Incledon B J, Hall J C
Department of Environmental Biology, University of Guelph, Guelph, Ontario, Canada N1G 2W1.
J Agric Food Chem. 1999 Jan;47(1):299-304. doi: 10.1021/jf980124j.
Acetyl-coenzyme A carboxylase (ACCase) isozymes were separated from cyclohexanedione-resistant and -susceptible maize. ACCase240 from resistant maize was 3.7-, >77-, and 12.8-fold more resistant to inhibition by clethodim, sethoxydim, and tralkoxydim, respectively, than ACCase240 from susceptible maize. The resistant ACCase240 preparation had 3.0-fold more protein and 14.5-fold lower specific activity than susceptible ACCase240. Resistant ACCase240 has a V(max) 5.5-fold lower than that of susceptible ACCase240, whereas apparent K(m) values were similar. ACCase220 from resistant maize was >25- and 7.2-fold more resistant to inhibition by sethoxydim and tralkoxydim, respectively, than susceptible ACCase220 but was inhibited to the same extent by clethodim. In summary, sethoxydim-resistant corn has an altered herbicide-resistant ACCase220 isozyme and increased expression of a less efficient, herbicide-resistant ACCase240 isozyme. However, to what extent alteration of both isozymes contributes to sethoxydim resistance is not clear.
从对环己二酮具有抗性和敏感性的玉米中分离出了乙酰辅酶A羧化酶(ACCase)同工酶。与敏感玉米中的ACCase240相比,抗性玉米中的ACCase240对烯草酮、稀禾啶和炔草酯抑制作用的抗性分别高3.7倍、>77倍和12.8倍。抗性ACCase240制剂的蛋白质含量比敏感ACCase240高3.0倍,比活性低14.5倍。抗性ACCase240的V(max)比敏感ACCase240低5.5倍,而表观K(m)值相似。与敏感ACCase220相比,抗性玉米中的ACCase220对稀禾啶和炔草酯抑制作用的抗性分别高>25倍和7.2倍,但对烯草酮的抑制程度相同。总之,抗稀禾啶玉米具有一种改变的抗除草剂ACCase220同工酶,并且低效的抗除草剂ACCase240同工酶的表达增加。然而,这两种同工酶的改变在多大程度上导致了对稀禾啶的抗性尚不清楚。