Pritsos C A, Ahmad S, Elliott A J, Pardini R S
Department of Nutrition, SFB, University of Nevada, Reno 89557-0038.
Free Radic Res Commun. 1990;9(2):127-33. doi: 10.3109/10715769009148580.
Larvae of the southern armyworm, Spodoptera eridania, are highly polyphagous feeders which frequently encounter and feed upon plants containing high levels of prooxidant allelochemicals. While ingestion of moderate quantities of prooxidants can be tolerated by these larvae, ingestion of larger quantities can result in toxicity. Studies were conducted to assess the role of the antioxidant enzymes, superoxide dismutase (SOD), catalase (CAT) and glutathione reductase (GR) in the protection of S. eridania against redox active prooxidant plant allelochemicals. Dietary exposure of mid-fifth-instar larvae to either quercetin (a flavonoid) or xanthotoxin (a photoactive furanocoumarin), which generate superoxide radical, and singlet oxygen, respectively, resulted in an increase in SOD levels. CAT levels increased in all groups of S. eridania including control insects. This may have been due to the sudden exposure to food following an extended fast of 18 h (to insure that larvae would not reject the diet because of the prooxidants' bitter taste) with an eventual lowering of CAT values with time. GR activities did not significantly change except for a slight inhibition at the highest prooxidant concentrations used at 12-h post-ingestion. The data from these studies suggest that SOD responds to prooxidant challenges in these insects and together with CAT and GR contributes to the insect's defense against potentially toxic prooxidant compounds.
南方黏虫(草地贪夜蛾)的幼虫是多食性取食者,经常接触并取食含有高浓度促氧化化感物质的植物。虽然这些幼虫能够耐受摄入适量的促氧化剂,但摄入大量促氧化剂会导致中毒。开展了多项研究,以评估抗氧化酶超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽还原酶(GR)在保护草地贪夜蛾抵御具有氧化还原活性的促氧化植物化感物质方面所起的作用。将处于五龄中期的幼虫通过饮食分别暴露于槲皮素(一种黄酮类化合物)或花椒毒素(一种光活性呋喃香豆素)中,它们分别会产生超氧自由基和单线态氧,结果导致SOD水平升高。在包括对照昆虫在内的所有草地贪夜蛾组中,CAT水平均有所增加。这可能是由于在禁食18小时后突然接触食物(以确保幼虫不会因为促氧化剂的苦味而拒食),最终CAT值会随着时间的推移而降低。除了在摄入后12小时使用的最高促氧化剂浓度下有轻微抑制外,GR活性没有显著变化。这些研究的数据表明,SOD对这些昆虫中的促氧化剂挑战做出反应,并与CAT和GR共同作用,有助于昆虫抵御潜在有毒的促氧化化合物。