Safety evaluation of mycotoxin citrinin production from Monascus ruber through whole-genome sequencing and analytical evaluation
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Title
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Safety evaluation of mycotoxin citrinin production from Monascus ruber through whole-genome sequencing and analytical evaluation
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Other Titles
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전장게놈시?싱과 분석평가를 통한 Monascus ruber 유래 mycotoxin citrinin 생산의 안정성 평가
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Authors
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윤혜리
구단열
한석
Shin, Seung Chul
Kim, Han-Woo
김효진
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Keywords
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Citrinin; Fungal metabolites; Monascus ruber; Whole-genome sequencing
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Issue Date
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2022
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Citation
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윤혜리, et al. 2022. "Safety evaluation of mycotoxin citrinin production from Monascus ruber through whole-genome sequencing and analytical evaluation". 3 BIOTECH, 12(1): 1-8.
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Abstract
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In this study, the whole genome of Monascus ruber KACC 46666 was generated using the PacBio RSII sequencer with high-quality de novo assembly to obtain trustworthy assembly and annotation using genome assemblies with long reads from PacBio single-molecule real-time sequencing. The whole genome of M. ruber has a total length of 25.9 Mb, divided in 13 contigs with 9639 genes. The functions of genes involved in secondary metabolite production were further analyzed. Gene clusters involved in the production of Monascus pigment, monacolin K, and mycotoxin citrinin were identified. Notably, most of the citrinin gene cluster was lost, as confirmed via high-performance liquid chromatography analysis. This genome-level safety evaluation of industrially important Monascus strains will provide valuable information for genome-based microbial engineering of natural food colorants and production of commercially important secondary metabolites such as monacolin K.
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URI
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https://repository.kopri.re.kr/handle/201206/14086
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DOI
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http://dx.doi.org/10.1007/s13205-022-03287-z
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Type
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Article
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Station
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해당사항없음
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Indexed
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SCIE
- Appears in Collections
- 2022-2022, Development of microbial enzymes degrading recalcitrant materials from the Arctic Circle (22-22) / Kim, Han-Woo (PN22014)
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