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具有除草活性的化合物N-2-(6-甲基吡啶基)-氨基亚甲基双膦酸在体内抑制芳香族生物合成。

The Herbicidally Active Compound N-2-(6-Methyl-Pyridyl)-Aminomethylene Bisphosphonic Acid Inhibits In Vivo Aromatic Biosynthesis.

作者信息

Forlani G, Lejczak B, Kafarski P

机构信息

Department of Genetics and Microbiology, University of Pavia, 27100 Pavia, Italy

出版信息

J Plant Growth Regul. 1999 Oct;18(2):73-79. doi: 10.1007/pl00007052.

Abstract

The effect of N-2-(6-methyl-pyridyl)-aminomethylene bisphosphonic acid (M-pyr-AMBPA), a compound previously shown to exhibit herbicidal properties on whole plants and to inhibit in vitro activity of the first enzyme in the shikimate pathway, 3-deoxy-d-arabino-heptulosonate-7-phosphate (DAHP) synthase, was investigated on Nicotiana plumbaginifolia suspension cultured cells and compared to that of the herbicide glyphosate. The addition of M-pyr-AMBPA from 10(-4) to 10(-3) M was found to cause a severe cell growth reduction. Kinetic analysis of partially purified DAHP synthase accounted for non-competitive inhibition type with respect to both phospho-enol-pyruvate and erythrose-4-phosphate, with K(I) values of 0.43 and 0.62 mM, respectively. Amino acid pool measurements of cells grown in the presence of sublethal doses of M-pyr-AMBPA pointed to an actual reduction of free aromatic amino acids, showing that DAHP synthase inhibition takes place in vivo, and suggesting that the interference of this aminophosphonate with plant aromatic biosynthesis may account for a large part of its phytotoxicity. However, exogenous supply of a mixture of phenylalanine, tyrosine and tryptophan failed to achieve full reversal of cell growth inhibition, yet the occurrence of other target(s) cannot be ruled out.

摘要

研究了N-2-(6-甲基吡啶基)-氨基亚甲基双膦酸(M-吡啶-AMBPA)对烟草悬浮培养细胞的影响,并与除草剂草甘膦进行了比较。M-吡啶-AMBPA先前已被证明对整株植物具有除草特性,并能抑制莽草酸途径中第一种酶3-脱氧-D-阿拉伯庚酮糖-7-磷酸(DAHP)合酶的体外活性。发现添加浓度为10^(-4)至10^(-3) M的M-吡啶-AMBPA会导致细胞生长严重减少。对部分纯化的DAHP合酶的动力学分析表明,其对磷酸烯醇丙酮酸和赤藓糖-4-磷酸均表现为非竞争性抑制类型,抑制常数(K(I))值分别为0.43和0.62 mM。对在亚致死剂量的M-吡啶-AMBPA存在下生长的细胞进行氨基酸库测量,结果表明游离芳香族氨基酸实际减少,这表明DAHP合酶抑制在体内发生,并且表明这种氨基膦酸对植物芳香族生物合成的干扰可能是其植物毒性的很大一部分原因。然而,外源供应苯丙氨酸、酪氨酸和色氨酸的混合物未能完全逆转细胞生长抑制,不过不能排除存在其他靶点。

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