浮萍和六种藻类对七种除草剂的相对敏感性。

IF 1.5 4区 农林科学 Q2 ENTOMOLOGY
Koji Ueda, Takashi Nagai
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引用次数: 1

摘要

采用高效、高通量的微孔板毒理学方法,研究了浮萍和6种藻类对7种除草剂的相对敏感性。首先,我们评估了L. minor对7种除草剂的敏感性,然后基于EC50值将其敏感性与先前发表的6种藻类的敏感性进行了比较。对5种除草剂最敏感的种类不同:小乳杆菌对环磺胺脲最敏感,小头Raphidocelis对吡虫胺和埃斯普威最敏感,亚棘地霉(Desmodesmus subspicatus)对吡虫胺最敏感;对吡唑氧芬最敏感的是海带。Simetryn对所有物种的毒性均匀,而2,4- d的毒性均匀较小,物种敏感性差异很小。这些结果表明,单一藻类物种不能代表初级生产者组合对给定除草剂的敏感性。因此,为了评估除草剂的生态效应,水生植物和多物种藻类的毒性数据集是必不可少的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Relative sensitivity of duckweed <i>Lemna minor</i> and six algae to seven herbicides.

Relative sensitivity of duckweed <i>Lemna minor</i> and six algae to seven herbicides.

Relative sensitivity of duckweed <i>Lemna minor</i> and six algae to seven herbicides.

Relative sensitivity of duckweed Lemna minor and six algae to seven herbicides.

We investigated the relative sensitivity of duckweed Lemna minor and six species of algae to seven herbicides, using an efficient high-throughput microplate-based toxicity assay. First, we assessed the sensitivity of L. minor to the seven herbicides, and then we compared its sensitivity to that of previously published data for six algal species based on EC50 values. For five herbicides, the most sensitive species differed: L. minor was most sensitive to cyclosulfamuron: Raphidocelis subcapitata was most sensitive to pretilachlor and esprocarb: Desmodesmus subspicatus was most sensitive to pyraclonil; and Navicula pelliculosa was most sensitive to pyrazoxyfen. Simetryn was evenly toxic to all species, whereas 2,4-D was evenly less toxic, with only small differences in species sensitivity. These results suggested that a single algal species cannot represent the sensitivity of the primary producer assemblage to a given herbicide. Therefore, to assess the ecological effects of herbicides, aquatic plant and multispecies algal toxicity data sets are essential.

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来源期刊
Journal of Pesticide Science
Journal of Pesticide Science 农林科学-昆虫学
CiteScore
4.30
自引率
4.20%
发文量
28
审稿时长
18-36 weeks
期刊介绍: The Journal of Pesticide Science publishes the results of original research regarding the chemistry and biochemistry of pesticides including bio-based materials. It also covers their metabolism, toxicology, environmental fate and formulation.
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