Nitrogen cycling throughout the distinct stages of oyster cultivation: From a multiple-isotope perspective

Oyster aquaculture has expanded worldwide in recent decades as a highly productive ecosystem. In these areas, oysters contribute to the removal of dissolved inorganic nitrogen (DIN) from the water column by taking up large quantities of suspended particulate organic matter (POM), thereby playing a critical role in water purification. However, a quantitative description of nitrogen (N) cycling throughout the distinct stages of oyster cultivation in such areas is lacking. This study measured δ 15 N values in various N pools, i.e., ammonium (δ 15 N-NH 4 + ), nitrate (δ 15 N-NO 3 − ), and particulate N (δ 15 N-PN) in the water column, oyster adductor muscle, oyster excreta, and surface sediment to systematically assess N cycling in estuarine systems with intensive oyster aquaculture. During the oyster seeding and breeding periods, oyster-related removal of POM and DIN was weak. POM and DIN were regulated by their sources during the former period, whereas soil organic matter transported from terrestrial systems may contribute to in situ POM degradation in estuarine systems with intensive oyster aquaculture during the latter period. By contrast, during periods of high oyster filter-feeding activity, oyster-related removal of POM and DIN increased, and DIN was assimilated by phytoplankton to form POM. During periods of intensive oyster filter feeding, the removal of DIN and POM from the water column was facilitated by oysters, thus suppressing phytoplankton blooms. Our study showed that oyster growth activities were an important seasonal regulator of the seasonal dynamics of POM and DIN, thereby inhibiting phytoplankton blooms and contributing to in situ POM degradation in estuarine systems with intensive oyster aquaculture.

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Publication Details

Journal
Marine Pollution Bulletin
Published
2026-09-30
DOI
https://doi.org/10.1016/j.marpolbul.2026.120416
Primary Topic
Marine Bivalve and Aquaculture Studies
Type
article
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Nitrogen cycling throughout the distinct stages of oyster cultivation: From a multiple-isotope perspective

Chunqing Chen, Zhiguang Song, Xin Zhou, Fajin Chen
Marine Pollution Bulletin
Marine Bivalve and Aquaculture Studies
article

Nitrogen cycling throughout the distinct stages of oyster cultivation: From a multiple-isotope perspective

Chunqing Chen, Zhiguang Song, Xin Zhou, Fajin Chen
article en

Abstract

Oyster aquaculture has expanded worldwide in recent decades as a highly productive ecosystem. In these areas, oysters contribute to the removal of dissolved inorganic nitrogen (DIN) from the water column by taking up large quantities of suspended particulate organic matter (POM), thereby playing a critical role in water purification. However, a quantitative description of nitrogen (N) cycling throughout the distinct stages of oyster cultivation in such areas is lacking. This study measured δ 15 N values in various N pools, i.e., ammonium (δ 15 N-NH 4 + ), nitrate (δ 15 N-NO 3 − ), and particulate N (δ 15 N-PN) in the water column, oyster adductor muscle, oyster excreta, and surface sediment to systematically assess N cycling in estuarine systems with intensive oyster aquaculture. During the oyster seeding and breeding periods, oyster-related removal of POM and DIN was weak. POM and DIN were regulated by their sources during the former period, whereas soil organic matter transported from terrestrial systems may contribute to in situ POM degradation in estuarine systems with intensive oyster aquaculture during the latter period. By contrast, during periods of high oyster filter-feeding activity, oyster-related removal of POM and DIN increased, and DIN was assimilated by phytoplankton to form POM. During periods of intensive oyster filter feeding, the removal of DIN and POM from the water column was facilitated by oysters, thus suppressing phytoplankton blooms. Our study showed that oyster growth activities were an important seasonal regulator of the seasonal dynamics of POM and DIN, thereby inhibiting phytoplankton blooms and contributing to in situ POM degradation in estuarine systems with intensive oyster aquaculture.

Marine Pollution BulletinVol. 233
Nanning Normal University (CN), Guangdong Ocean University (CN)
Life below water
Openalex Percentile: Top 15%
Marine Bivalve and Aquaculture Studies
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Nitrogen cycling throughout the distinct stages of oyster cultivation: From a multiple-isotope perspective — Chunqing Chen, Zhiguang Song, et al. · Marine Pollution Bulletin (2026) | TGRS Research Map | TGRS