Su Xiangning, Liu Xuesong, Zhang Yuping, Li Chuanying
Research Institute of Plant Protection, Guangdong Academy of Agricultural Sciences & Key Laboratory of Green Prevention and Control of Fruits and Vegetables in South China, Ministry of Agriculture and Rural Affairs & Key Laboratory of High Technology for Plant Protection of Guangdong Province, Guangzhou 510640, China.
Institute of Agricultural Facilities and Equipment, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.
Gene. 2023 May 25;866:147333. doi: 10.1016/j.gene.2023.147333. Epub 2023 Mar 5.
The long-term use of isoproturon may threaten food security and human health. Cytochrome P450 (CYP or P450) can catalyze the biosynthetic metabolism, and play a crucial role in the modification of plant secondary metabolites. Therefore, it is of great importance to explore the genetic resources for isoproturon degradation. This research focused on a phase I metabolism gene (OsCYP1) with significant differential expression in rice under isoproturon pressure. Specifically, the high-throughput sequencing results of rice seedling transcriptome in response to isoproturon stress were analyzed. The molecular information and tobacco subcellular localization of OsCYP1 were studied. The subcellular localization of OsCYP1 in tobacco was assessed, where it is located in the endoplasmic reticulum. To analyze the expression of OsCYP1 in rice, the wild-type rice was treated with 0-1 mg/L isoproturon for 2 and 6 days, and qRT-PCR assays were conducted to detect the transcription levels. Compared with the control group, the expression of OsCYP1 in shoots was progressively upregulated after exposure to isoproturon, with 6.2-12.7-fold and 2.8-7.9-fold increases in transcription levels, respectively. Moreover, treatment with isoproturon upregulated the expression of OsCYP1 in roots, but the upregulation of transcripts was not significant except for 0.5 and 1 mg/L isoproturon at day 2. To confirm the role of OsCYP1 in enhancing isoproturon degradation, the vectors overexpressing OsCYP1 were transformed into recombinant yeast cells. After exposure to isoproturon, the growth of OsCYP1-transformed cells was better than the control cells, especially at higher stress levels. Furthermore, the dissipation rates of isoproturon were increased by 2.1-, 2.1- and 1.9-fold at 24, 48 and 72 h, respectively. These results further verified that OsCYP1 could enhance the degradation and detoxification of isoproturon. Collectively, our findings imply that OsCYP1 plays vital role in isoproturon degradation. This study provides a fundamental basis for the detoxification and regulatory mechanisms of OsCYP1 in crops via enhancing the degradation and/or metabolism of herbicide residues.
长期使用异丙隆可能会威胁粮食安全和人类健康。细胞色素P450(CYP或P450)能够催化生物合成代谢,在植物次生代谢产物的修饰过程中发挥关键作用。因此,探索用于降解异丙隆的遗传资源具有重要意义。本研究聚焦于在异丙隆胁迫下水稻中差异表达显著的I相代谢基因(OsCYP1)。具体而言,分析了水稻幼苗转录组响应异丙隆胁迫的高通量测序结果。研究了OsCYP1的分子信息和烟草亚细胞定位。评估了OsCYP1在烟草中的亚细胞定位,其定位于内质网。为分析OsCYP1在水稻中的表达情况,用0 - 1 mg/L异丙隆处理野生型水稻2天和6天,并进行qRT-PCR检测转录水平。与对照组相比,暴露于异丙隆后,地上部OsCYP1的表达逐渐上调,转录水平分别增加6.2 - 12.7倍和2.8 - 7.9倍。此外,异丙隆处理上调了根部OsCYP1的表达,但除第2天0.5和1 mg/L异丙隆外,转录本上调不显著。为证实OsCYP1在增强异丙隆降解中的作用,将过表达OsCYP1的载体转化到重组酵母细胞中。暴露于异丙隆后,转OsCYP1基因的细胞生长情况优于对照细胞,尤其是在较高胁迫水平下。此外,在24、48和72小时时,异丙隆的消散速率分别提高了2.1倍、2.1倍和1.9倍。这些结果进一步证实OsCYP1可增强异丙隆的降解和解毒作用。总体而言,我们的研究结果表明OsCYP1在异丙隆降解中起重要作用。本研究为OsCYP1通过增强除草剂残留的降解和/或代谢在作物中的解毒和调控机制提供了基础依据。