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A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis

Amorphophallus konjac, a perennial herb in the Araceae family, is a cash crop that can produce a large amount of konjac glucomannan. To explore mechanisms underlying such large genomes in the genus Amorphophallus as well as the gene regulation of glucomannan biosynthesis, we present a chromosome-lev...

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Autores principales: Gao, Yong, Zhang, Yanan, Feng, Chen, Chu, Honglong, Feng, Chao, Wang, Haibo, Wu, Lifang, Yin, Si, Liu, Chao, Chen, Huanhuan, Li, Zhumei, Zou, Zhengrong, Tang, Lizhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Research Network of Computational and Structural Biotechnology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8860920/
https://www.ncbi.nlm.nih.gov/pubmed/35242290
http://dx.doi.org/10.1016/j.csbj.2022.02.009
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author Gao, Yong
Zhang, Yanan
Feng, Chen
Chu, Honglong
Feng, Chao
Wang, Haibo
Wu, Lifang
Yin, Si
Liu, Chao
Chen, Huanhuan
Li, Zhumei
Zou, Zhengrong
Tang, Lizhou
author_facet Gao, Yong
Zhang, Yanan
Feng, Chen
Chu, Honglong
Feng, Chao
Wang, Haibo
Wu, Lifang
Yin, Si
Liu, Chao
Chen, Huanhuan
Li, Zhumei
Zou, Zhengrong
Tang, Lizhou
author_sort Gao, Yong
collection PubMed
description Amorphophallus konjac, a perennial herb in the Araceae family, is a cash crop that can produce a large amount of konjac glucomannan. To explore mechanisms underlying such large genomes in the genus Amorphophallus as well as the gene regulation of glucomannan biosynthesis, we present a chromosome-level genome assembly of A. konjac with a total genome size of 5.60 Gb and a contig N50 of 1.20 Mb. Comparative genomic analysis reveals that A. konjac has undergone two whole-genome duplication (WGD) events in quick succession. Two recent bursts of transposable elements are identified in the A. konjac genome, which contribute greatly to the large genome size. Our transcriptomic analysis of the developmental corms characterizes key genes involved in the biosynthesis of glucomannan and related starches. High expression of cellulose synthase-like A, Cellulose synthase-like D, mannan-synthesis related 1, GDP-mannose pyrophosphorylase and phosphomannomutase fructokinase contributes to glucomannan synthesis during the corm expansion period while high expression of starch synthase, starch branching enzyme and phosphoglucomutase is responsible for starch synthesis in the late corm development stage. In conclusion, we generate a high-quality genome of A. konjac with different sequencing technologies. The expansion of transposable elements has caused the large genome of this species. And the identified key genes in the glucomannan biosynthesis provide valuable candidates for molecular breeding of this crop in the future.
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spelling pubmed-88609202022-03-02 A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis Gao, Yong Zhang, Yanan Feng, Chen Chu, Honglong Feng, Chao Wang, Haibo Wu, Lifang Yin, Si Liu, Chao Chen, Huanhuan Li, Zhumei Zou, Zhengrong Tang, Lizhou Comput Struct Biotechnol J Research Article Amorphophallus konjac, a perennial herb in the Araceae family, is a cash crop that can produce a large amount of konjac glucomannan. To explore mechanisms underlying such large genomes in the genus Amorphophallus as well as the gene regulation of glucomannan biosynthesis, we present a chromosome-level genome assembly of A. konjac with a total genome size of 5.60 Gb and a contig N50 of 1.20 Mb. Comparative genomic analysis reveals that A. konjac has undergone two whole-genome duplication (WGD) events in quick succession. Two recent bursts of transposable elements are identified in the A. konjac genome, which contribute greatly to the large genome size. Our transcriptomic analysis of the developmental corms characterizes key genes involved in the biosynthesis of glucomannan and related starches. High expression of cellulose synthase-like A, Cellulose synthase-like D, mannan-synthesis related 1, GDP-mannose pyrophosphorylase and phosphomannomutase fructokinase contributes to glucomannan synthesis during the corm expansion period while high expression of starch synthase, starch branching enzyme and phosphoglucomutase is responsible for starch synthesis in the late corm development stage. In conclusion, we generate a high-quality genome of A. konjac with different sequencing technologies. The expansion of transposable elements has caused the large genome of this species. And the identified key genes in the glucomannan biosynthesis provide valuable candidates for molecular breeding of this crop in the future. Research Network of Computational and Structural Biotechnology 2022-02-15 /pmc/articles/PMC8860920/ /pubmed/35242290 http://dx.doi.org/10.1016/j.csbj.2022.02.009 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Gao, Yong
Zhang, Yanan
Feng, Chen
Chu, Honglong
Feng, Chao
Wang, Haibo
Wu, Lifang
Yin, Si
Liu, Chao
Chen, Huanhuan
Li, Zhumei
Zou, Zhengrong
Tang, Lizhou
A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis
title A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis
title_full A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis
title_fullStr A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis
title_full_unstemmed A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis
title_short A chromosome-level genome assembly of Amorphophallus konjac provides insights into konjac glucomannan biosynthesis
title_sort chromosome-level genome assembly of amorphophallus konjac provides insights into konjac glucomannan biosynthesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8860920/
https://www.ncbi.nlm.nih.gov/pubmed/35242290
http://dx.doi.org/10.1016/j.csbj.2022.02.009
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