity and phosphorus content.

作者信息

Frost Paul C

机构信息

Department of Biology, Trent University, Peterborough, ON, K9L 0G2, Canada.

出版信息

Oecologia. 2025 Aug 7;207(8):138. doi: 10.1007/s00442-025-05778-1.

DOI:10.1007/s00442-025-05778-1
PMID:40773121
Abstract

Low concentrations of calcium have been found to slow growth and reproduction of the freshwater zooplankton, Daphnia. Despite experimental evidence linking poor animal performance and low calcium concentrations, there are no theoretical models that link calcium uptake dynamics to Daphnia growth. Here I created a multi-element (carbon (C), phosphorus (P), and calcium (Ca)) model of Daphnia growth that incorporates information on animal Ca uptake and loss, feeding rates, C and P absorption efficiencies, and body nutrient content. This model examines how the relative supplies of Ca, C, and P in food and water affect Daphnia's acquisition of these elements and subsequently, their growth rates. The model demonstrates that animal limitation by Ca switches to C or P with changes in food abundance and C:P ratios above a threshold Ca concentration. While modelled threshold Ca concentrations were remarkably similar to previous empirical estimates, Daphnia growth rates predicted by the model were generally much lower than those previously reported for animals experimentally raised under low Ca concentrations. Further, the model predicts Daphnia to be primarily food quantity or P-limited in lakes of south-central Ontario due to relatively low supply of food C and/or P compared to Ca. While this model would benefit from additional data on Ca uptake parameters, it nonetheless shows the utility of multi-element mass-balance modeling and provides an approach to determine the frequency and strength of Ca-limitation in zooplankton populations in lake ecosystems.

摘要

已发现低浓度的钙会减缓淡水浮游动物水蚤的生长和繁殖。尽管有实验证据表明动物生长不佳与低钙浓度有关,但尚无理论模型将钙的摄取动态与水蚤生长联系起来。在此,我创建了一个水蚤生长的多元素(碳(C)、磷(P)和钙(Ca))模型,该模型纳入了有关动物钙摄取与流失、摄食率、碳和磷吸收效率以及身体营养成分的信息。该模型研究了食物和水中钙、碳和磷的相对供应如何影响水蚤对这些元素的获取,进而影响它们的生长速率。该模型表明,在高于阈值钙浓度时,随着食物丰度和碳磷比的变化,动物对钙的限制会转变为对碳或磷的限制。虽然模型预测的阈值钙浓度与先前的经验估计值非常相似,但该模型预测的水蚤生长速率通常远低于先前报道的在低钙浓度下实验饲养的动物的生长速率。此外,该模型预测,由于安大略省中南部湖泊中食物碳和/或磷的供应相对于钙而言相对较低,水蚤主要受食物量或磷的限制。虽然该模型将受益于有关钙摄取参数的更多数据,但它仍然显示了多元素质量平衡建模的实用性,并提供了一种确定湖泊生态系统中浮游动物种群钙限制的频率和强度的方法。

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本文引用的文献

1
The threshold elemental ratio of carbon and phosphorus of Daphnia magna and its connection to animal growth.大型溞的碳磷元素比值阈值及其与动物生长的关系。
Sci Rep. 2018 Jun 26;8(1):9673. doi: 10.1038/s41598-018-27758-7.
2
Bridging factorial and gradient concepts of resource co-limitation: towards a general framework applied to consumers.衔接资源共同限制的阶乘概念与梯度概念:迈向适用于消费者的通用框架
Ecol Lett. 2016 Feb;19(2):201-215. doi: 10.1111/ele.12554. Epub 2015 Dec 20.
3
The widespread threat of calcium decline in fresh waters.
淡水钙含量下降的广泛威胁。
Science. 2008 Nov 28;322(5906):1374-7. doi: 10.1126/science.1164949.