登录 注册

Variability in the Relationship Between Ocean Phytoplankton Diversity and Carbon Biomass Across Methods and Scales.

🔗 访问原文
🔗 Access Paper

📝 摘要
Abstract

Diverse ecosystems on land and in the ocean are thought to be more productive, stable and resistant to change, but these relationships are highly variable across systems and scales. Although the productivity-diversity relationship (PDR) has been extensively explored on land, there are limited in-water observations of the PDR in marine ecosystems. In this work, the relationship between phytoplankton diversity and carbon biomass (as a proxy for productivity) was examined using a global in situ dataset. The shape of this relationship was evaluated for three metrics of phytoplankton diversity: pigment concentrations modelled from hyperspectral remote sensing reflectance (Rrs(𝜆)), pigment concentrations measured by high performance liquid chromatography (HPLC), and 18S rRNA gene sequences (eukaryotes). While gene sequencing methods provide higher resolution taxonomic information about phytoplankton communities, remote sensing methods collect higher resolution spatiotemporal information on global scales. By comparing these methods (Rrs(𝜆)-modelled pigments vs. measured HPLC pigments vs. 18S rRNA gene sequences), this work demonstrates the variability in the relationship between phytoplankton diversity and carbon biomass based on the method of assessing these parameters and establishes a baseline for in situ observations that has the potential to be extended to global observations from NASA's Plankton Aerosol Cloud ocean Ecosystem (PACE) satellite.

🏷️ 关键词
Keywords

📊 文章统计
Article Statistics

基础数据
Basic Stats

32 浏览
Views
0 下载
Downloads
1 引用
Citations

引用趋势
Citation Trend

阅读国家分布
Country Distribution

阅读机构分布
Institution Distribution

月度浏览趋势
Monthly Views

相关关键词
Related Keywords

影响因子分析
Impact Analysis

0.00 综合评分
Overall Score
引用影响力
Citation Impact
浏览热度
View Popularity
下载频次
Download Frequency

📄 相关文章
Related Articles

海洋智能分析Ocean AI Analysis

正在分析中,请稍候…Analyzing, please wait…
海洋智能体 🌊
海洋智能体
AI科研助手 · 3596篇文献
我看到你正在阅读一篇文献,需要我帮你解读摘要、推荐相关论文,或者分析研究方法论吗?