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Tracing Key Molecular Regulators of Lipid Biosynthesis in Tuber Development of Cyperus esculentus Using Transcriptomics and Lipidomics Profiling

Cyperus esculentus is widely representing one of the important oil crops around the world, which provides valuable resources of edible tubers called tiger nut. The chemical composition and high ability to produce fats emphasize the role of tiger nut in promoting oil crop productivity. However, the u...

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Autores principales: Wang, Liyan, Jing, Meiling, Ahmad, Naveed, Wang, Yifei, Wang, Yijin, Li, Jia, Li, Xiaowei, Liu, Weican, Wang, Nan, Wang, Fawei, Dong, Yuanyuan, Li, Haiyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8535953/
https://www.ncbi.nlm.nih.gov/pubmed/34680888
http://dx.doi.org/10.3390/genes12101492
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author Wang, Liyan
Jing, Meiling
Ahmad, Naveed
Wang, Yifei
Wang, Yijin
Li, Jia
Li, Xiaowei
Liu, Weican
Wang, Nan
Wang, Fawei
Dong, Yuanyuan
Li, Haiyan
author_facet Wang, Liyan
Jing, Meiling
Ahmad, Naveed
Wang, Yifei
Wang, Yijin
Li, Jia
Li, Xiaowei
Liu, Weican
Wang, Nan
Wang, Fawei
Dong, Yuanyuan
Li, Haiyan
author_sort Wang, Liyan
collection PubMed
description Cyperus esculentus is widely representing one of the important oil crops around the world, which provides valuable resources of edible tubers called tiger nut. The chemical composition and high ability to produce fats emphasize the role of tiger nut in promoting oil crop productivity. However, the underlying molecular mechanism of the production and accumulation of lipids in tiger nut development still remains unclear. Here, we conducted comprehensive transcriptomics and lipidomics analyses at different developmental stages of tuber in Cyperus esculentus. Lipidomic analyses confirmed that the accumulation of lipids including glycolipids, phospholipids, and glycerides were significantly enriched during tuber development from early to mature stage. The proportion of phosphatidylcholines (PC) declined during all stages and phosphatidyl ethanolamine (PE) was significantly declined in early and middle stages. These findings implied that PC is actively involved in triacylglycerol (TAG) biosynthesis during the tubers development, whereas PE may participate in TAG metabolism during early and middle stages. Comparative transcriptomics analyses indicated several genomic and metabolic pathways associated with lipid metabolism during tuber development in tiger nut. The Pearson correlation analysis showed that TAG synthesis in different developmental stages was attributed to 37 candidate transcripts including CePAH1. The up-regulation of diacylglycerol (DAG) and oil content in yeast, resulted from the inducible expression of exogenous CePAH1 confirmed the central role of this candidate gene in lipid metabolism. Our results demonstrated the foundation of an integrative metabolic model for understanding the molecular mechanism of tuber development in tiger nut, in which lipid biosynthesis plays a central role.
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spelling pubmed-85359532021-10-23 Tracing Key Molecular Regulators of Lipid Biosynthesis in Tuber Development of Cyperus esculentus Using Transcriptomics and Lipidomics Profiling Wang, Liyan Jing, Meiling Ahmad, Naveed Wang, Yifei Wang, Yijin Li, Jia Li, Xiaowei Liu, Weican Wang, Nan Wang, Fawei Dong, Yuanyuan Li, Haiyan Genes (Basel) Article Cyperus esculentus is widely representing one of the important oil crops around the world, which provides valuable resources of edible tubers called tiger nut. The chemical composition and high ability to produce fats emphasize the role of tiger nut in promoting oil crop productivity. However, the underlying molecular mechanism of the production and accumulation of lipids in tiger nut development still remains unclear. Here, we conducted comprehensive transcriptomics and lipidomics analyses at different developmental stages of tuber in Cyperus esculentus. Lipidomic analyses confirmed that the accumulation of lipids including glycolipids, phospholipids, and glycerides were significantly enriched during tuber development from early to mature stage. The proportion of phosphatidylcholines (PC) declined during all stages and phosphatidyl ethanolamine (PE) was significantly declined in early and middle stages. These findings implied that PC is actively involved in triacylglycerol (TAG) biosynthesis during the tubers development, whereas PE may participate in TAG metabolism during early and middle stages. Comparative transcriptomics analyses indicated several genomic and metabolic pathways associated with lipid metabolism during tuber development in tiger nut. The Pearson correlation analysis showed that TAG synthesis in different developmental stages was attributed to 37 candidate transcripts including CePAH1. The up-regulation of diacylglycerol (DAG) and oil content in yeast, resulted from the inducible expression of exogenous CePAH1 confirmed the central role of this candidate gene in lipid metabolism. Our results demonstrated the foundation of an integrative metabolic model for understanding the molecular mechanism of tuber development in tiger nut, in which lipid biosynthesis plays a central role. MDPI 2021-09-24 /pmc/articles/PMC8535953/ /pubmed/34680888 http://dx.doi.org/10.3390/genes12101492 Text en © 2021 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
Wang, Liyan
Jing, Meiling
Ahmad, Naveed
Wang, Yifei
Wang, Yijin
Li, Jia
Li, Xiaowei
Liu, Weican
Wang, Nan
Wang, Fawei
Dong, Yuanyuan
Li, Haiyan
Tracing Key Molecular Regulators of Lipid Biosynthesis in Tuber Development of Cyperus esculentus Using Transcriptomics and Lipidomics Profiling
title Tracing Key Molecular Regulators of Lipid Biosynthesis in Tuber Development of Cyperus esculentus Using Transcriptomics and Lipidomics Profiling
title_full Tracing Key Molecular Regulators of Lipid Biosynthesis in Tuber Development of Cyperus esculentus Using Transcriptomics and Lipidomics Profiling
title_fullStr Tracing Key Molecular Regulators of Lipid Biosynthesis in Tuber Development of Cyperus esculentus Using Transcriptomics and Lipidomics Profiling
title_full_unstemmed Tracing Key Molecular Regulators of Lipid Biosynthesis in Tuber Development of Cyperus esculentus Using Transcriptomics and Lipidomics Profiling
title_short Tracing Key Molecular Regulators of Lipid Biosynthesis in Tuber Development of Cyperus esculentus Using Transcriptomics and Lipidomics Profiling
title_sort tracing key molecular regulators of lipid biosynthesis in tuber development of cyperus esculentus using transcriptomics and lipidomics profiling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8535953/
https://www.ncbi.nlm.nih.gov/pubmed/34680888
http://dx.doi.org/10.3390/genes12101492
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