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Revealing Alteration in the Hepatic Glucose Metabolism of Genetically Improved Carp, Jayanti Rohu Labeo rohita Fed a High Carbohydrate Diet Using Transcriptome Sequencing

Although feed cost is the greatest concern in aquaculture, the inclusion of carbohydrates in the fish diet, and their assimilation, are still not well understood in aquaculture species. We identified molecular events that occur due to the inclusion of high carbohydrate levels in the diets of genetic...

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Autores principales: Rasal, Kiran D., Iquebal, Mir Asif, Dixit, Sangita, Vasam, Manohar, Raza, Mustafa, Sahoo, Lakshman, Jaiswal, Sarika, Nandi, Samiran, Mahapatra, Kanta Das, Rasal, Avinash, Udit, Uday Kumar, Meher, Prem Kumar, Murmu, Khuntia, Angadi, UB, Rai, Anil, Kumar, Dinesh, Sundaray, Jitendra Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7662834/
https://www.ncbi.nlm.nih.gov/pubmed/33142948
http://dx.doi.org/10.3390/ijms21218180
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author Rasal, Kiran D.
Iquebal, Mir Asif
Dixit, Sangita
Vasam, Manohar
Raza, Mustafa
Sahoo, Lakshman
Jaiswal, Sarika
Nandi, Samiran
Mahapatra, Kanta Das
Rasal, Avinash
Udit, Uday Kumar
Meher, Prem Kumar
Murmu, Khuntia
Angadi, UB
Rai, Anil
Kumar, Dinesh
Sundaray, Jitendra Kumar
author_facet Rasal, Kiran D.
Iquebal, Mir Asif
Dixit, Sangita
Vasam, Manohar
Raza, Mustafa
Sahoo, Lakshman
Jaiswal, Sarika
Nandi, Samiran
Mahapatra, Kanta Das
Rasal, Avinash
Udit, Uday Kumar
Meher, Prem Kumar
Murmu, Khuntia
Angadi, UB
Rai, Anil
Kumar, Dinesh
Sundaray, Jitendra Kumar
author_sort Rasal, Kiran D.
collection PubMed
description Although feed cost is the greatest concern in aquaculture, the inclusion of carbohydrates in the fish diet, and their assimilation, are still not well understood in aquaculture species. We identified molecular events that occur due to the inclusion of high carbohydrate levels in the diets of genetically improved ‘Jayanti rohu’ Labeo rohita. To reveal transcriptional changes in the liver of rohu, a feeding experiment was conducted with three doses of gelatinized starch (20% (control), 40%, and 60%). Transcriptome sequencing revealed totals of 15,232 (4464 up- and 4343 down-regulated) and 15,360 (4478 up- and 4171 down-regulated) differentially expressed genes. Up-regulated transcripts associated with glucose metabolisms, such as hexokinase, PHK, glycogen synthase and PGK, were found in fish fed diets with high starch levels. Interestingly, a de novo lipogenesis mechanism was found to be enriched in the livers of treated fish due to up-regulated transcripts such as FAS, ACCα, and PPARγ. The insulin signaling pathways with enriched PPAR and mTOR were identified by Kyoto Encyclopedia of Genes and Genome (KEGG) as a result of high carbohydrates. This work revealed for the first time the atypical regulation transcripts associated with glucose metabolism and lipogenesis in the livers of Jayanti rohu due to the inclusion of high carbohydrate levels in the diet. This study also encourages the exploration of early nutritional programming for enhancing glucose efficiency in carp species, for sustainable and cost-effective aquaculture production.
