Walker K A, Ridley S M, Harwood J L
Department of Biochemistry, University College, Cardiff, U.K.
Biochem J. 1988 Sep 15;254(3):811-7. doi: 10.1042/bj2540811.
Concentrations of fluazifop-butyl sprayed on intact plants caused large decreases in the incorporation of radioactivity from [1-14C]acetate into lipids of barley (Hordeum vulgare) leaves and stems, but did not affect leaves or stems of pea (Pisum sativum). Labelling of all acyl lipids, but not pigments, was reduced. The effects of the active acid form, fluazifop, were also determined in leaf pieces and chloroplasts. Concentrations of (R,S)-fluazifop up to 100 microM had no affect upon quality or quantity of fatty acids produced from [1-14C]acetate in pea. In barley, however, 100 microM-(R,S)-fluazifop caused 89% (leaf) or 100% (chloroplasts) inhibition in labelling of fatty acids from [1-14C]acetate. Lower concentrations of fluazifop (less than 25 microM) caused incomplete inhibition and significant decreases in the proportion of C18 fatty acids synthesized, particularly by isolated chloroplasts. Synthesis of fatty acids from [2-14C]malonate was also inhibited (59%) in barley leaf tissue by 100 microM-(R,S)-fluazifop. The labelling pattern of products showed that elongation reactions were unaffected by the herbicide, but synthesis de novo was specifically diminished. By using resolved stereoisomers, it was found that the (R) isomer was the form which inhibited fatty acid synthesis, a finding that is in agreement with its herbicidal activity. These results suggest that inhibition of fatty acid synthesis de novo forms the basis for the selective mode of action of fluazifop.
喷洒在完整植株上的精稳杀得浓度导致大麦(Hordeum vulgare)叶片和茎中[1-¹⁴C]乙酸盐的放射性掺入脂质大幅减少,但对豌豆(Pisum sativum)的叶片或茎没有影响。所有酰基脂质的标记减少,但色素不受影响。还在叶片切片和叶绿体中测定了活性酸形式精恶唑禾草灵的作用。高达100微摩尔的(R,S)-精恶唑禾草灵浓度对豌豆中由[1-¹⁴C]乙酸盐产生的脂肪酸的质量或数量没有影响。然而,在大麦中,100微摩尔的(R,S)-精恶唑禾草灵导致[1-¹⁴C]乙酸盐脂肪酸标记的89%(叶片)或100%(叶绿体)抑制。较低浓度的精恶唑禾草灵(小于25微摩尔)导致不完全抑制,合成的C18脂肪酸比例显著降低,特别是分离的叶绿体。100微摩尔的(R,S)-精恶唑禾草灵也抑制了大麦叶片组织中[2-¹⁴C]丙二酸的脂肪酸合成(59%)。产物的标记模式表明,伸长反应不受除草剂影响,但从头合成特异性降低。通过使用拆分的立体异构体,发现(R)异构体是抑制脂肪酸合成的形式,这一发现与其除草活性一致。这些结果表明,从头抑制脂肪酸合成构成了精恶唑禾草灵选择性作用模式的基础。