Expression of cytochrome P450 CYP81A6 in rice: tissue specificity, protein subcellular localization, and response to herbicide application
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  • 作者:Hai-ping Lu (1)
    Martin Edwards (2)
    Qi-zhao Wang (1)
    Hai-jun Zhao (1)
    Hao-wei Fu (3)
    Jian-zhong Huang (1)
    Angharad Gatehouse (2)
    Qing-yao Shu (1)

    1. State Key Laboratory of Rice Biology
    ; Institute of Crop Sciences ; Zhejiang University ; Hangzhou ; 310029 ; China
    2. Newcastle Institute for Research on Environment
    ; School of Biology ; University of Newcastle ; Newcastle upon Tyne ; NE1 7RU ; UK
    3. Jiaxing Academy of Agricultural Sciences
    ; Jiaxing ; 314016 ; China
  • 关键词:CYP81A6 ; Bentazon ; Metsulfuron ; methyl ; Expression induction ; Xenobiotics ; S482.4 ; CYP81A6 ; 鑻揪鏉?/li> 鐢茬 ; 闅?/li> 璇卞琛ㄨ揪 ; 寮傛簮鐗?/li>
  • 刊名:Journal of Zhejiang University SCIENCE B
  • 出版年:2015
  • 出版时间:February 2015
  • 年:2015
  • 卷:16
  • 期:2
  • 页码:113-122
  • 全文大小:1,675 KB
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  • 刊物主题:Biomedicine general;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1862-1783
文摘
The cytochrome P450 gene CYP81A6 confers tolerance to bentazon and metsulfuron-methyl, two selective herbicides widely used for weed control in rice and wheat fields. Knockout mutants of CYP81A6 are highly susceptible to both herbicides. The present study aimed to characterize the CYP81A6 expression in rice. Quantitative real-time polymerase chain reaction (PCR) analyses demonstrated that foliar treatment of bentazon (500 mg/L) greatly induced expression of CYP81A6 in both wild-type (Jiazhe B) and its knockout mutant (Jiazhe mB): a 10-fold increase at 9 h before returning to basal levels at 24 h in Jiazhe B, while in the mutant the expression level rose to >20-fold at 12 h and maintained at such high level up to 24 h post exposure. In contrast, metsulfuron-methyl (500 mg/L) treatment did not affect the expression of CYP81A6 in Jiazhe B within 80 h; thereafter the expression peaked at 120 h and returned gradually to basal levels by Day 6. We suggest that a metabolite of metsulfuron-methyl, 1H-2,3-benzothiazin-4-(3H)-one-2,2-dioxide, is likely to be responsible for inducing CYP81A6 expression, rather than the metsulfuron-methyl itself. Use of a promoter-GUS reporter construct (CYP81A6Pro::GUS) demonstrated that CYP81A6 was constitutively expressed throughout the plant, with the highest expression in the upper surfaces of leaves. Subcellular localization studies in rice protoplasts showed that CYP81A6 was localized in the endoplasmic reticulum. These observations advance our understanding of CYP81A6 expression in rice, particularly its response to the two herbicides.

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