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DIFFERENTIAL INDUCTION OF CYTOCHROME P450-MEDIATED TRIASULFURON METABOLISM BY NAPHTHALIC ANHYDRIDE AND TRIASULFURON

机译:萘乙酸和三苏磺仑对细胞色素P450介导的三苏富隆代谢的差异诱导

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Cytochrome P450 monooxygenases play paramount roles in the detoxification of herbicides as well as in the synthesis of lignins, flavonoids, and phenolic acids. Biochemical analysis of triasulfuron metabolism in maize (Zea mays) seedlings has demonstrated that the P450(s) responsible for detoxification of this herbicide is induced by naphthalic anhydride (NA), a plant safener, and by triasulfuron, the herbicide itself. Induction studies conducted with seedlings of different ages suggest that two separate response pathways modulate this P-450 activity. Induction by NA is independent of the developmental age of the seedlings up to 6.5 d; induction by triasulfuron is tightly modulated with respect to developmental age in that triasulfuron metabolism can be induced by triasulfuron in young (2.5 d) but not older (6.5 d) seedlings. Induction by NA administered in combination with triasulfuron synergistically enhances triasulfuron metabolism in younger seedlings to levels substantially above that obtained with either herbicide or safener treatment alone. In older seedlings, NA plus triasulfuron treatment induces triasulfuron metabolism to only the level of NA treatment alone, indicating again that the induction cascade responding to triasulfuron is nonfunctional in later development. MnCl2 studies indicate that the triasulfuron insensitivity of older seedlings does not result from a general limitation in the inducibility of this P-450 detoxification system but rather from specific limitations in the triasulfuron-response pathway.
机译:细胞色素P450单加氧酶在除草剂的解毒以及木质素,类黄酮和酚酸的合成中起着至关重要的作用。玉米(Zea mays)幼苗中三氟磺隆代谢的生化分析表明,负责该除草剂解毒的P450是由植物安全剂萘酐(NA)和除草剂本身三氟磺隆诱导的。对不同年龄的幼苗进行的诱导研究表明,两种单独的应答途径可调节这种P-450的活性。 NA诱导与幼苗生长年龄无关,直至6.5 d。三氟嘧啶的诱导作用与发育年龄密切相关,因为三氟磺隆可以在年轻(2.5 d)但不老(6.5 d)的幼苗中诱导三氟磺隆的代谢。 NA与三嘧磺隆联合施用的诱导作用可协同增强年轻幼苗中三嘧磺隆的代谢水平,使其水平大大高于单独使用除草剂或更安全的处理方法所获得的水平。在较老的幼苗中,NA加三氟磺隆处理仅诱导三氟磺隆代谢达到单独的NA处理水平,这再次表明,响应三氟磺隆的诱导级联在以后的发育中不起作用。 MnCl2研究表明,较老的幼苗对triasulfuron的不敏感性不是由于该P-450排毒系统的诱导能力受到一般性限制,而是由于triasulfuron反应途径中的特定限制所致。

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