首页> 外文期刊>Environmental Science and Pollution Research >Effects of 17 α-trenbolone and melengestrol acetate on Xenopus laevis growth, development, and survival
【24h】

Effects of 17 α-trenbolone and melengestrol acetate on Xenopus laevis growth, development, and survival

机译:17α-群勃龙和醋酸美仑孕酮对非洲爪蟾生长,发育和存活的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The synthetic growth-promoting hormones tren-bolone and melengestrol acetate have been detected in the environment near beef cattle feedlots and are reportedly transported via wind-borne particulate matter. Therefore, movement of synthetic hormones from beef cattle feedlots to water bodies via particulate matter is possible. Our ob jective was to evaluate potential effects of 17α-trenbolone (17α-TB), melengestrol acetate (MGA), and combinations of both on growth, development, and survival of Xenopus laevis larvae. On post-hatch day 2 (stage 33/34), X. laevis larvae were exposed to three nominal concentrations of 17α-TB (10, 100, and 500 ng/L), MGA (1, 10, and 100 ng/L), a combination of both (1/10, 10/100, and 100/ 500 ng/L MGA/17α-TB), frog embryo teratogenesis assay-Xenopus medium, or a solvent control. Significant increases in all X. laevis growth metrics were observed among larvae in the 1 ng/L MGA+10 ng/L 17α-TB and 10 ng/L MGA+ 100 ng/L 17α-TB treatments. Stage of development was increased among larvae in the 1 ng/L MGA+10 ng/L 17α-TB treatment group and significantly decreased among those in the 500 ng/L 17α-TB treatment. Total body mass and snout-vent length of X. laevis larvae were significantly reduced in the 100 ng/L MGA and 100 ng/L MGA+500 ng/ L 17α-TB treatment groups. Larvae exposed to 500 ng/L 17α-TB had decreased total body mass, snout-vent length, and total length. In general, growth measurements decreased with increasing concentration of MGA, 17α-TB, or acombination of both. Survival among all treatments was not significantly different from controls. Amphibians exposed to MGA and 17α-TB in the environment may experience alterations in growth and development.
机译:已在肉牛饲养场附近的环境中检测到合成的促生长激素tren-bolone和乙酸美仑孕酮,并据报道是通过风传播的颗粒物质运输的。因此,合成激素可以通过颗粒物质从肉牛饲养场转移到水体。我们的目标是评估17α-群勃龙(17α-TB),乙酸美仑孕酮(MGA)以及二者的组合对非洲爪蟾幼虫生长,发育和存活的潜在影响。孵化后第2天(第33/34阶段),X。laevis幼虫暴露于三种标称浓度的17α-TB(10、100和500 ng / L),MGA(1、10和100 ng / L) ),两者(1 / 10、10 / 100和100/500 ng / L MGA /17α-TB)的组合,青蛙胚胎致畸作用分析-非洲爪蟾属培养基或溶剂对照。在1 ng / L MGA + 10 ng / L17α-TB和10 ng / L MGA + 100 ng / L17α-TB处理中,幼虫中所有X. laevis生长指标均显着增加。在1 ng / L MGA + 10 ng / L17α-TB治疗组中,幼虫的发育阶段增加,而在500 ng / L17α-TB治疗中,幼虫的发育阶段显着下降。在100 ng / L MGA和100​​ ng / L MGA + 500 ng / L17α-TB治疗组中,X。laevis幼虫的总体重和鼻出口长度显着降低。暴露于500 ng / L17α-TB的幼虫的总体重,鼻出口长度和总长度均降低。通常,生长测量值随着MGA,17α-TB浓度或两者的组合增加而降低。所有治疗的存活率与对照组无显着差异。在环境中暴露于MGA和17α-TB的两栖动物可能会经历生长和发育的改变。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号