...
首页> 外文期刊>Progress in Oceanography >Non-Redfieldian dynamics driven by phytoplankton phosphate frugality explain nutrient and chlorophyll patterns in model simulations for the Mediterranean Sea
【24h】

Non-Redfieldian dynamics driven by phytoplankton phosphate frugality explain nutrient and chlorophyll patterns in model simulations for the Mediterranean Sea

机译:浮游植物磷酸盐节俭性驱动的非Redfieldian动力学解释了地中海模型模拟中的营养和叶绿素模式

获取原文
获取原文并翻译 | 示例
           

摘要

The relative abundance of nitrate (N) over phosphate (P) measured as a molar ratio (N:P) is typically considered to determine the macronutrient limiting marine primary production. In low-complexity biogeochemical models, a simple threshold value is usually applied based on the canonical Redfield ratio (N:P = 16). However, the N:P ratio is not constant in many oceanic areas, especially marginal, semi-enclosed seas, such as the Mediterranean basin. In this work, a flexible definition of the N:P ratio based on the capacity of phytoplankton to modulate phosphate uptake according to its availability in seawater, the so-called Line of Frugality, is incorporated into the biogeochemical model MedERGOM. This modification allows the acquisition of a more realistic representation of the stoichiometry of nutrients in the Mediterranean basin and allows to better reproduce the observed phytoplankton biomass in productive areas such as the Gulf of Gabes and the Adriatic Sea. This approach is, thus, especially suitable for coastal areas in which basin-scale biogeochemical models fail to reproduce patterns observed by remote sensing or in situ measurements. Our results show that implementation of the stoichiometric flexibility of phytoplankton in a low-complexity biogeochemical model enhances the reproducibility of ecosystem dynamics without increasing the computational demand, representing a simple approximation easily implemented in models aiming to describe regions with a Non-Redfleldian stoichiometry.
机译:通常认为,以摩尔比(N:P)衡量的硝酸盐(N)相对磷酸盐(P)的相对丰度决定了限制海洋营养素的主要营养素。在低复杂度的生物地球化学模型中,通常基于规范的Redfield比(N:P = 16)应用简单的阈值。但是,在许多海洋地区,特别是边缘,半封闭的海域(例如地中海盆地),N:P比率并不是恒定的。在这项工作中,根据浮游植物根据其在海水中的可利用性来调节磷酸盐吸收的能力(即所谓的节俭系),将N:P比率的灵活定义纳入了生物地球化学模型MedERGOM中。这种修改可以更真实地表示地中海盆地营养物的化学计量,并可以更好地繁殖生产区(如加布斯湾和亚得里亚海)中观察到的浮游植物生物量。因此,这种方法特别适用于盆地规模的生物地球化学模型无法重现通过遥感或原位测量观察到的模式的沿海地区。我们的研究结果表明,在低复杂度生物地球化学模型中实现浮游植物化学计量的灵活性可以增强生态系统动力学的可重复性,而不会增加计算需求,这代表了在旨在描述非Redfleldian化学计量的区域模型中易于实现的简单近似。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号