Department of Biology, Concordia University, 7141 Sherbrooke St. W, Montreal, Quebec H4B 1R6, Canada.
Department of Animal Science, McGill University, 21111 Lakeshore Rd., Ste. Anne-de-Bellevue, Quebec H9X 3V9, Canada.
Ecotoxicol Environ Saf. 2023 Jul 1;259:115021. doi: 10.1016/j.ecoenv.2023.115021. Epub 2023 May 20.
Pesticides and pathogens adversely affect amphibian health, but their interactive effects are not well known. We assessed independent and combined effects of two agricultural herbicides and the fungal pathogen Batrachochytrium dendrobatidis (Bd) on the growth, development and survival of larval American toads (Anaxyrus americanus). Wild-caught tadpoles were exposed to four concentrations of atrazine (0.18, 1.8, 18.0, 180 μg/L) or glyphosate (7, 70, 700, 7000 µg a.e./L), respectively contained in Aatrex® Liquid 480 (Syngenta) or Vision® Silviculture Herbicide (Monsanto) for 14 days, followed by two doses of Bd. At day 14, atrazine had not affected survival, but it non-monotonically affected growth. Exposure to the highest concentration of glyphosate caused 100% mortality within 4 days, while lower doses had an increasing monotonic effect on growth. At day 65, tadpole survival was unaffected by atrazine and the lower doses of glyphosate. Neither herbicide demonstrated an interaction effect with Bd on survival, but exposure to Bd increased survival among both herbicide-exposed and herbicide-control tadpoles. At day 60, tadpoles exposed to the highest concentration of atrazine remained smaller than controls, indicating longer-term effects of atrazine on growth, but effects of glyphosate on growth disappeared. Growth was unaffected by any herbicide-fungal interaction but was positively affected by exposure to Bd following exposure to atrazine. Atrazine exhibited a slowing and non-monotonic effect on Gosner developmental stage, while exposure to Bd tended to speed up development and act antagonistically toward the observed effect of atrazine. Overall, atrazine, glyphosate and Bd all showed a potential to modulate larval toad growth and development.
农药和病原体对两栖动物的健康有不利影响,但它们的交互作用尚不清楚。我们评估了两种农业除草剂和真菌病原体蛙壶菌(Batrachochytrium dendrobatidis,Bd)对美洲蟾蜍(Anaxyrus americanus)幼虫的生长、发育和存活的独立和联合影响。从野外捕获的蝌蚪分别暴露于四种莠去津(0.18、1.8、18.0、180μg/L)或草甘膦(7、70、700、7000µg a.e./L)浓度的 Aatrex®Liquid 480(先正达)或 Vision®Silviculture Herbicide(孟山都)中 14 天,然后接受两次蛙壶菌处理。第 14 天,莠去津未影响存活率,但对生长有非单调影响。最高浓度的草甘膦在 4 天内导致 100%的死亡率,而较低剂量对生长有递增的单调影响。第 65 天,莠去津和较低剂量的草甘膦对蝌蚪存活率没有影响。两种除草剂对生存均未表现出与蛙壶菌的相互作用效应,但接触蛙壶菌增加了暴露于除草剂和未暴露于除草剂的蝌蚪的存活率。第 60 天,暴露于最高浓度莠去津的蝌蚪仍比对照组小,表明莠去津对生长有长期影响,但草甘膦对生长的影响消失。除草剂-真菌相互作用对生长没有影响,但在接触莠去津后暴露于蛙壶菌对生长有积极影响。莠去津对戈斯纳发育阶段表现出减缓且非单调的影响,而接触蛙壶菌则倾向于加速发育并拮抗莠去津的观察效应。总体而言,莠去津、草甘膦和蛙壶菌都有可能调节蟾蜍幼虫的生长和发育。