首页> 外文OA文献 >Assessing spatial and temporal variability of phytoplankton communities' composition in the Iroise Sea ecosystem (Brittany, France): A 3D modeling approach: Part 2: Linking summer mesoscale distribution of phenotypic diversity to hydrodynamism
【2h】

Assessing spatial and temporal variability of phytoplankton communities' composition in the Iroise Sea ecosystem (Brittany, France): A 3D modeling approach: Part 2: Linking summer mesoscale distribution of phenotypic diversity to hydrodynamism

机译:评估Iroise海生态系统(法国布列塔尼)浮游植物群落组成的空间和时间变化:3D建模方法:第2部分:将表型多样性的夏季中尺度分布与流体动力学联系起来

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Tidal front ecosystems are especially dynamic environments usually characterized by high phytoplankton biomass and high primary production. However, the description of functional microbial diversity occurring in these regions remains only partially documented. In this article, we use a numerical model, simulating a large number of phytoplankton phenotypes to explore the three-dimensional spatial patterns of phytoplankton abundance and diversity in the Iroise Sea (western Brittany). Our results suggest that, in boreal summer, a seasonally marked tidal front shapes the phytoplankton species richness. A diversity maximum is found in the surface mixed layer located slightly west of the tidal front (i.e., not strictly co-localized with high biomass concentrations) which separates tidally mixed from stratified waters. Differences in phenotypic composition between sub-regions with distinct hydrodynamic regimes (defined by vertical mixing, nutrients gradients and light penetration) are discussed. Local growth and/or physical transport of phytoplankton phenotypes are shown to explain our simulated diversity distribution. We find that a large fraction (64%) of phenotypes present during the considered period of September are ubiquitous, found in the frontal area and on both sides of the front (i.e., over the full simulated domain). The frontal area does not exhibit significant differences between its community composition and that of either the well-mixed region or an offshore Deep Chlorophyll Maximum (DCM). Only three phenotypes (out of 77) specifically grow locally and are found at substantial concentration only in the surface diversity maximum. Thus, this diversity maximum is composed of a combination of ubiquitous phenotypes with specific picoplankton deriving from offshore, stratified waters (including specific phenotypes from both the surface and the DCM) and imported through physical transport, completed by a few local phenotypes. These results are discussed in light of the three-dimensional general circulation at frontal interfaces. Processes identified by this study are likely to be common in tidal front environments and may be generalized to other shallow, tidally mixed environments worldwide.
机译:潮汐前线生态系统是特别动态的环境,通常以浮游植物生物量高和初级生产量高为特征。但是,对这些区域中发生的功能性微生物多样性的描述仍仅部分记载。在本文中,我们使用数值模型来模拟大量浮游植物的表型,以探索艾洛瓦海(布列塔尼西部)浮游植物丰度和多样性的三维空间格局。我们的结果表明,在北方夏季,季节性标记的潮汐锋面影响了浮游植物物种的丰富度。在位于潮汐前沿稍西的表面混合层中发现了多样性的最大值(即,与高生物质浓度不严格共存),这将潮汐混合与分层水分开。讨论了具有不同流体动力学机制(由垂直混合,营养梯度和光穿透定义)的子区域之间表型组成的差异。显示了浮游植物表型的局部生长和/或物理运输,以解释我们模拟的多样性分布。我们发现,在9月的考虑期间内,存在很大一部分(64%)的表型无处不在,位于额叶区域和额叶的两侧(即在整个模拟域中)。额叶区域的群落组成与充分混合的区域或近海的深叶绿素最大值(DCM)的群落组成之间没有显着差异。只有三种表型(77种中的一种)专门在局部生长,并且仅在表面多样性最大值处才以相当大的浓度发现。因此,这种多样性的最大值是由普遍存在的表型与特定的浮游生物的组合组成,特定的浮游生物来自近海分层水域(包括来自表层和DCM的特定表型),并通过物理运输输入,并由一些局部表型完成。鉴于额叶界面的三维总体循环,讨论了这些结果。这项研究确定的过程可能在潮汐潮汐环境中很常见,并且可能会推广到全球其他浅层,潮汐混合环境中。

著录项

相似文献

  • 外文文献
代理获取

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