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PPAR Signaling Maintains Metabolic Homeostasis under Hypothermia in Freshwater Drum (Aplodinotus grunniens)

Aplodinotus grunniens, known as freshwater drum, is a kind of eurythermal freshwater fish that is widely distributed in North America. In 2019, our research group reached a milestone on its artificial breeding and cultivation and have investigated its physiological adaption to the environment, provi...

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Autores principales: Wu, Ningyuan, Wen, Haibo, Xu, Pao, Chen, Jianxiang, Xue, Miaomiao, Li, Jianlin, Wang, Meiyao, Song, Changyou, Li, Hongxia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865675/
https://www.ncbi.nlm.nih.gov/pubmed/36677027
http://dx.doi.org/10.3390/metabo13010102
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author Wu, Ningyuan
Wen, Haibo
Xu, Pao
Chen, Jianxiang
Xue, Miaomiao
Li, Jianlin
Wang, Meiyao
Song, Changyou
Li, Hongxia
author_facet Wu, Ningyuan
Wen, Haibo
Xu, Pao
Chen, Jianxiang
Xue, Miaomiao
Li, Jianlin
Wang, Meiyao
Song, Changyou
Li, Hongxia
author_sort Wu, Ningyuan
collection PubMed
description Aplodinotus grunniens, known as freshwater drum, is a kind of eurythermal freshwater fish that is widely distributed in North America. In 2019, our research group reached a milestone on its artificial breeding and cultivation and have investigated its physiological adaption to the environment, providing a breakthrough and prospects for aquaculture. However, its adaptability and metabolic homeostasis to hypothermia is not fully understood. In this experiment, cold stress was conducted at 18 °C (LT18) and 10 °C (LT10) with 25 °C as control (Con) for 8 days to explore the effects of short-term hypothermia on the physiology and metabolism of freshwater drum. From the results, the level of free essential amino acids in LT18 and LT10 decreased significantly after 2 days cold stress compared with Con. Furthermore, plasma total triglyceride (TG) content and lipase (LPS) activity were decreased at LT10 for 2d. With RNA-seq in the liver, metabolic-related signaling, especially amino acid synthesis and lipid metabolism, was inhibited by hypothermia. Specifically, the PPAR signaling pathway is correlated with the inhibition of lipid and amino acid metabolism induced by hypothermia. These data confirmed that PPAR signaling maintains lipid and amino acid metabolic homeostasis during cold stress. These results give a theoretical foundation for hypothermia resistance in the area of metabolic homeostasis for freshwater drum.
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spelling pubmed-98656752023-01-22 PPAR Signaling Maintains Metabolic Homeostasis under Hypothermia in Freshwater Drum (Aplodinotus grunniens) Wu, Ningyuan Wen, Haibo Xu, Pao Chen, Jianxiang Xue, Miaomiao Li, Jianlin Wang, Meiyao Song, Changyou Li, Hongxia Metabolites Article Aplodinotus grunniens, known as freshwater drum, is a kind of eurythermal freshwater fish that is widely distributed in North America. In 2019, our research group reached a milestone on its artificial breeding and cultivation and have investigated its physiological adaption to the environment, providing a breakthrough and prospects for aquaculture. However, its adaptability and metabolic homeostasis to hypothermia is not fully understood. In this experiment, cold stress was conducted at 18 °C (LT18) and 10 °C (LT10) with 25 °C as control (Con) for 8 days to explore the effects of short-term hypothermia on the physiology and metabolism of freshwater drum. From the results, the level of free essential amino acids in LT18 and LT10 decreased significantly after 2 days cold stress compared with Con. Furthermore, plasma total triglyceride (TG) content and lipase (LPS) activity were decreased at LT10 for 2d. With RNA-seq in the liver, metabolic-related signaling, especially amino acid synthesis and lipid metabolism, was inhibited by hypothermia. Specifically, the PPAR signaling pathway is correlated with the inhibition of lipid and amino acid metabolism induced by hypothermia. These data confirmed that PPAR signaling maintains lipid and amino acid metabolic homeostasis during cold stress. These results give a theoretical foundation for hypothermia resistance in the area of metabolic homeostasis for freshwater drum. MDPI 2023-01-08 /pmc/articles/PMC9865675/ /pubmed/36677027 http://dx.doi.org/10.3390/metabo13010102 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wu, Ningyuan
Wen, Haibo
Xu, Pao
Chen, Jianxiang
Xue, Miaomiao
Li, Jianlin
Wang, Meiyao
Song, Changyou
Li, Hongxia
PPAR Signaling Maintains Metabolic Homeostasis under Hypothermia in Freshwater Drum (Aplodinotus grunniens)
title PPAR Signaling Maintains Metabolic Homeostasis under Hypothermia in Freshwater Drum (Aplodinotus grunniens)
title_full PPAR Signaling Maintains Metabolic Homeostasis under Hypothermia in Freshwater Drum (Aplodinotus grunniens)
title_fullStr PPAR Signaling Maintains Metabolic Homeostasis under Hypothermia in Freshwater Drum (Aplodinotus grunniens)
title_full_unstemmed PPAR Signaling Maintains Metabolic Homeostasis under Hypothermia in Freshwater Drum (Aplodinotus grunniens)
title_short PPAR Signaling Maintains Metabolic Homeostasis under Hypothermia in Freshwater Drum (Aplodinotus grunniens)
title_sort ppar signaling maintains metabolic homeostasis under hypothermia in freshwater drum (aplodinotus grunniens)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865675/
https://www.ncbi.nlm.nih.gov/pubmed/36677027
http://dx.doi.org/10.3390/metabo13010102
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