Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition

The optimization of industrial production would only be possible with the discovery, identification andcharacterization of biological processes in which a nutrient or any other factor acts, as well as when theirgenes and genetic networks revealed. With the advent of Next Generation-Sequencing techno...

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Autores principales: Fernández, Ignacio, Alvarez-González, Carlos Alfonso, Tovar-Ramírez, Dariel, Galaviz, Mario
Formato: Artículo
Lenguaje:español
Publicado: Facultad de Ciencias Biologicas 2017
Materias:
Acceso en línea:https://nutricionacuicola.uanl.mx/index.php/acu/article/view/21
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author Fernández, Ignacio
Alvarez-González, Carlos Alfonso
Tovar-Ramírez, Dariel
Galaviz, Mario
author_facet Fernández, Ignacio
Alvarez-González, Carlos Alfonso
Tovar-Ramírez, Dariel
Galaviz, Mario
author_sort Fernández, Ignacio
collection Artículos de Revistas UANL
description The optimization of industrial production would only be possible with the discovery, identification andcharacterization of biological processes in which a nutrient or any other factor acts, as well as when theirgenes and genetic networks revealed. With the advent of Next Generation-Sequencing technologies, thediscovery of non-coding RNAs having a key role on the control of a diverse set of biological functions inmulticellular organism will allow a deeper knowledge on genes and genetic networks control such processesin farmed fish species. Here, the basics of non-coding RNAs regarding their features, biogenesis and mode ofaction will be briefly reviewed, while the research works specifically conducted until now on theidentification of non-coding RNAs in different farmed fish species, developmental stages and tissues usinghigh throughput technologies will be described and compared. Several non-coding RNAs have beenassociated with early developmental events, immune response to pathogen infections, sexual differentiationand maturation, and nutrition. While the research on miRNAs is the most abundant, new efforts on thecharacterization of long non-coding RNAs and PIWI-interacting RNAs profiles provided new insights on howthese non-coding RNAs are also involved in fish nutrition. Finally, the future perspectives and considerationson the potential use of non-coding RNAs (mainly those found in circulation) in relevant cultured fish speciesas new reliable biomarkers of physiological condition will be pointed out.
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spelling nutrucionacuicola-article-212020-07-29T23:23:47Z Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition Fernández, Ignacio Alvarez-González, Carlos Alfonso Tovar-Ramírez, Dariel Galaviz, Mario ncRNAs miRNAs nutrigenomics transcriptomics NGS ncRNAs miRNAs nutrigenomics transcriptomics NGS. The optimization of industrial production would only be possible with the discovery, identification andcharacterization of biological processes in which a nutrient or any other factor acts, as well as when theirgenes and genetic networks revealed. With the advent of Next Generation-Sequencing technologies, thediscovery of non-coding RNAs having a key role on the control of a diverse set of biological functions inmulticellular organism will allow a deeper knowledge on genes and genetic networks control such processesin farmed fish species. Here, the basics of non-coding RNAs regarding their features, biogenesis and mode ofaction will be briefly reviewed, while the research works specifically conducted until now on theidentification of non-coding RNAs in different farmed fish species, developmental stages and tissues usinghigh throughput technologies will be described and compared. Several non-coding RNAs have beenassociated with early developmental events, immune response to pathogen infections, sexual differentiationand maturation, and nutrition. While the research on miRNAs is the most abundant, new efforts on thecharacterization of long non-coding RNAs and PIWI-interacting RNAs profiles provided new insights on howthese non-coding RNAs are also involved in fish nutrition. Finally, the future perspectives and considerationson the potential use of non-coding RNAs (mainly those found in circulation) in relevant cultured fish speciesas new reliable biomarkers of physiological condition will be pointed out. The optimization of industrial production would only be possible with the discovery, identification andcharacterization of biological processes in which a nutrient or any other factor acts, as well as when theirgenes and genetic networks revealed. With the advent of Next Generation-Sequencing technologies, thediscovery of non-coding RNAs having a key role on the control of a diverse set of biological functions inmulticellular organism will allow a deeper knowledge on genes and genetic networks control such processesin farmed fish species. Here, the basics of non-coding RNAs regarding their features, biogenesis and mode ofaction will be briefly reviewed, while the research works specifically conducted until now on theidentification of non-coding RNAs in different farmed fish species, developmental stages and tissues usinghigh throughput technologies will be described and compared. Several non-coding RNAs have beenassociated with early developmental events, immune response to pathogen infections, sexual differentiationand maturation, and nutrition. While the research on miRNAs is the most abundant, new efforts on thecharacterization of long non-coding RNAs and PIWI-interacting RNAs profiles provided new insights on howthese non-coding RNAs are also involved in fish nutrition. Finally, the future perspectives and considerationson the potential use of non-coding RNAs (mainly those found in circulation) in relevant cultured fish speciesas new reliable biomarkers of physiological condition will be pointed out. Facultad de Ciencias Biologicas 2017-11-30 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion Artículo revisado por pares application/pdf https://nutricionacuicola.uanl.mx/index.php/acu/article/view/21 Avances en Nutrición Acuicola; 2017: Investigación y Desarrollo en Nutrición Acuícola 2017 spa https://nutricionacuicola.uanl.mx/index.php/acu/article/view/21/21 Derechos de autor 2019 Ignacio Fernández, Carlos Alfonso Alvarez-González, Dariel Tovar-Ramírez, Mario Galaviz
spellingShingle ncRNAs
miRNAs
nutrigenomics
transcriptomics
NGS
ncRNAs
miRNAs
nutrigenomics
transcriptomics
NGS.
Fernández, Ignacio
Alvarez-González, Carlos Alfonso
Tovar-Ramírez, Dariel
Galaviz, Mario
Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition
thumbnail https://rediab.uanl.mx/themes/sandal5/images/article.gif
title Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition
title_alt Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition
title_full Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition
title_fullStr Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition
title_full_unstemmed Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition
title_short Non-coding RNAs: Uncovering their Potential Relevance in Fish Nutrition
title_sort non coding rnas uncovering their potential relevance in fish nutrition
topic ncRNAs
miRNAs
nutrigenomics
transcriptomics
NGS
ncRNAs
miRNAs
nutrigenomics
transcriptomics
NGS.
topic_facet ncRNAs
miRNAs
nutrigenomics
transcriptomics
NGS
ncRNAs
miRNAs
nutrigenomics
transcriptomics
NGS.
url https://nutricionacuicola.uanl.mx/index.php/acu/article/view/21
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AT alvarezgonzalezcarlosalfonso noncodingrnasuncoveringtheirpotentialrelevanceinfishnutrition
AT tovarramirezdariel noncodingrnasuncoveringtheirpotentialrelevanceinfishnutrition
AT galavizmario noncodingrnasuncoveringtheirpotentialrelevanceinfishnutrition