The impact of acute thermal stress on the metabolome of the black rockfish (Sebastes schlegelii).

Acute change in water temperature causes heavy economic losses in the aquaculture industry. The present study investigated the metabolic and molecular effects of acute thermal stress on black rockfish (Sebastes schlegelii). Gas chromatography time-of-flight mass spectrometry (GC-TOF-MS)-based metabo...

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Main Authors: Min Song, Ji Zhao, Hai-Shen Wen, Yun Li, Ji-Fang Li, Lan-Min Li, Ya-Xiong Tao
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0217133
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spelling doaj-c9169331e8fe4a45ade6d4d963beb8e62021-03-03T20:39:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01145e021713310.1371/journal.pone.0217133The impact of acute thermal stress on the metabolome of the black rockfish (Sebastes schlegelii).Min SongJi ZhaoHai-Shen WenYun LiJi-Fang LiLan-Min LiYa-Xiong TaoAcute change in water temperature causes heavy economic losses in the aquaculture industry. The present study investigated the metabolic and molecular effects of acute thermal stress on black rockfish (Sebastes schlegelii). Gas chromatography time-of-flight mass spectrometry (GC-TOF-MS)-based metabolomics was used to investigate the global metabolic response of black rockfish at a high water temperature (27°C), low water temperature (5°C) and normal water temperature (16°C). Metabolites involved in energy metabolism and basic amino acids were significantly increased upon acute exposure to 27°C (P < 0.05), and no change in metabolite levels occurred in the low water temperature group. However, certain fatty acid levels were elevated after cold stress (P < 0.05), and this effect was not observed in the 27°C group, suggesting that acute high and low temperature exposures caused different physiological responses. Using quantitative real-time PCR, we analyzed the expression of ubiquitin (ub), hypoxia-inducible factor (hif), lactate dehydrogenase (ldh), and acetyl-CoA carboxylase (acac). Higher expression levels of ub, hif, and ldh (P < 0.05) were observed in the high water temperature group, but no changes in these expression levels occurred in the low water temperature group. Our findings provide a potential metabolic profile for black rockfish when exposed to acute temperature stress and provide some insights into host metabolic and molecular responses to thermal stress.https://doi.org/10.1371/journal.pone.0217133
collection DOAJ
language English
format Article
sources DOAJ
author Min Song
Ji Zhao
Hai-Shen Wen
Yun Li
Ji-Fang Li
Lan-Min Li
Ya-Xiong Tao
spellingShingle Min Song
Ji Zhao
Hai-Shen Wen
Yun Li
Ji-Fang Li
Lan-Min Li
Ya-Xiong Tao
The impact of acute thermal stress on the metabolome of the black rockfish (Sebastes schlegelii).
PLoS ONE
author_facet Min Song
Ji Zhao
Hai-Shen Wen
Yun Li
Ji-Fang Li
Lan-Min Li
Ya-Xiong Tao
author_sort Min Song
title The impact of acute thermal stress on the metabolome of the black rockfish (Sebastes schlegelii).
title_short The impact of acute thermal stress on the metabolome of the black rockfish (Sebastes schlegelii).
title_full The impact of acute thermal stress on the metabolome of the black rockfish (Sebastes schlegelii).
title_fullStr The impact of acute thermal stress on the metabolome of the black rockfish (Sebastes schlegelii).
title_full_unstemmed The impact of acute thermal stress on the metabolome of the black rockfish (Sebastes schlegelii).
title_sort impact of acute thermal stress on the metabolome of the black rockfish (sebastes schlegelii).
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description Acute change in water temperature causes heavy economic losses in the aquaculture industry. The present study investigated the metabolic and molecular effects of acute thermal stress on black rockfish (Sebastes schlegelii). Gas chromatography time-of-flight mass spectrometry (GC-TOF-MS)-based metabolomics was used to investigate the global metabolic response of black rockfish at a high water temperature (27°C), low water temperature (5°C) and normal water temperature (16°C). Metabolites involved in energy metabolism and basic amino acids were significantly increased upon acute exposure to 27°C (P < 0.05), and no change in metabolite levels occurred in the low water temperature group. However, certain fatty acid levels were elevated after cold stress (P < 0.05), and this effect was not observed in the 27°C group, suggesting that acute high and low temperature exposures caused different physiological responses. Using quantitative real-time PCR, we analyzed the expression of ubiquitin (ub), hypoxia-inducible factor (hif), lactate dehydrogenase (ldh), and acetyl-CoA carboxylase (acac). Higher expression levels of ub, hif, and ldh (P < 0.05) were observed in the high water temperature group, but no changes in these expression levels occurred in the low water temperature group. Our findings provide a potential metabolic profile for black rockfish when exposed to acute temperature stress and provide some insights into host metabolic and molecular responses to thermal stress.
url https://doi.org/10.1371/journal.pone.0217133
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