Satellite insights into diatom biomass dynamics and environmental drivers in the eastern China marginal seas

Diatoms are among the dominant phytoplankton groups in marginal seas and play a pivotal role in marine primary production and biogeochemical cycling. In this study, focusing on the eastern China marginal seas (ECMS), we developed a remote sensing model to retrieve diatom biomass ( C diat ) directly from remote sensing reflectance. Multiple linear regression and machine-learning methods were evaluated using in situ observations and satellite-in situ matchup datasets. Based on its balanced performance across the available evaluation datasets, the stepwise regression model was selected as the final regional model, achieving a coefficient of determination of 0.61 and a symmetric mean absolute percentage error of 48.3% in the satellite–in situ matchup validation. Application of this model to a 23–year record (2002–2025) of Aqua–MODIS observations revealed pronounced spatial and temporal patterns of C diat across the ECMS. Spatially, elevated C diat values were concentrated in coastal and estuarine waters and decreased markedly offshore. Strong seasonality was observed in coastal regions, characterized by summer maxima and winter minima. SHAP-based attribution analysis further identified iron, sea surface salinity, mixed layer depth, photosynthetically active radiation, silicon, and sea surface temperature as important environmental factors associated with nonlinear variations in C diat . River discharge was positively associated with C diat in estuarine waters, although these relationships weakened after removal of the seasonal cycle, indicating a substantial contribution from shared seasonal variability. These findings provide satellite-based insights into the multiscale variability of diatom biomass in the ECMS and improve our understanding of coastal ecosystem responses to environmental change.

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Publication Details

Journal
Ecological Indicators
Published
2026-09-25
DOI
https://doi.org/10.1016/j.ecolind.2026.115576
Primary Topic
Marine and coastal ecosystems
Type
article
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Satellite insights into diatom biomass dynamics and environmental drivers in the eastern China marginal seas

Tian Fei, Deyong Sun, Shengqiang Wang, Hailong Zhang et al.
Ecological Indicators
Marine and coastal ecosystems
article

Satellite insights into diatom biomass dynamics and environmental drivers in the eastern China marginal seas

Tian Fei, Deyong Sun, Shengqiang Wang, Hailong Zhang, Wenhao Sui, Chen Lu, Jian Wang
article en

Abstract

Diatoms are among the dominant phytoplankton groups in marginal seas and play a pivotal role in marine primary production and biogeochemical cycling. In this study, focusing on the eastern China marginal seas (ECMS), we developed a remote sensing model to retrieve diatom biomass ( C diat ) directly from remote sensing reflectance. Multiple linear regression and machine-learning methods were evaluated using in situ observations and satellite-in situ matchup datasets. Based on its balanced performance across the available evaluation datasets, the stepwise regression model was selected as the final regional model, achieving a coefficient of determination of 0.61 and a symmetric mean absolute percentage error of 48.3% in the satellite–in situ matchup validation. Application of this model to a 23–year record (2002–2025) of Aqua–MODIS observations revealed pronounced spatial and temporal patterns of C diat across the ECMS. Spatially, elevated C diat values were concentrated in coastal and estuarine waters and decreased markedly offshore. Strong seasonality was observed in coastal regions, characterized by summer maxima and winter minima. SHAP-based attribution analysis further identified iron, sea surface salinity, mixed layer depth, photosynthetically active radiation, silicon, and sea surface temperature as important environmental factors associated with nonlinear variations in C diat . River discharge was positively associated with C diat in estuarine waters, although these relationships weakened after removal of the seasonal cycle, indicating a substantial contribution from shared seasonal variability. These findings provide satellite-based insights into the multiscale variability of diatom biomass in the ECMS and improve our understanding of coastal ecosystem responses to environmental change.

Ecological IndicatorsVol. 191
Nanjing University of Information Science and Technology (CN)
Life below water
Openalex Percentile: Top 15%
Marine and coastal ecosystems
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Satellite insights into diatom biomass dynamics and environmental drivers in the eastern China marginal seas — Tian Fei, Deyong Sun, et al. · Ecological Indicators (2026) | TGRS Research Map | TGRS