{"id":9002,"date":"2024-08-15T16:03:14","date_gmt":"2024-08-15T16:03:14","guid":{"rendered":"https:\/\/longchangextracts.com\/?p=9002"},"modified":"2024-08-15T16:03:14","modified_gmt":"2024-08-15T16:03:14","slug":"deep-sea-fungus-neoroussolella-sp","status":"publish","type":"post","link":"https:\/\/longchangextracts.com\/fr\/champignon-des-grands-fonds-neoroussolella-sp\/","title":{"rendered":"Recherche sur les m\u00e9tabolites secondaires et leurs activit\u00e9s biologiques dans les produits de fermentation solides du champignon des profondeurs Neoroussolella sp"},"content":{"rendered":"<p>Recherche sur les m\u00e9tabolites secondaires et leurs activit\u00e9s biologiques dans les produits de fermentation solides du champignon des profondeurs Neoroussolella sp<br \/>\nLes micro-organismes marins ont d\u00e9velopp\u00e9 des syst\u00e8mes m\u00e9taboliques et des m\u00e9canismes de d\u00e9fense diff\u00e9rents de ceux des organismes terrestres en raison de leur exposition \u00e0 long terme \u00e0 des environnements extr\u00eames tels que la salinit\u00e9, la pression, la temp\u00e9rature, la luminosit\u00e9 et l'oligotrophie. Par cons\u00e9quent, les m\u00e9tabolites secondaires qu'ils produisent sont tr\u00e8s complexes et diversifi\u00e9s. Les sources microbiennes marines pr\u00e9sentent une vari\u00e9t\u00e9 extr\u00eamement riche de produits naturels, couvrant presque tous les types structurels de produits naturels et poss\u00e9dant un large \u00e9ventail d'activit\u00e9s biologiques, ce qui en fait une source importante de compos\u00e9s principaux pour de nouveaux m\u00e9dicaments naturels. L'\u00e9tude des m\u00e9tabolites secondaires des micro-organismes marins permettra de d\u00e9couvrir des compos\u00e9s principaux pr\u00e9sentant de nouvelles structures chimiques et des activit\u00e9s biologiques significatives, fournissant ainsi d'importantes structures mod\u00e8les et des pr\u00e9curseurs de m\u00e9dicaments pour la recherche et le d\u00e9veloppement de nouveaux m\u00e9dicaments.<\/p>\n<p>Notre groupe de recherche a pr\u00e9c\u00e9demment isol\u00e9 et identifi\u00e9 des champignons dans des s\u00e9diments \u00e0 une profondeur de 4314 m dans la mer de Chine m\u00e9ridionale (114 \u00b0 34 \u2032 32 \u2033 E, 13 \u00b0 57 \u2032 27 \u2033 N), et a obtenu un nouveau champignon marin Neoroussolella sp. D'apr\u00e8s l'examen de la litt\u00e9rature, il n'existe actuellement aucun rapport sur la recherche de m\u00e9tabolites secondaires \u00e0 la fois au niveau national et international. L'analyse par CLHP-SM de l'extrait brut obtenu par fermentation liquide \u00e0 petite \u00e9chelle a r\u00e9v\u00e9l\u00e9 que ses m\u00e9tabolites \u00e9taient tr\u00e8s abondants. Sur cette base, nous avons utilis\u00e9 une colonne de gel de silice normale, une colonne de gel, la chromatographie liquide \u00e0 haute performance et d'autres techniques chromatographiques pour \u00e9tudier syst\u00e9matiquement la composition chimique de ce champignon.<\/p>\n<p>Neoroussolella est un nouveau genre de champignons d\u00e9couvert et d\u00e9crit pour la premi\u00e8re fois par Liu et al. en 2014. \u00c0 l'heure actuelle, les champignons du genre Neoroussolella qui ont \u00e9t\u00e9 isol\u00e9s et identifi\u00e9s proviennent principalement de plantes et existent dans le bambou, les plantes herbac\u00e9es et les palmiers, tandis qu'il existe peu de rapports sur les sources marines, principalement concentr\u00e9s dans le bassin m\u00e9diterran\u00e9en, et toutes les sources proviennent de plantes benthiques. La souche FS526 utilis\u00e9e dans cette \u00e9tude a \u00e9t\u00e9 isol\u00e9e \u00e0 partir de s\u00e9diments marins dans la mer de Chine m\u00e9ridionale. D'apr\u00e8s la recherche bibliographique, il n'existe aucun rapport sur les m\u00e9tabolites secondaires de ce genre de champignon.