Asymmetric basin-wide responses of coastal phytoplankton biomass to the Indian Ocean dipole

Frequent Indian Ocean Dipole (IOD) events exert substantial ecological pressure on marine ecosystems of the Indian Ocean. However, how coastal ecosystems respond to IOD events remains unknown. Here, combining field observations, remote sensing, and model-derived product, we reveal a basin-scale response of surface and subsurface phytoplankton along the vast eastern Indian Ocean coastline; further, the response is asymmetric between IOD phases, with a 27.0 ± 17.0% increase during positive IOD but only a 13.1 ± 5.2% decrease during negative IOD. Upwelling Kelvin waves (KWs) generated by equatorial easterly wind anomalies during positive IOD raise the thermocline and mixing intensity, increase nutrient availability, and phytoplankton biomass. In contrast, downwelling KWs generated by equatorial westerly wind anomalies during negative IOD further constrain the oligotrophy-limited phytoplankton baseline, resulting in a substantially weaker biological response. Within the KWs framework, underwater topography enhances regional sensitivity to KWs forcing, thereby amplifying the asymmetric phytoplankton biomass responses. Our findings imply that the projected increase in extreme positive IOD events will likely enhance primary production, with possible implications for regional fisheries. This study shows that Indian Ocean Dipole events drive asymmetric, basin-scale changes in coastal phytoplankton through Kelvin waves, while underwater topography amplifies regional biological responses.

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Journal
Nature Communications
Published
2026-09-17
DOI
https://doi.org/10.1038/s41467-026-77809-1
Primary Topic
Oceanographic and Atmospheric Processes
Type
article
Field-Weighted Citation Impact
0.00

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article

Asymmetric basin-wide responses of coastal phytoplankton biomass to the Indian Ocean dipole

Feng Zhou, Jingjing Zhang, Shuh‐Ji Kao, Chit Aung Thu et al.
Nature Communications
Oceanographic and Atmospheric Processes
article

Asymmetric basin-wide responses of coastal phytoplankton biomass to the Indian Ocean dipole

Feng Zhou, Jingjing Zhang, Shuh‐Ji Kao, Chit Aung Thu, Wenju Cai, Jiliang Xuan, Jianfang Chen, Ruibin Ding, Soe Moe Lwin, Lu Shou, Lei Wang, Yun Qiu, Diana Ruiz Pino, Hongliang Li, Xinyang Wang, Carlos E. Mejía, Xiwu Zhou, Alban Lazar, Win Win Than, Yuanli Zhu
article en

Abstract

Frequent Indian Ocean Dipole (IOD) events exert substantial ecological pressure on marine ecosystems of the Indian Ocean. However, how coastal ecosystems respond to IOD events remains unknown. Here, combining field observations, remote sensing, and model-derived product, we reveal a basin-scale response of surface and subsurface phytoplankton along the vast eastern Indian Ocean coastline; further, the response is asymmetric between IOD phases, with a 27.0 ± 17.0% increase during positive IOD but only a 13.1 ± 5.2% decrease during negative IOD. Upwelling Kelvin waves (KWs) generated by equatorial easterly wind anomalies during positive IOD raise the thermocline and mixing intensity, increase nutrient availability, and phytoplankton biomass. In contrast, downwelling KWs generated by equatorial westerly wind anomalies during negative IOD further constrain the oligotrophy-limited phytoplankton baseline, resulting in a substantially weaker biological response. Within the KWs framework, underwater topography enhances regional sensitivity to KWs forcing, thereby amplifying the asymmetric phytoplankton biomass responses. Our findings imply that the projected increase in extreme positive IOD events will likely enhance primary production, with possible implications for regional fisheries. This study shows that Indian Ocean Dipole events drive asymmetric, basin-scale changes in coastal phytoplankton through Kelvin waves, while underwater topography amplifies regional biological responses.

Nature Communications
Centre National de la Recherche Scientifique (FR), Shanghai Jiao Tong University (CN), Hainan University (CN), Ministry of Natural Resources (CN), Dagon University (MM), Sorbonne Université (FR), Second Institute of Oceanography (CN), Livestock Breeding and Veterinary Department (MM), Ministry of Natural Resources (RW), Laboratoire d'Océanographie et du Climat : Expérimentations et Approches Numériques (FR), Fujian Institute of Oceanography (CN), Institut de Recherche pour le Développement (FR), Technological University Myeik (MM), Laoshan Laboratory, Ocean University of China (CN)
National Natural Science Foundation of China
Life below water
Openalex Percentile: Top 14%
Oceanographic and Atmospheric Processes
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