{"id":7483,"date":"2025-05-31T08:00:00","date_gmt":"2025-05-31T08:00:00","guid":{"rendered":"https:\/\/weedman.ai\/?p=7483"},"modified":"2025-05-31T08:00:00","modified_gmt":"2025-05-31T08:00:00","slug":"salk-institute-kartiert-cannabisgenom-um-zuchtbemuhungen-zu-fordern","status":"publish","type":"post","link":"https:\/\/weedman.ai\/de\/nachrichten\/forschung\/2025\/05\/31\/salk-institute-kartiert-cannabisgenom-um-zuchtbemuhungen-zu-fordern\/","title":{"rendered":"Salk Institute kartiert Cannabisgenom, um Z\u00fcchtungsbem\u00fchungen zu f\u00f6rdern"},"content":{"rendered":"<p>Forscher des Salk Institute haben die bisher detaillierteste genetische Karte von Cannabis erstellt und 193 Genome verschiedener Sorten analysiert. Diese bahnbrechende Studie deckt eine betr\u00e4chtliche genetische Vielfalt innerhalb der Cannabisarten auf, insbesondere bei Genen, die mit Cannabinoiden und Fetts\u00e4uren zusammenh\u00e4ngen, und bietet Einblicke in die Rolle der Geschlechtschromosomen bei der Zucht. Die in der Fachzeitschrift Nature ver\u00f6ffentlichten Forschungsergebnisse stellen eine wertvolle Ressource zur Verbesserung des Cannabisanbaus f\u00fcr medizinische, industrielle und nachhaltige Anwendungen dar.<\/p>\n\n\n\n<p>Cannabis ist seit \u00fcber 10.000 Jahren eine wichtige Kulturpflanze, die f\u00fcr ihre psychoaktiven Eigenschaften aufgrund von THC (Tetrahydrocannabinol) sowie f\u00fcr ihre Fasern, \u00d6le und Samen bekannt ist. Trotz seiner historischen Bedeutung ist Cannabis nach wie vor zu wenig erforscht, insbesondere nach jahrzehntelangen gesetzlichen Beschr\u00e4nkungen in vielen L\u00e4ndern. J\u00fcngste Gesetzes\u00e4nderungen in den Vereinigten Staaten in den Jahren 2014 und 2018 haben das Interesse am Cannabisanbau f\u00fcr verschiedene Anwendungen, darunter Medizin und Faserproduktion, wieder aufleben lassen.<\/p>\n\n\n\n<p>Das Salk-Forschungsteam hat mit dem Oregon CBD, der Oregon State University und dem HudsonAlpha Institute of Biotechnology zusammengearbeitet, um diesen umfassenden genetischen Cannabis-Atlas zu erstellen. Ihre Ergebnisse zeigen, dass Cannabisgenome eine au\u00dferordentliche Vielfalt aufweisen, wobei besonderes Augenmerk auf Cannabinoid-Synthesewege und genomische Variationen im Zusammenhang mit dem Fetts\u00e4urestoffwechsel gelegt wurde.<\/p>\n\n\n\n<p>Die Studie verdeutlicht die genetische Komplexit\u00e4t von Cannabis, das unter den Pflanzen einzigartig ist, weil es getrennte m\u00e4nnliche und weibliche Pflanzen hat. Diese Unterscheidung erschwert die genetische Analyse, aber das Forschungsteam nutzte die fortschrittliche Long-Read-Sequenzierungstechnologie, um diese Herausforderungen zu meistern. Herk\u00f6mmliche Sequenzierungsmethoden \u00fcbersehen oft kritische genetische Informationen, aber Long-Read-Techniken erfassen gr\u00f6\u00dfere DNA-Abschnitte und enth\u00fcllen komplizierte Genstrukturen und -variationen.<\/p>\n\n\n\n<p>Zu den wichtigsten Ergebnissen der Studie geh\u00f6ren:\n- 23% der untersuchten Gene waren in allen Genomen vorhanden, w\u00e4hrend 55% in 95-99% von ihnen gefunden wurden. Gleichzeitig wurden 21% der Gene in 5-94% der Genome identifiziert.\n- Die Forschungsarbeiten ergaben eine Variabilit\u00e4t in Genen, die mit dem Fetts\u00e4urestoffwechsel und dem Wachstum zusammenh\u00e4ngen, was neue Wege f\u00fcr die selektive Z\u00fcchtung zur Verbesserung von Cannabismerkmalen er\u00f6ffnet.\n- Insbesondere entdeckten die Forscher strukturelle Variationen im Fetts\u00e4ure-Biosyntheseweg, die die Produktion von Tetrahydrocannabivarin (THCV) beeinflussen, einem Cannabinoid, das f\u00fcr seine potenziell anregende Wirkung bekannt ist.<\/p>\n\n\n\n<p>Die genomischen Daten der Studie deuten darauf hin, dass zwei Gene, die mit der Cannabinoid-Synthese zusammenh\u00e4ngen, THCAS und CBDAS, wahrscheinlich unter selektivem Druck stehen, da sich die menschliche Z\u00fcchtung auf die Erh\u00f6hung des THC- und CBD-Gehalts konzentriert. Diese Konzentration auf Cannabinoid-Gene hat zu einer betr\u00e4chtlichen genetischen Variation bei Cannabispflanzen gef\u00fchrt.<\/p>\n\n\n\n<p>Mit Blick auf die Zukunft weist die Forschung auf mehrere M\u00f6glichkeiten zur Optimierung des Cannabisanbaus hin. Die festgestellten Unterschiede zwischen europ\u00e4ischen und asiatischen Genomen deuten darauf hin, dass es in Asien einen alten Verwandten von Cannabis gibt, der wertvolle genetische Ressourcen f\u00fcr die Z\u00fcchtung widerstandsf\u00e4higer Cannabispflanzen liefern k\u00f6nnte. Dar\u00fcber hinaus weist die Studie darauf hin, dass m\u00e4nnliche Cannabispflanzen Gene enthalten, die die Leistung der Nachkommen verbessern k\u00f6nnten, was darauf hindeutet, dass die derzeitigen Zuchtverfahren m\u00f6glicherweise n\u00fctzliche genetische Merkmale \u00fcbersehen.<\/p>\n\n\n\n<p>Da der Cannabismarkt weiter w\u00e4chst, bietet dieser genetische Atlas einen wichtigen Rahmen f\u00fcr Z\u00fcchter und Forscher, um Cannabispflanzen f\u00fcr gesundheitliche und industrielle Zwecke zu verbessern. Das Team des Salk-Instituts geht davon aus, dass seine Arbeit dazu beitragen wird, das volle Potenzial von Cannabis als Ressource f\u00fcr Fasern, Samen\u00f6l und medizinische Anwendungen zu erschlie\u00dfen und letztlich die Innovation in der Cannabisbranche voranzutreiben.<\/p>","protected":false},"excerpt":{"rendered":"<p>Forscher am Salk Institute haben die bisher detaillierteste genetische Karte von Cannabis erstellt, indem sie 193 Genome von...<\/p>","protected":false},"author":2,"featured_media":7482,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[71],"tags":[2298,1884,115,2299],"class_list":["post-7483","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-research","tag-breeding","tag-genetics","tag-innovation","tag-pangenome"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v25.5 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Salk Institute maps cannabis genome to boost breeding efforts - 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