Transcriptome Analysis of Antrodia cinnamomea Mycelia from Different Wood Substrates.

IF 2 4区 生物学 Q2 AGRONOMY
Jiao-Jiao Chen, Zhang Zhang, Yi Wang, Xiao-Long Yuan, Juan Wang, Yu-Ming Yang, Yuan Zheng
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Abstract

Antrodia cinnamomea, an edible and medicinal fungus with significant economic value and application prospects, is rich in terpenoids, benzenoids, lignans, polysaccharides, and benzoquinone, succinic and maleic derivatives. In this study, the transcriptome of A. cinnamomea cultured on the wood substrates of Cinnamomum glanduliferum (YZM), C. camphora (XZM), and C. kanehirae (NZM) was sequenced using the high-throughput sequencing technology Illumina HiSeq 2000, and the data were assembled by de novo strategy to obtain 78,729 Unigenes with an N50 of 4,463 bp. Compared with public databases, about 11,435, 6,947, and 5,994 Unigenes were annotated to the Non-Redundant (NR), Gene Ontology (GO), and Kyoto Encyclopedia of Genes and Genome (KEGG), respectively. The comprehensive analysis of the mycelium terpene biosynthesis-related genes in A. cinnamomea revealed that the expression of acetyl-CoA acetyltransferase (AACT), acyl-CoA dehydrogenase (MCAD), 3-hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA), mevalonate pyrophosphate decarboxylase (MVD), and isopentenyl diphosphate isomerase (IDI) was significantly higher on NZM compared to the other two wood substrates. Similarly, the expression of geranylgeranyltransferase (GGT) was significantly higher on YZM compared to NZM and XZM, and the expression of farnesyl transferase (FTase) was significantly higher on XZM. Furthermore, the expressions of 2,3-oxidized squalene cyclase (OCS), squalene synthase (SQS), and squalene epoxidase (SE) were significantly higher on NZM. Overall, this study provides a potential approach to explore the molecular regulation mechanism of terpenoid biosynthesis in A. cinnamomea.

Abstract Image

Abstract Image

Abstract Image

不同木质基质樟芝菌丝体转录组分析。
肉桂Antrodia cinnamomea是一种具有重要经济价值和应用前景的食药用菌,富含萜类、苯类、木脂素、多糖以及苯醌、琥珀酸和马来酸衍生物。本研究利用Illumina HiSeq 2000高通量测序技术,对在Cinnamomum glanduliferum (YZM)、C. camphora (XZM)和C. kanehirae (NZM)木底培养的A. cinnamomea转录组进行测序,采用从头组装策略,获得78,729个Unigenes, N50为4,463 bp。与公共数据库相比,分别有11,435、6,947和5,994个Unigenes被注释到Non-Redundant (NR)、Gene Ontology (GO)和Kyoto Encyclopedia of Genes and Genome (KEGG)。综合分析肉桂菌丝体萜烯合成相关基因发现,与其他两种木材底物相比,NZM上乙酰辅酶A乙酰转移酶(AACT)、乙酰辅酶A脱氢酶(MCAD)、3-羟基-3-甲基戊二酰辅酶A (HMG-CoA)、甲戊酸焦磷酸脱羧酶(MVD)和异戊二烯二磷酸异构酶(IDI)的表达量显著高于其他两种木材底物。同样,香叶基香叶基转移酶(GGT)在YZM上的表达量显著高于NZM和XZM,法尼基转移酶(FTase)在XZM上的表达量显著高于NZM和XZM。此外,2,3-氧化角鲨烯环化酶(OCS)、角鲨烯合成酶(SQS)和角鲨烯环氧化酶(SE)在NZM上的表达量显著增加。综上所述,本研究为探索肉桂萜类生物合成的分子调控机制提供了一种潜在的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mycobiology
Mycobiology AGRONOMYMYCOLOGY-MYCOLOGY
CiteScore
3.90
自引率
5.30%
发文量
41
审稿时长
22 weeks
期刊介绍: Mycobiology is an international journal devoted to the publication of fundamental and applied investigations on all aspects of mycology and their traditional allies. It is published quarterly and is the official publication of the Korean Society of Mycology. Mycobiology publishes reports of basic research on fungi and fungus-like organisms, including yeasts, filamentous fungi, lichen fungi, oomycetes, moulds, and mushroom. Topics also include molecular and cellular biology, biochemistry, metabolism, developmental biology, environmental mycology, evolution, ecology, taxonomy and systematics, genetics/genomics, fungal pathogen and disease control, physiology, and industrial biotechnology using fungi.
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