Department of Entomology, University of California, Riverside, 900 University Ave, Riverside, CA 92521, USA.
Sci Total Environ. 2012 May 15;425:60-5. doi: 10.1016/j.scitotenv.2012.03.009. Epub 2012 Mar 29.
Despite the increasing awareness of arsenic (As) contamination in surface waters worldwide, little is known about how As alone and in the presence of other chemicals affects aquatic insects. Larvae of Chironomus riparius were exposed in a laboratory investigation to factorial combinations of 0, 0.13, 2.0, 5.3, and 13 μmol As l(-1) and 0, 0.15, and 15 μmol PO(4) l(-1) throughout development from first instar to pupal emergence. The time between male and female emergence increased from 1.8±0.17 days to 2.9±0.34 days with exposure at higher As levels. The highest As exposure also decreased the number of eggs per egg mass, which may affect population maintenance. For these parameters, there was no effect from PO(4), and no interaction between As and PO(4). Total As determination of larval and adult tissues was conducted using Hydride Generated Atomic Absorption Spectroscopy (HGAAS) and revealed concentrations ranging from 2.48±0.363 to 30.5±0.473 μg/g and 1.03±0.286 to 8.97±0.662 μg/g, respectively, indicating elimination of approximately 72% of total As body burdens between the fourth instar and adult stages. There was no effect of PO(4), indicating PO(4) does not alter uptake of As in C. riparius. The potential for movement of As to terrestrial systems exists, though trophic transfer may be more likely during the aquatic larval stage.
尽管全世界对地表水砷(As)污染的认识不断提高,但对于 As 单独存在以及与其他化学物质共存时如何影响水生昆虫知之甚少。实验室研究中,利用 0、0.13、2.0、5.3 和 13 μmol As l(-1) 以及 0、0.15 和 15 μmol PO(4) l(-1) 浓度的组合,对摇蚊(Chironomus riparius)幼虫进行了暴露处理,以研究其对摇蚊幼虫从第一龄到蛹期发育全过程的影响。在较高 As 水平下,雌雄成虫出现的时间间隔从 1.8±0.17 天增加到 2.9±0.34 天。最高 As 暴露还降低了每卵块的产卵量,这可能会影响种群的维持。对于这些参数,PO(4)没有影响,As 和 PO(4)之间也没有相互作用。采用氢化物发生原子吸收光谱法(HGAAS)对幼虫和成虫组织中的总 As 进行了测定,结果显示浓度范围分别为 2.48±0.363 至 30.5±0.473 μg/g 和 1.03±0.286 至 8.97±0.662 μg/g,这表明第四龄到成虫阶段,大约有 72%的总 As 体负荷被消除。PO(4)没有影响,表明 PO(4)不会改变摇蚊对 As 的摄取。As 向陆地系统转移的可能性是存在的,尽管在水生幼虫阶段更有可能发生营养转移。