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International Journal of Medicinal Mushrooms

Publication de 12  numéros par an

ISSN Imprimer: 1521-9437

ISSN En ligne: 1940-4344

The Impact Factor measures the average number of citations received in a particular year by papers published in the journal during the two preceding years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) IF: 1.2 To calculate the five year Impact Factor, citations are counted in 2017 to the previous five years and divided by the source items published in the previous five years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) 5-Year IF: 1.4 The Immediacy Index is the average number of times an article is cited in the year it is published. The journal Immediacy Index indicates how quickly articles in a journal are cited. Immediacy Index: 0.3 The Eigenfactor score, developed by Jevin West and Carl Bergstrom at the University of Washington, is a rating of the total importance of a scientific journal. Journals are rated according to the number of incoming citations, with citations from highly ranked journals weighted to make a larger contribution to the eigenfactor than those from poorly ranked journals. Eigenfactor: 0.00066 The Journal Citation Indicator (JCI) is a single measurement of the field-normalized citation impact of journals in the Web of Science Core Collection across disciplines. The key words here are that the metric is normalized and cross-disciplinary. JCI: 0.34 SJR: 0.274 SNIP: 0.41 CiteScore™:: 2.8 H-Index: 37

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Cytochrome P450 Genes in Medicinal Mushroom Antrodia cinnamomea T.T. Chang et W.N. Chou (Higher Basidiomycetes) are Strongly Expressed During Fruiting Body Formation

Volume 13, Numéro 6, 2011, pp. 513-523
DOI: 10.1615/IntJMedMushr.v13.i6.30
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RÉSUMÉ

Medicinal mushroom Antrodia cinnamomea is a higher Basidiomycetes endemic to Taiwan, where it is commonly used as a traditional folk medicine. It is well known for its multiple biologic activities and its potential for commercial development. Here, ten full lengths of cytochrome P450 (CYP) genes (ac-1 to ac-10) from A. cinnamomea were cloned and identified. With the exception of ac-3 and ac-8, which will probably be assigned as new CYP families, these genes had more than 40% amino acid identity and close evolutionary relationships to known CYPs. Among the ten genes, only Ac-7 did not possess a transmembrane domain but had an N-terminal signal peptide, so it was considered a novel extracellular CYP. The ten A. cinnamomea CYPs had different expression profiles in different growth conditions. In general, they were strongly expressed during the formation of fruiting bodies, especially in natural basidiomycetes. The expression of six CYPs of A. cinnamomea (ac-1 to ac-3 and ac-5 to ac-7) were strictly inhibited in the mycelia cell type. It was therefore concluded that these CYPs are most active in the fruiting bodies of A. cinnamomea.

CITÉ PAR
  1. Zhang Jinjing, Ren Ang, Chen Hui, Zhao Mingwen, Shi Liang, Chen Mingjie, Wang Hong, Feng Zhiyong, Nowrousian Minou, Transcriptome Analysis and Its Application in Identifying Genes Associated with Fruiting Body Development in Basidiomycete Hypsizygus marmoreus, PLOS ONE, 10, 4, 2015. Crossref

  2. Wang Lining, Wu Xiangli, Gao Wei, Zhao Mengran, Zhang Jinxia, Huang Chenyang, Differential Expression Patterns of Pleurotus ostreatus Catalase Genes during Developmental Stages and under Heat Stress, Genes, 8, 11, 2017. Crossref

  3. Li Xiaolin, Yan Lijuan, Li Qiang, Tan Hao, Zhou Jie, Miao Renyun, Ye Lei, Peng Weihong, Zhang Xiaoping, Tan Wei, Zhang Bo, Transcriptional profiling of Auricularia cornea in selenium accumulation, Scientific Reports, 9, 1, 2019. Crossref

  4. Hou Ludan, Wang Lining, Wu Xiangli, Gao Wei, Zhang Jinxia, Huang Chenyang, Expression patterns of two pal genes of Pleurotus ostreatus across developmental stages and under heat stress, BMC Microbiology, 19, 1, 2019. Crossref

