Chronic Nitrite Nitrogen Responses in Penaeus monodon: From Growth Phenotypes to Metabolic Hub Signaling

Nitrite nitrogen is a prevalent environmental stressor in intensive shrimp aquaculture that impairs growth and health, yet its chronic effects and underlying molecular mechanisms in Penaeus monodon remain incompletely understood. To address this, we exposed juvenile P. monodon (initial body weight 2.06–2.34 g) to 0, 4, and 8 mg/L nitrite nitrogen for 30 days, measuring survival, growth performance, hepatopancreas enzyme activities (ACP, AKP, T-AOC, T-SOD), and conducting transcriptomic profiling of gill and hepatopancreas tissues. Chronic nitrite exposure significantly reduced weight gain rate from 82.98% in the control to 39.33% (4 mg/L) and 33.86% (8 mg/L), with survival declining from 58.89% to 51.11% and 38.89%, respectively. ACP activity and antioxidant capacities (T-AOC and T-SOD) were markedly suppressed, indicating impaired immune and oxidative stress defenses. Transcriptomic analysis revealed tissue-specific responses: gills primarily adjusted nitrogen/amino-acid metabolism at 4 mg/L and mitochondrial oxidative phosphorylation at 8 mg/L, whereas the hepatopancreas showed broader reprogramming involving cell junction integrity, tryptophan–kynurenine metabolism, cofactor/vitamin metabolism, lipid remodeling, cytochrome P450-mediated detoxification, and melanization-related immune pathways at higher stress. These findings demonstrate that chronic nitrite stress progressively erodes shrimp homeostasis through tissue-specific transcriptional reprogramming, forcing resource allocation toward maintenance and defense at the expense of growth, thereby providing a mechanistic basis for nitrite risk assessment and threshold management in aquaculture.

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Journal
Biology
Published
2026-10-09
DOI
https://doi.org/10.3390/biology15201795
Primary Topic
Aquaculture disease management and microbiota
Type
article
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article

Chronic Nitrite Nitrogen Responses in Penaeus monodon: From Growth Phenotypes to Metabolic Hub Signaling

Yangyang Ding, Yundong Li, Lishi Yang, Yafei Duan et al.
Biology
Aquaculture disease management and microbiota
article

Chronic Nitrite Nitrogen Responses in Penaeus monodon: From Growth Phenotypes to Metabolic Hub Signaling

Yangyang Ding, Yundong Li, Lishi Yang, Yafei Duan, Jianzhi Shi, Song Jiang, Li Zhang, Qibin Yang, Jianhua Huang, Xu Chen
article en

Abstract

Nitrite nitrogen is a prevalent environmental stressor in intensive shrimp aquaculture that impairs growth and health, yet its chronic effects and underlying molecular mechanisms in Penaeus monodon remain incompletely understood. To address this, we exposed juvenile P. monodon (initial body weight 2.06–2.34 g) to 0, 4, and 8 mg/L nitrite nitrogen for 30 days, measuring survival, growth performance, hepatopancreas enzyme activities (ACP, AKP, T-AOC, T-SOD), and conducting transcriptomic profiling of gill and hepatopancreas tissues. Chronic nitrite exposure significantly reduced weight gain rate from 82.98% in the control to 39.33% (4 mg/L) and 33.86% (8 mg/L), with survival declining from 58.89% to 51.11% and 38.89%, respectively. ACP activity and antioxidant capacities (T-AOC and T-SOD) were markedly suppressed, indicating impaired immune and oxidative stress defenses. Transcriptomic analysis revealed tissue-specific responses: gills primarily adjusted nitrogen/amino-acid metabolism at 4 mg/L and mitochondrial oxidative phosphorylation at 8 mg/L, whereas the hepatopancreas showed broader reprogramming involving cell junction integrity, tryptophan–kynurenine metabolism, cofactor/vitamin metabolism, lipid remodeling, cytochrome P450-mediated detoxification, and melanization-related immune pathways at higher stress. These findings demonstrate that chronic nitrite stress progressively erodes shrimp homeostasis through tissue-specific transcriptional reprogramming, forcing resource allocation toward maintenance and defense at the expense of growth, thereby providing a mechanistic basis for nitrite risk assessment and threshold management in aquaculture.

BiologyVol. 15(20)
Jinan University (CN), Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou) (CN), Ministry of Agriculture and Rural Affairs (CN), Chinese Academy of Fishery Sciences (CN)
Openalex Percentile: Top 20%
Aquaculture disease management and microbiota
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