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COMPARATIVE EFFECTS OF pH AND VISION~(-R) HERBICIDE ON TWO LIFE STAGES OF FOUR ANURAN AMPHIBIAN SPECIES

机译:pH和VI-(-R)除草剂对四种ANURAN两栖动物生命周期的比较作用

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Vision~(~R), a glyphosate-based herbicide containing a 15% (weight:weight) polyethoxylated tallow amine surfactant blend, and the concurrent factor of pH were tested to determine their interactive effects on early life-stage anurans. Ninety-six-hour laboratory static renewal studies, using the embryonic and larval life stages (Gosner 25) of Rana clamitans, R. pipiens, Bufo americanus, and Xenopus laevis, were performed under a central composite rotatable design. Mortality and the prevalence of malformations were modeled using generalized linear models with a profile deviance approach for obtaining confidence intervals. There was a significant (p < 0.05) interaction of pH with Vision concentration in all eight models, such that the toxicity of Vision was amplified by elevated pH. The surfactant is the major toxic component of Vision and is hypothesized, in this study, to be the source of the pH interaction. Larvae of B. americanus and R. clamitans were 1.5 to 3.8 times more sensitive than their corresponding embryos, whereas X. laevis and R. pipiens larvae were 6.8 to 8.9 times more sensitive. At pH values above 7.5, the Vision concentrations expected to kill 50% of the test larvae in 96-h (96-h lethal concentration [LC50]) were predicted to be below the expected environmental concentration (EEC) as calculated by Canadian regulatory authorities. The EEC value represents a worst-case scenario for aerial Vision application and is calculated assuming an application of the maximum label rate (2.1 kg acid equivalents [a.e.]/ha) into a pond 15 cm in depth. The EEC of 1.4 mg a.e./L (4.5 mg/L Vision) was not exceeded by 96-h LC50 values for the embryo test. The larvae of the four species were comparable in sensitivity. Field studies should be completed using the more sensitive larval life stage to test for Vision toxicity at actual environmental concentrations.
机译:测试了含有15%(重量:重量)聚乙氧基化牛油胺表面活性剂混合物的草甘膦基除草剂Vision®和pH的并发因素,以确定它们对早期生命阶段无氧菌的相互作用。在中央复合可旋转设计下,使用蛙蛙,琵鹭,美洲蟾蜍和非洲爪蟾的胚胎和幼虫生命阶段(Gosner 25),进行了九十六小时的实验室静态更新研究。死亡率和畸形患病率采用广义线性模型建模,并采用轮廓偏差法获得置信区间。在所有八个模型中,pH与视觉浓度均存在显着(p <0.05)相互作用,因此,升高的pH值会放大视觉的毒性。表面活性剂是Vision的主要有毒成分,在本研究中被认为是pH相互作用的来源。 B. americanus和R. clamitans的幼虫比相应的胚胎敏感1.5至3.8倍,而X. laevis和R. pipiens幼虫的敏感度高6.8至8.9倍。在pH值高于7.5的情况下,预计在96小时内杀死50%试验幼虫的视觉浓度(96小时致死浓度[LC50])预计低于加拿大监管机构计算的预期环境浓度(EEC)。 。 EEC值代表了航空视觉应用的最坏情况,是在最大标签率(2.1千克酸当量[a.e。] /公顷)应用于深15厘米的池塘中计算得出的。胚胎测试的96小时LC50值未超过1.4 mg a.e./L(4.5 mg / L Vision)的EEC。这四个物种的幼虫在敏感性上相当。应使用更敏感的幼虫生命期完成现场研究,以测试实际环境浓度下的视力毒性。

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