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    Characterization of Genes Related to Cirsimaritin Biosynthesis From Cirsium pendulum Fisch

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    https://www.riss.kr/link?id=A108905304

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Cirsium setidens Nakai and C. pendulum Fisch are Korean endemic thistle plants. Cirsimaritin is a major biocompound present in the genus Cirsium. We quantified cirsimaritin from the leaves of C.
    setidens Nakai and the stems and flowers of C. pendulum Fisch. Genes encoding the biosynthesis of cirsimaritin were identified from the transcriptomes of C. setidens Nakai. Gene Ontology analysis of the transcriptomes revealed that 5,000 transcripts were classified in the molecular function categories of cyclic compound binding proteins, transferase activity proteins, and heterocyclic compound binding proteins. More than 10,000 transcripts were identified in the biological process categories of organic metabolic process, primary metabolic process, cellular metabolic process, and biosynthetic process. Because chalcone synthase (CHS) and chalcone isomerase (CHI) are key enzymes in flavonoid biosynthesis, detailed phylogenetic and sequence analyses were carried out for these two enzymes. The phylogenetic analysis revealed that the CHS and CHI proteins of C. setidens were closely related to the CHS and CHI proteins of the artichoke thistle, Cynara carducunlus.
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    Cirsium setidens Nakai and C. pendulum Fisch are Korean endemic thistle plants. Cirsimaritin is a major biocompound present in the genus Cirsium. We quantified cirsimaritin from the leaves of C. setidens Nakai and the stems and flowers of C. pendulum ...

    Cirsium setidens Nakai and C. pendulum Fisch are Korean endemic thistle plants. Cirsimaritin is a major biocompound present in the genus Cirsium. We quantified cirsimaritin from the leaves of C.
    setidens Nakai and the stems and flowers of C. pendulum Fisch. Genes encoding the biosynthesis of cirsimaritin were identified from the transcriptomes of C. setidens Nakai. Gene Ontology analysis of the transcriptomes revealed that 5,000 transcripts were classified in the molecular function categories of cyclic compound binding proteins, transferase activity proteins, and heterocyclic compound binding proteins. More than 10,000 transcripts were identified in the biological process categories of organic metabolic process, primary metabolic process, cellular metabolic process, and biosynthetic process. Because chalcone synthase (CHS) and chalcone isomerase (CHI) are key enzymes in flavonoid biosynthesis, detailed phylogenetic and sequence analyses were carried out for these two enzymes. The phylogenetic analysis revealed that the CHS and CHI proteins of C. setidens were closely related to the CHS and CHI proteins of the artichoke thistle, Cynara carducunlus.

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    참고문헌 (Reference)

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    2 김은혜 ; 정자용, "곤드레 (Cirsium setidens) 에탄올 추출물의 알코올성 지방간 손상 억제 효과" 한국영양학회 49 (49): 420-428, 2016

    3 Abdonaser Poursalavati, "Toward understanding of the methoxylated flavonoid biosynthesis pathway in Dracocephalum kotschyi Boiss" Springer Science and Business Media LLC 11 (11): 19549-, 2021

    4 Benjamin R. Lichman, "The scaffold-forming steps of plant alkaloid biosynthesis" Royal Society of Chemistry (RSC) 38 (38): 103-129, 2021

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    6 Rose, F., "The Wild Flower Key" Frederick Warne & Co 377-380, 1981

    7 Taoufiq Benali, "The Current State of Knowledge in Biological Properties of Cirsimaritin" MDPI AG 11 (11): 1842-, 2022

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    3 Abdonaser Poursalavati, "Toward understanding of the methoxylated flavonoid biosynthesis pathway in Dracocephalum kotschyi Boiss" Springer Science and Business Media LLC 11 (11): 19549-, 2021

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    8 Jez, J. M., "Struture and mechanism of evolutionary unique enzyme chalcone isomerase" 7 : 786-791, 2000

    9 Ikuro Abe, "Structure and function of the chalcone synthase superfamily of plant type III polyketide synthases" Royal Society of Chemistry (RSC) 27 (27): 809-, 2010

    10 QINGLU WANG, "Soy isoflavone: The multipurpose phytochemical (Review)" Spandidos Publications 1 (1): 697-701, 2013

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    19 Sonia Herrando-Moraira, "Nuclear and plastid DNA phylogeny of tribe Cardueae (Compositae) with Hyb-Seq data: A new subtribal classification and a temporal diversification framework" Elsevier BV 137 : 313-332, 2019

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    25 Yun Ji Park, "Integrated analysis of transcriptome and metabolome in Cirsium japonicm Fisch ex DC" American Chemical Society (ACS) 5 (5): 29312-29324, 2020

    26 Mi Jin Jeon, "Identifying Terpenoid Biosynthesis Genes in Euphorbia maculata via Full-Length cDNA Sequencing" MDPI AG 27 (27): 4591-, 2022

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    35 이재민 ; Joyce P. Rodriguez ; 이강희 ; 박준연 ; 강기성 ; 함대현 ; 허창기 ; 이상천 ; 이상현, "Determination of flavonoids from Cirsium japonicum var. maackii and their inhibitory activities against aldose reductase" 한국응용생명화학회 60 (60): 487-496, 2017

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    39 Luís R. Silva, "Bioactive Compounds from Cardoon as Health Promoters in Metabolic Disorders" MDPI AG 11 (11): 336-, 2022

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    46 Morita, Y., "A chalcone isomerase-like protein enhances flavonoid production and flower pigmentation" 78 : 294-304, 2014

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