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spelling pubmed-76628342020-11-14 Revealing Alteration in the Hepatic Glucose Metabolism of Genetically Improved Carp, Jayanti Rohu Labeo rohita Fed a High Carbohydrate Diet Using Transcriptome Sequencing Rasal, Kiran D. Iquebal, Mir Asif Dixit, Sangita Vasam, Manohar Raza, Mustafa Sahoo, Lakshman Jaiswal, Sarika Nandi, Samiran Mahapatra, Kanta Das Rasal, Avinash Udit, Uday Kumar Meher, Prem Kumar Murmu, Khuntia Angadi, UB Rai, Anil Kumar, Dinesh Sundaray, Jitendra Kumar Int J Mol Sci Article Although feed cost is the greatest concern in aquaculture, the inclusion of carbohydrates in the fish diet, and their assimilation, are still not well understood in aquaculture species. We identified molecular events that occur due to the inclusion of high carbohydrate levels in the diets of genetically improved ‘Jayanti rohu’ Labeo rohita. To reveal transcriptional changes in the liver of rohu, a feeding experiment was conducted with three doses of gelatinized starch (20% (control), 40%, and 60%). Transcriptome sequencing revealed totals of 15,232 (4464 up- and 4343 down-regulated) and 15,360 (4478 up- and 4171 down-regulated) differentially expressed genes. Up-regulated transcripts associated with glucose metabolisms, such as hexokinase, PHK, glycogen synthase and PGK, were found in fish fed diets with high starch levels. Interestingly, a de novo lipogenesis mechanism was found to be enriched in the livers of treated fish due to up-regulated transcripts such as FAS, ACCα, and PPARγ. The insulin signaling pathways with enriched PPAR and mTOR were identified by Kyoto Encyclopedia of Genes and Genome (KEGG) as a result of high carbohydrates. This work revealed for the first time the atypical regulation transcripts associated with glucose metabolism and lipogenesis in the livers of Jayanti rohu due to the inclusion of high carbohydrate levels in the diet. This study also encourages the exploration of early nutritional programming for enhancing glucose efficiency in carp species, for sustainable and cost-effective aquaculture production. MDPI 2020-10-31 /pmc/articles/PMC7662834/ /pubmed/33142948 http://dx.doi.org/10.3390/ijms21218180 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rasal, Kiran D.
Iquebal, Mir Asif
Dixit, Sangita
Vasam, Manohar
Raza, Mustafa
Sahoo, Lakshman
Jaiswal, Sarika
Nandi, Samiran
Mahapatra, Kanta Das
Rasal, Avinash
Udit, Uday Kumar
Meher, Prem Kumar
Murmu, Khuntia
Angadi, UB
Rai, Anil
Kumar, Dinesh
Sundaray, Jitendra Kumar
Revealing Alteration in the Hepatic Glucose Metabolism of Genetically Improved Carp, Jayanti Rohu Labeo rohita Fed a High Carbohydrate Diet Using Transcriptome Sequencing
title Revealing Alteration in the Hepatic Glucose Metabolism of Genetically Improved Carp, Jayanti Rohu Labeo rohita Fed a High Carbohydrate Diet Using Transcriptome Sequencing
title_full Revealing Alteration in the Hepatic Glucose Metabolism of Genetically Improved Carp, Jayanti Rohu Labeo rohita Fed a High Carbohydrate Diet Using Transcriptome Sequencing
title_fullStr Revealing Alteration in the Hepatic Glucose Metabolism of Genetically Improved Carp, Jayanti Rohu Labeo rohita Fed a High Carbohydrate Diet Using Transcriptome Sequencing
title_full_unstemmed Revealing Alteration in the Hepatic Glucose Metabolism of Genetically Improved Carp, Jayanti Rohu Labeo rohita Fed a High Carbohydrate Diet Using Transcriptome Sequencing
title_short Revealing Alteration in the Hepatic Glucose Metabolism of Genetically Improved Carp, Jayanti Rohu Labeo rohita Fed a High Carbohydrate Diet Using Transcriptome Sequencing
title_sort revealing alteration in the hepatic glucose metabolism of genetically improved carp, jayanti rohu labeo rohita fed a high carbohydrate diet using transcriptome sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7662834/
https://www.ncbi.nlm.nih.gov/pubmed/33142948
http://dx.doi.org/10.3390/ijms21218180
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