4.5 Article

Effects of chemical management for invasive plants on the performance of Lithobates pipiens tadpoles

期刊

ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY
卷 36, 期 11, 页码 2958-2964

出版社

WILEY
DOI: 10.1002/etc.3859

关键词

Myriophyllum spicatum; Rhamnus cathartica; Herbicide triclopyr; Lithobates pipiens; Tadpole performance

资金

  1. Bowling Green State University
  2. Katzner Graduate Student Research Award

向作者/读者索取更多资源

Invasive plants impact amphibians by altering habitat, altering species interactions, and releasing potentially toxic secondary chemicals. Despite being costly and having the potential to affect nontarget wildlife, chemical management is commonly used to control invasive plants. Prior research has indicated that individual effects of invasive plants or herbicides can be harmful to aquatic organisms; however, information is lacking on the combined effect of these factors on amphibians. A laboratory experiment was performed to assess the impact of leachates of the invasive plants Eurasian watermilfoil (Myriophyllum spicatum) and European buckthorn (Rhamnus cathartica), the herbicide Renovate((R)) 3 (triclopyr [3, 5, 6-trichloro-2-pyridinyloxyacetic acid]), and the combined effects of each plant leachate and the herbicide on the growth, morphology, and survival of northern leopard frog (Lithobates pipiens) tadpoles. No effects of treatment on survival were observed. Tadpole exposure to M. spicatum reduced body mass by 17%, exposure to R. cathartica increased body mass by 36%, and exposure to R. cathartica+low herbicide increased body mass by 38% (although only early in the experiment). Exposure to Renovate 3 induced a 16% and 29% decrease in tadpole size in lower (0.22mg triclopyr active ingredient [a.i.]/L) and higher (0.92mg triclopyr a.i./L) concentration treatments, respectively. Results from the present study highlight the importance of considering both individual and combined effects of invasive plants and herbicides because they may have different outcomes for tadpole growth and development. Environ Toxicol Chem 2017;36:2958-2964. (c) 2017 SETAC

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