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บทความทางวิทยาศาสตร์ 2006年學術文章 2006年學術文章 2006年學術文章 научни чланак article scientifique (publié 2006) 2006年の論文 מאמר מדעי tudományos cikk artículo científico publicado en 2006 naučni članak scienca artikolo 2006年学术文章 vedecký článok 2006年学术文章 teaduslik artikkel სამეცნიერო სტატია wissenschaftlicher Artikel artigo científico (publicado na 2006) bài báo khoa học наукова стаття, опублікована в травні 2006 мақолаи илмӣ article scientific 2006年學術文章 article científic vitskapeleg artikkel научна статия videnskabelig artikel (udgivet 2006) artículu científicu espublizáu en 2006 2006 թվականի մայիսին հրատարակված գիտական հոդված ২০০৬-এ প্রকাশিত বৈজ্ঞানিক নিবন্ধ tieteellinen artikkeli 2006年學術文章 επιστημονικό άρθρο 2006年学术文章 سائنسی مضمون vetenskaplig artikel научни чланак artigo científico vědecký článek articol științific 2006 թուականի Մայիսին հրատարակուած գիտական յօդուած artigo científico (publicado na 2006) vitenskapelig artikkel wetenschappelijk artikel artykuł naukowy artikull shkencor научная статья mokslinis straipsnis 2006 nî lūn-bûn مقالة علمية نشرت في مايو 2006 2006년 논문 bilimsel makale 2006年学术文章 2006年學術文章 мақолаи илмӣ articolo scientifico مقالهٔ علمی scientific article 2006年学术文章 artikulong pang-agham
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Patrick S Covello Rong Li Jacek Nowak Lawrence E Pelcher Enwu Liu Jonathan E Page
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Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement. Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement. Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement.
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Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement. Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement. Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement.
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Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement. Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement. Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement.
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Functional genomic analysis of alkaloid biosynthesis in Hyoscyamus niger reveals a cytochrome P450 involved in littorine rearrangement
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