首页> 外文会议>International Agro-Biotechnology Conference; 2005; Heilongjiang(CN) >Molecular Cloning and Function of Novel Cytochrome P450 Related to Metabolism of Herbicides from Lolium Rigidum
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Molecular Cloning and Function of Novel Cytochrome P450 Related to Metabolism of Herbicides from Lolium Rigidum

机译:与黑麦草除草剂代谢相关的新型细胞色素P450的分子克隆与功能

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The cytochrome P450 ( CYP) superfamily is widely distributed in various species and participates in a wide range of oxygenation reactions of diverse liphophilic substrates including pesticides and environmental contaminants . In high plants, there are many kinds of P450 genes. For example, there are 286 P450 genes in Arabidopsis thaliana and 458 P450 genes in rice ( Oryza sativa L. cv. Nipponbare ). These P450 species mostly partici- pate in biosynthesis of secondary metabolites, e. g. lignins, fatty acids, gibberellic acids, brassinosteroids, jas-monic acid, flavonoids, cyanogenic glucosides, alkaloids, and so on. They are also involved in the metabolism of foreign compounds which may encounter in the environment, including agricultural pesticides and herbicides. Cytochrome P450 metabolism has been implicated as being largely responsible for detoxification of herbicides in a variety of crop species ( selective toxicity) . Up to now, more than 500 cytochrome P450 genes have been cloned from higher plants but the enzymatic function of most of these genes is unknown . Recent years, it was proved that some of plant P450 enzymes are involved in metabolism of herbicides. For example, CYP71A10 could metabolize phenylurea herbicides in Glysine max . CYP71A11 of Nicotiana tabacum and CYP81B1 of Helianthus tuberrosus were involved in chlorotoluron metabolism. CYP71B11 could metabolize sulfonylurea herbicides in Arabidopsis thaliana. Lolium rigidum has many kinds of biotypes (e. g. SLR31 ) that have high activities in metabolism of herbicides to show cross-resistance to multiple herbicides. The present study aimed at molecular cloning of novel cytochrome P450 species from L. rigidum seedlings. The cloned cDNAs of novel cytochrome P450 species are characterized in enzymatic functions.
机译:细胞色素P450(CYP)超家族广泛分布于各种物种中,并且参与了各种不同的亲脂性底物(包括农药和环境污染物)的广泛氧化反应。在高等植物中,有许多种P450基因。例如,在拟南芥中有286个P450基因,在水稻中有458个P450基因(Oryza sativa L. cv。Nipponbare)。这些P450物种主要参与次生代谢产物(如P450)的生物合成。 G。木质素,脂肪酸,赤霉素,油菜素类固醇,茉莉酸,类黄酮,生氰苷,生物碱等。它们还参与环境中可能遇到的外来化合物的代谢,包括农业农药和除草剂。细胞色素P450代谢被认为是导致多种作物物种中除草剂解毒的主要原因(选择性毒性)。迄今为止,已经从高等植物中克隆了500多种细胞色素P450基因,但是大多数这些基因的酶功能尚不清楚。近年来,已证明某些植物P450酶与除草剂的代谢有关。例如,CYP71A10可以在最大赖氨酸中代谢苯脲类除草剂。烟草的CYP71A11和向日葵的CYP81B1参与了氯甲苯隆的代谢。 CYP71B11可在拟南芥中代谢磺酰脲类除草剂。硬叶黑麦草具有多种生物型(例如SLR31),其在除草剂的代谢中具有高活性,以显示对多种除草剂的交叉抗性。本研究的目标是从僵硬的L.tumum幼苗的新型细胞色素P450物种的分子克隆。新型细胞色素P450物种的克隆cDNA具有酶促功能。

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