St Clair Coy R, Fuller Claire A
Department of Biological Sciences, Murray State University, Biology Building, Murray, KY.
J Insect Sci. 2018 Sep 1;18(5):12. doi: 10.1093/jisesa/iey095.
Agricultural runoff containing herbicide is known to have adverse effects on freshwater organisms. Aquatic insects are particularly susceptible, and herbicide runoff has the potential to affect immunity in this group. Here we examined the effect of ecologically relevant levels of atrazine, an herbicide commonly used in the United States, on immune function in larvae of the blue dasher dragonfly (Odonata: Libelluludae, Pachydiplax longipennis Burmeister 1839) during a long-term exposure at ecologically relevant concentrations. Larvae were exposed to concentrations of 0, 1, 5, and 10 ppb atrazine for 3 or 6 wk. Hemocyte counts, hemolymph phenyloxidase (PO) activity, cuticular PO, and gut PO were measured at the end of each trial period as indicators of immune system strength. Atrazine concentration had a significant effect on hemocyte counts after controlling for larval size. There was a significant interaction between time and concentration for hemolymph PO, cuticular PO, and a marginal interaction for gut PO. The effect of atrazine on the measured immune parameters was often nonmonotonic, with larger effects observed at intermediate concentrations. Therefore, atrazine affects both hemocyte numbers and PO activity over time in P. longipennis, and the changed immune function demonstrated in this study is likely to modify susceptibility to pathogens, alter wound healing, and may decrease available energy for growth and metamorphosis.
已知含有除草剂的农业径流会对淡水生物产生不利影响。水生昆虫尤其易受影响,除草剂径流有可能影响这类生物的免疫力。在此,我们研究了美国常用的除草剂阿特拉津在生态相关浓度下长期暴露时,对蓝纹蜻蜒(蜻蛉目:蜻科,长腹蜻Pachydiplax longipennis Burmeister,1839)幼虫免疫功能的影响。将幼虫暴露于浓度为0、1、5和10 ppb的阿特拉津中3周或6周。在每个试验期结束时,测量血细胞计数、血淋巴苯氧化酶(PO)活性、表皮PO和肠道PO,作为免疫系统强度的指标。在控制幼虫大小后,阿特拉津浓度对血细胞计数有显著影响。血淋巴PO、表皮PO在时间和浓度之间存在显著交互作用,肠道PO存在边缘交互作用。阿特拉津对所测免疫参数的影响通常是非单调的,在中间浓度时观察到的影响更大。因此,随着时间推移,阿特拉津会影响长腹蜻的血细胞数量和PO活性,本研究中显示的免疫功能变化可能会改变对病原体的易感性、影响伤口愈合,并可能减少用于生长和变态的可用能量。