  5. Barros Ana, Bell Vitoria, Ferrão Jorge, Calabrese Vittorio, Fernandes Tito, Mushroom Biomass: Some Clinical Implications of β-Glucans and Enzymes, Current Research in Nutrition and Food Science Journal, 4, Special-Issue-Oc, 2016. Crossref

  6. Kuang Yi, Li Bin, Wang Zilong, Qiao Xue, Ye Min, Terpenoids from the medicinal mushroom Antrodia camphorata: chemistry and medicinal potential, Natural Product Reports, 38, 1, 2021. Crossref

  7. Liu Xiaofeng, Xia Yongjun, Zhang Yao, Yang Caiyun, Xiong Zhiqiang, Song Xin, Ai Lianzhong, Comprehensive transcriptomic and proteomic analyses of antroquinonol biosynthetic genes and enzymes in Antrodia camphorata, AMB Express, 10, 1, 2020. Crossref

  8. Liu Zhengjie, Lu Hongyun, Zhang Xinglin, Chen Qihe, The Genomic and Transcriptomic Analyses of Floccularia luteovirens, a Rare Edible Fungus in the Qinghai–Tibet Plateau, Provide Insights into the Taxonomy Placement and Fruiting Body Formation, Journal of Fungi, 7, 11, 2021. Crossref

  9. Gomes Taisa G., Hadi Sámed I. I. A., Costa Alves Gabriel S., Mendonça Simone, De Siqueira Felix G., Miller Robert N. G., Current Strategies for the Detoxification of Jatropha curcas Seed Cake: A Review, Journal of Agricultural and Food Chemistry, 66, 11, 2018. Crossref

  10. Lin Yan-Liang, Lee Yi-Ru, Tsao Nai-Wen, Wang Sheng-Yang, Shaw Jei-Fu, Chu Fang-Hua, Characterization of the 2,3-Oxidosqualene Cyclase Gene from Antrodia cinnamomea and Enhancement of Cytotoxic Triterpenoid Compound Production, Journal of Natural Products, 78, 7, 2015. Crossref

  11. Lee Seulah, Yu Jae Sik, Lee Seoung Rak, Kim Ki Hyun, Non-peptide secondary metabolites from poisonous mushrooms: overview of chemistry, bioactivity, and biosynthesis, Natural Product Reports, 39, 3, 2022. Crossref

  12. Shu Lili, Wang Miaoyue, Xu Hui, Qiu Zhiheng, Li Tianlai, De novo transcriptome assembly and comprehensive assessment provide insight into fruiting body formation of Sparassis latifolia, Scientific Reports, 12, 1, 2022. Crossref

  13. Hou Ludan, Liu Zongqi, Yan Kexing, Xu Lijing, Chang Mingchang, Meng Junlong, Mnsod1 promotes the development of Pleurotus ostreatus and enhances the tolerance of mycelia to heat stress, Microbial Cell Factories, 21, 1, 2022. Crossref

  14. Liu Dongmei, Sun Xueyan, Diao Wentong, Qi Xiwu, Bai Yang, Yu Xu, Li Li, Fang Hailing, Chen Zequn, Liu Qun, Liang Chengyuan, Comparative transcriptome analysis revealed candidate genes involved in fruiting body development and sporulation in Ganoderma lucidum, Archives of Microbiology, 204, 8, 2022. Crossref

  15. Hou Ludan, Huang Chenyang, Wu Xiangli, Zhang Jinxia, Zhao Mengran, Nitric Oxide Negatively Regulates the Rapid Formation of Pleurotus ostreatus Primordia by Inhibiting the Mitochondrial aco Gene, Journal of Fungi, 8, 10, 2022. Crossref

  16. Zhang Bo, Tan Wei, Zhou Jie, Ye Lei, Jia Dinghong, Li Xiaolin, Physiological changes and gene responses during Ganoderma lucidum growth with selenium supplementation, PeerJ, 10, 2022. Crossref

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