Ruiz-Sanchez Esau, Van Walderveen Maria C, Livingston Alexandra, O'Donnell Michael J
Department of Biology, McMaster University, Hamilton, ONT, Canada.
J Insect Physiol. 2007 Oct;53(10):1034-45. doi: 10.1016/j.jinsphys.2007.05.009. Epub 2007 Jun 7.
The organic anion salicylate is a plant secondary metabolite that protects plants against phytophagous insects. In this study, a combination of salicylate-selective microelectrodes and a radioisotope tracer technique was used to study the transepithelial transport of salicylate by the Malpighian tubules of 10 species of insects from five orders. Our results show that salicylate is transported into the lumen of the Malpighian tubules in all the species evaluated, except Rhodnius prolixus. The transepithelial transport of salicylate by the Malpighian tubules of Drosophila simulans, Drosophila erecta, Drosophila sechellia, and Acheta domesticus was saturable, Na(+)-dependent and inhibited by alpha-cyano-4-hydroxycinnamic acid. This transport system resembles that previously found in tubules of Drosophila melanogaster. In contrast, transepithelial transport of salicylate by Malpighian tubules of Tenebrio molitor, Plagiodera versicolora, Aedes aegypti, and Trichoplusia ni was unaffected by Na(+)-free bathing saline. The presence of both salicylate and salicylate metabolites in the secreted fluid samples from the Malpighian tubules of A. domesticus, R. prolixus, T. molitor, and T. ni indicates that insect Malpighian tubules may both transport and metabolize salicylate. The highest capacities to rid the hemolymph of salicylate were found in T. molitor, P. versicolora and Drosphila spp. Our results suggest that transport of salicylate by the Malpighian tubules might contribute to elimination of this organic anion from the hemolymph, particularly in some species that encounter high levels of organic anion in the diet.
有机阴离子水杨酸盐是一种植物次生代谢产物,可保护植物免受植食性昆虫侵害。在本研究中,结合水杨酸盐选择性微电极和放射性同位素示踪技术,研究了来自五个目的10种昆虫的马氏管对水杨酸盐的跨上皮运输。我们的结果表明,除了红带锥蝽外,在所有评估的物种中,水杨酸盐都被运输到马氏管腔中。黑腹果蝇、直立果蝇、塞舌尔果蝇和家蟋蟀的马氏管对水杨酸盐的跨上皮运输是可饱和的、依赖Na⁺的,并受到α-氰基-4-羟基肉桂酸的抑制。这种运输系统类似于先前在黑腹果蝇的小管中发现的系统。相比之下,黄粉虫、杂色叶甲、埃及伊蚊和粉纹夜蛾的马氏管对水杨酸盐的跨上皮运输不受无Na⁺浴液的影响。在家蟋蟀、红带锥蝽、黄粉虫和粉纹夜蛾的马氏管分泌液样本中同时存在水杨酸盐和水杨酸盐代谢物,这表明昆虫马氏管可能既能运输又能代谢水杨酸盐。在黄粉虫、杂色叶甲和果蝇属中发现清除血淋巴中水杨酸盐的能力最强。我们的结果表明,马氏管对水杨酸盐的运输可能有助于从血淋巴中清除这种有机阴离子,特别是在一些饮食中遇到高浓度有机阴离子的物种中。