TRANSGENIC PLANTS CONTAINING THE PHOSPHINOTHRICIN-N-ACETYLTRANSFERASE GENE METABOLIZE THE HERBICIDE L-PHOSPHINOTHRICIN (GLUFOSINATE) DIFFERENTLY FROM UNTRANSFORMED PLANTS

被引:2
|
作者
DROGE, W [1 ]
BROER, I [1 ]
PUHLER, A [1 ]
机构
[1] UNIV BIELEFELD, FAK BIOL, LEHRSTUHL GENET, POSTFACH 8640, W-4800 BIELEFELD 1, GERMANY
关键词
DAUCUS; HERBICIDE; NICOTINA; PHOSPHINOTHRICIN-N-ACETYL-TRANSFERASE; PHOSPHINOTHRICIN METABOLISM; TRANSGENIC PLANT;
D O I
暂无
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
L-Phosphinothricin (L-Pt)-resistant plants were constructed by introducing a modified phosphinothricin-N-acetyl-transferase gene (pat) via Agrobacterium-mediated gene transfer into tabacco (Nicotiana tabacum L), and via direct gene transfer into carrot (Daucus carota L). The metabolism of L-Pt was studied in these transgenic, Pt-resistant plants, as well as in the untransformed species. The degradation of L-Pt, C-14-labeled specifically at different C-atoms, was analysed by measuring the release of (CO2)-C-14 and by separating the labeled degradation products on thin-layer-chromatography plates. In untransformed tobacco and carrot plants, L-Pt was deaminated to form its corresponding oxo acid 4-methylphosphinico-2-oxo-butanoic acid (PPO), which subsequently was decarboxylated to form 3-methylphosphinico-propanoic acid (MPP). This compound was stable in plants. A third metabolite remained unidentified. The L-Pt was rapidly N-acetylated in herbicide-resistant tobacco and carrot plants, indicating that the degradation pathway of L-Pt into PPO and MPP was blocked. The N-acetylated product, L-N-acetyl-Pt remained stable with regard to degradation, but was found to exist in a second modified form. In addition, there was a pH-dependent, reversible change in the mobility of L-N-acetyl-Pt thin-layer during chromatography.
引用
收藏
页码:142 / 151
页数:10
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