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Multi-omics analysis reveals the glycolipid metabolism response mechanism in the liver of genetically improved farmed Tilapia (GIFT, Oreochromis niloticus) under hypoxia stress.

Jun-Lei Ma | Jun Qiang | Yi-Fan Tao | Jing-Wen Bao | Hao-Jun Zhu | Lian-Ge Li | Pao Xu
BMC genomics | 2021

Dissolved oxygen (DO) in the water is a vital abiotic factor in aquatic animal farming. A hypoxic environment affects the growth, metabolism, and immune system of fish. Glycolipid metabolism is a vital energy pathway under acute hypoxic stress, and it plays a significant role in the adaptation of fish to stressful environments. In this study, we used multi-omics integrative analyses to explore the mechanisms of hypoxia adaptation in Genetically Improved Farmed Tilapia (GIFT, Oreochromis niloticus).

Pubmed ID: 33549051

Associated grants

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Group ICA of fMRI Toolbox (tool)

RRID:SCR_001953

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RRID:SCR_002811

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RRID:SCR_005039

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RRID:SCR_007712

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RRID:SCR_012056

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RRID:SCR_012773

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ggplot2 (tool)

RRID:SCR_014601

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RRID:SCR_015538

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RRID:SCR_016323

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RRID:SCR_016620

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