Lentinula edodes Genome Survey and Postharvest Transcriptome Analysis
Author(s) -
Yūichi Sakamoto,
Keiko Nakade,
Shiho Sato,
Kentaro Yoshida,
Kazuhiro Miyazaki,
Satoshi Natsume,
Naotake Konno
Publication year - 2017
Publication title -
applied and environmental microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.552
H-Index - 324
eISSN - 1070-6291
pISSN - 0099-2240
DOI - 10.1128/aem.02990-16
Subject(s) - lentinula , biology , postharvest , gene , transcriptome , chitinase , gene family , genetics , genome , gene expression , botany , mushroom
Lentinula edodes is a popular, cultivated edible and medicinal mushroom.Lentinula edodes is susceptible to postharvest problems, such as gill browning, fruiting body softening, and lentinan degradation. We constructed ade novo assembly draft genome sequence and performed gene prediction forLentinula edodes .De novo assembly was carried out using short reads from paired-end and mate-paired libraries and by using long reads by PacBio, resulting in a contig number of 1,951 and anN50 of 1 Mb. Furthermore, we predicted genes by Augustus using transcriptome sequencing (RNA-seq) data from the whole life cycle ofLentinula edodes , resulting in 12,959 predicted genes. This analysis revealed thatLentinula edodes lacks lignin peroxidase. To reveal genes involved in the loss of quality ofLentinula edodes postharvest fruiting bodies, transcriptome analysis was carried out using serial analysis of gene expression (SuperSAGE). This analysis revealed that many cell wall-related enzymes are upregulated after harvest, such as β-1,3-1,6-glucan-degrading enzymes in glycoside hydrolase (GH) families GH5, GH16, GH30, GH55, and GH128, and thaumatin-like proteins. In addition, we found that several chitin-related genes are upregulated, such as putative chitinases in GH family 18, exochitinases in GH20, and a putative chitosanase in GH family 75. The results suggest that cell wall-degrading enzymes synergistically cooperate for rapid fruiting body autolysis. Many putative transcription factor genes were upregulated postharvest, such as genes containing high-mobility-group (HMG) domains and zinc finger domains. Several cell death-related proteins were also upregulated postharvest.IMPORTANCE Our data collectively suggest that there is a rapid fruiting body autolysis system inLentinula edodes . The genes for the loss of postharvest quality newly found in this research will be targets for the future breeding of strains that keep fresh longer than present strains.De novo Lentinula edodes genome assembly data will be used for the construction of a completeLentinula edodes chromosome map for future breeding.
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