<\/p>\n<p>Cette \u00e9tude a identifi\u00e9 pour la premi\u00e8re fois 15 compos\u00e9s monom\u00e8res provenant des produits de fermentation solides du champignon des profondeurs Neoroussolella sp.FS526, avec divers types de structures, dont 2 terp\u00e8nes, 5 isocoumarines, 2 benzofuranes, 1 monoterp\u00e8ne et 5 d\u00e9riv\u00e9s ph\u00e9noliques. Tous les compos\u00e9s ont \u00e9t\u00e9 isol\u00e9s pour la premi\u00e8re fois \u00e0 partir de champignons du genre Neoroussolella. Sur la base des types structurels de ces compos\u00e9s, on suppose que le ph\u00e9nol et ses d\u00e9riv\u00e9s sont les principaux m\u00e9tabolites secondaires caract\u00e9ristiques de ce champignon, qui sont principalement produits par la voie de biosynth\u00e8se des polyk\u00e9tides. Le compos\u00e9 1 pr\u00e9sente des analogues structurels avec diff\u00e9rentes configurations C-9. La configuration S de ce type de structure a \u00e9t\u00e9 d\u00e9couverte pour la premi\u00e8re fois par Stierle et al. \u00e0 partir de champignons Penicillium et nomm\u00e9e Berkeleyacetal C. Ce compos\u00e9 a des effets inhibiteurs sur les lign\u00e9es cellulaires du cancer du poumon non \u00e0 petites cellules. Plus tard, Sun et al. ont \u00e9galement d\u00e9couvert le Berkeleyacetal C \u00e0 partir du Penicillium purpurogenum MHZ 111. Par la suite, Chen et al. ont isol\u00e9 et purifi\u00e9 un nouvel analogue structurel de configuration C-9 R \u00e0 partir de Talaromyces amettolkiae YX1, et l'ont nomm\u00e9 amettolkolide B. Des tests d'activit\u00e9 ont \u00e9t\u00e9 men\u00e9s sur deux configurations diff\u00e9rentes de compos\u00e9s monom\u00e8res, Berkeleyacetal C et Amestolkolide B, qui ont tous deux montr\u00e9 une forte activit\u00e9 d'inhibition de la production de NO, mais aucune activit\u00e9 cytotoxique significative n'a \u00e9t\u00e9 trouv\u00e9e. Les r\u00e9sultats des tests d'activit\u00e9 biologique de cette \u00e9tude ont montr\u00e9 que le compos\u00e9 1 a une faible activit\u00e9 cytotoxique. En outre, le compos\u00e9 7 de l'isocoumarine a une forte activit\u00e9 antioxydante, et sa valeur IC50 est proche du contr\u00f4le positif Vc, ce qui m\u00e9rite des recherches plus approfondies. Les r\u00e9sultats de cette \u00e9tude enrichissent la composition chimique des champignons Neoroussolella et fournissent une base mat\u00e9rielle pour d'autres recherches sur d'autres activit\u00e9s biologiques \u00e0 l'avenir.<\/p>","protected":false},"excerpt":{"rendered":"<p>Research on Secondary Metabolites and Their Biological Activities in Solid Fermentation Products of Deep Sea Fungus Neoroussolella sp Marine microorganisms have evolved different metabolic systems and defense mechanisms from terrestrial organisms due to their long-term exposure to extreme environments such as high salt, high pressure, low temperature, low light, and oligotrophic levels. As a result, [&hellip;]<\/p>","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[20],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v23.0 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Research on Secondary Metabolites and Their Biological Activities in Solid Fermentation Products of Deep Sea Fungus Neoroussolella sp - China Chemical Manufacturer<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/longchangextracts.com\/fr\/champignon-des-grands-fonds-neoroussolella-sp\/\" \/>\n<meta property=\"og:locale\" content=\"fr_FR\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Research on Secondary Metabolites and Their Biological Activities in Solid Fermentation Products of Deep Sea Fungus Neoroussolella sp - China Chemical Manufacturer\" \/>\n<meta property=\"og:description\" content=\"Research on Secondary Metabolites and Their Biological Activities in Solid Fermentation Products of Deep Sea Fungus Neoroussolella sp Marine microorganisms have evolved different metabolic systems and defense mechanisms from terrestrial organisms due to their long-term exposure to extreme environments such as high salt, high pressure, low temperature, low light, and oligotrophic levels. 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