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Lumazine synthase and riboflavin synthase

机译:鲁马嗪合酶和核黄素合酶

摘要

Through function complementation of E. coli auxotrophs, the ultimate and pentultimate enzymes of the spinach riboflavin biosynthetic pathway have been cloned, namely, lumazine synthase (LS) and riboflavin synthase (RS). This invention relates to the isolation of nucleic acid fragments from plants or fungi that encode LS protein. The invention also relates to the isolation of nucleic acid fragments from plants or fungi that encode RS protein. In addition, the invention also relates to the construction of chimeric genes encoding all of a portion of LS, in sense or antisense orientation, wherein the expression of the chimeric gene results in production of altered levels of plant LS in a transformed host cell. Furthermore, the invention also relates to the construction of chimeric genes encoding all of a portion of RS, in sense or antisense orientation, wherein the expression of the chimeric gene results in production of altered levels of plant or fungal RS in a transformed host cell. In vivo and in vitro methods to identify herbicide or fungicide candidates are included that evaluate the ability of a chemical compound to inhibit the activity of a plant or fungal LS enzyme or a plant or fungal RS enzyme.
机译:通过 E的功能互补。大肠杆菌营养缺陷型,菠菜核黄素生物合成途径的最终酶和五倍体酶已被克隆,分别是鲁嗪合酶(LS)和核黄素合酶(RS)。本发明涉及从植物或真菌中编码LS蛋白的核酸片段的分离。本发明还涉及从植物或真菌中编码RS蛋白的核酸片段的分离。另外,本发明还涉及以有义或反义方向编码LS的所有部分的嵌合基因的构建,其中嵌合基因的表达导致转化的宿主细胞中植物LS水平的改变。此外,本发明还涉及以有义或反义方向编码RS的所有部分的嵌合基因的构建,其中所述嵌合基因的表达导致转化的宿主细胞中植物或真菌RS水平的改变。包括鉴定除草剂或杀真菌剂候选物的体内和体外方法,其评估化合物抑制植物或真菌LS酶或植物或真菌RS酶的活性的能力。

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