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辣木凝集素对有机磷敏感和抗性埃及伊蚊幼虫存活率和酶活性的影响。

Effect of Moringa oleifera lectins on survival and enzyme activities of Aedes aegypti larvae susceptible and resistant to organophosphate.

机构信息

Departamento de Bioquímica, CCB, Universidade Federal de Pernambuco, Cidade Universitária, 50670-420, Recife, Pernambuco, Brazil.

出版信息

Parasitol Res. 2014 Jan;113(1):175-84. doi: 10.1007/s00436-013-3640-8. Epub 2013 Oct 19.

Abstract

The indiscriminate use of synthetic insecticides to control Aedes aegypti has led to emergence of resistant populations. Moringa oleifera seeds contain the lectins WSMoL and cMoL. WSMoL has larvicidal activity on fourth-stage of A. aegypti organophosphate-susceptible larvae (Rockefeller L4). This study reports on the effects of cMoL on the survival of Rockefeller L4 as well as of WSMoL and cMoL on L4 from an organophosphate-resistant population (Rec-R). The effects of lectins on digestive (amylase, trypsin, and protease) and detoxifying (superoxide dismutase (SOD), α- and β-esterases) enzymes from larvae were also determined. cMoL (0.1-0.8 mg/ml) did not kill Rockefeller L4 as well as WSMoL and cMoL (0.1-0.8 mg/ml) were not larvicidal for Rec-R L4. WSMoL stimulated protease, trypsin-like, and α-amylase from Rockefeller L4 while cMoL inhibited these enzymes. WSMoL had no effect on trypsin-like activity from Rec-R L4 but inhibited protease and α-amylase. Among digestive enzymes of Rec-R L4, cMoL inhibited only trypsin-like activity. cMoL inhibited SOD activities from Rockefeller and Rec-R L4 in a higher level than WSMoL while β-esterase from Rockefeller L4 was more inhibited by WSMoL. The lectins promoted low stimulation or inhibition of α-esterase activities from both populations. In conclusion, Rockefeller and Rec-R larvae were distinctly affected by M. oleifera lectins, and larvicidal mechanism of WSMoL on Rockefeller L4 may involve deregulation of digestive enzymes. cMoL interfered mainly on SOD activity and thus it can be investigated as a synergistic agent for controlling populations whose resistance is linked to an increased detoxifying process mediated by this enzyme.

摘要

为了控制埃及伊蚊,不加区分地使用合成杀虫剂导致抗药性种群出现。辣木籽含有凝集素 WSMoL 和 cMoL。WSMoL 对有机磷敏感的埃及伊蚊第四龄幼虫(洛克菲勒 L4)具有杀幼虫活性。本研究报告了 cMoL 对洛克菲勒 L4 存活的影响,以及 WSMoL 和 cMoL 对有机磷抗性种群(Rec-R)L4 的影响。凝集素对幼虫消化(淀粉酶、胰蛋白酶和蛋白酶)和解毒(超氧化物歧化酶(SOD)、α-和β-酯酶)酶的影响也进行了测定。cMoL(0.1-0.8 mg/ml)不能杀死洛克菲勒 L4,而 WSMoL 和 cMoL(0.1-0.8 mg/ml)对 Rec-R L4 也没有杀幼虫作用。WSMoL 刺激洛克菲勒 L4 的蛋白酶、胰蛋白酶样和α-淀粉酶,而 cMoL 抑制这些酶。WSMoL 对 Rec-R L4 的胰蛋白酶样活性没有影响,但抑制了蛋白酶和α-淀粉酶。在 Rec-R L4 的消化酶中,cMoL 仅抑制胰蛋白酶样活性。cMoL 对洛克菲勒和 Rec-R L4 的 SOD 活性的抑制作用高于 WSMoL,而 WSMoL 对洛克菲勒 L4 的β-酯酶的抑制作用更强。凝集素对来自这两个种群的α-酯酶活性的刺激或抑制作用较低。总之,洛克菲勒和 Rec-R 幼虫明显受到辣木凝集素的影响,WSMoL 对洛克菲勒 L4 的杀幼虫机制可能涉及消化酶的失调。cMoL 主要干扰 SOD 活性,因此它可以作为一种增效剂进行研究,用于控制与这种酶介导的解毒过程增加有关的抗性种群。

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