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ESTROGENIC COMPOUNDS AFFECT DEVELOPMENT OF HARPACTICOID COPEPOD TIGRIOPUS JAPONICUS

机译:雌激素化合物对拟南芥COPIDOD JAPONICUS发育的影响

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The aim of this investigation was to evaluate the impact of estrogenic compounds on the harpacticoid copepod Tigriopus japonicus after continuous exposure to environmentally relevant concentrations. Natural estrogen (17β-estradiol), three known estrogenic compounds in vertebrates (bisphenol A, 4-nonylphenol, p-t-octylphenol), and an invertebrate molting hormone (20-hydroxyecdysone) were tested for their effects on development and reproductive characters in two successive generations of T. japonicus. Less than 24-h-old nauplii (parentals) were exposed to four sublethal concentrations of these compounds for 21 d at 25℃. The first brood of nauplii (F_1) produced was monitored further under the same culture conditions and exposures to test compounds. Results showed that all estrogenic compounds affected development (both in number of days to reach copepodid stage and sexual maturity) in the parental generation. Similar effects were apparent in the F_1; however, fecundity, sex ratio, and survival were not significantly affected, even at concentrations as high as 10 μg/L (nominal concentration). The invertebrate molting hormone 20-hyroxyecdysone had no detectable effect on any of the endpoints tested but gave the lowest 48-h 50% lethal concentration (LC50) value. The results suggest that endocrine disruption could occur in copepods following exposure to environmentally relevant concentrations of estrogenic compounds, especially if they are exposed starting from embryonic development.
机译:这项研究的目的是评估在连续暴露于环境相关浓度后,雌激素化合物对类拟co足类pe足类虎爪草的影响。连续两次测试了脊椎动物中的天然雌激素(17β-雌二醇),三种已知雌激素化合物(双酚A,4-壬基酚,对辛基苯酚)和无脊椎动物蜕皮激素(20-羟基蜕皮酮)日本血吸虫的几代人。在25℃下,不到24小时的无节幼体(父母)暴露于四种亚致死浓度的这些化合物中21 d。在相同的培养条件下以及暴露于测试化合物的条件下,进一步监测产生的第一幼体无节幼体(F_1)。结果表明,所有雌激素化合物都影响了亲代的发育(达到同龄阶段和性成熟的天数)。在F_1中也有类似的效果。但是,即使浓度高达10μg/ L(标称浓度),繁殖力,性别比和存活率也没有受到显着影响。无脊椎动物蜕皮激素20-羟蜕皮酮对任何测试终点均无可检测的作用,但给出的最低48小时50%致死浓度(LC50)值。结果表明,暴露于环境相关浓度的雌激素化合物后,co足类可能发生内分泌干扰,特别是如果它们从胚胎发育开始暴露。

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