Glyphosate-Based Herbicide Formulations with Greater Impact on Earthworms and Water Infiltration than Pure Glyphosate

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-07-20 DOI:10.3390/soilsystems7030066
Verena Brandmaier, Anna Altmanninger, F. Leisch, Edith Gruber, E. Takács, M. Mörtl, Szandra Klátyik, A. Székács, J. Zaller
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Abstract

Glyphosate is the most widely used active ingredient (AI) in thousands of glyphosate-based herbicides (GBHs) worldwide. Short-term impacts of AIs or GBHs on earthworms are well known, but few studies have examined long-term legacy effects >3 months after application. In a pot experiment, we studied both short-term and long-term effects on deep burrowing earthworms (Lumbricus terrestris) and soil functions. Therefore, the cover crop Sinapis alba was grown in soils with either 3.0% or 4.1% soil organic matter content (SOM) and either sprayed with a GBH (Touchdown Quattro, Roundup PowerFlex, or Roundup LB Plus) or the respective glyphosate AI (diammonium-, potassium-, or isopropylamine-salt) or hand weeded (control). Long-term effects showed increased earthworm activity under GBHs even 4 months after application, but similar activity under AIs and control. Another application of the same treatments 5 months after the previous one also increased earthworm activity under GBHs, especially at high SOM levels. Water infiltration after a simulated heavy rainfall was 50% lower, and leaching was 30% higher under GBH than under AI application or hand weeding. Individual GBHs and AIs varied in their effects and were influenced by SOM and soil moisture. Full disclosure of all ingredients in GBH formulations would be necessary to allow a comprehensive assessment of environmental risks.
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与纯草甘膦相比,草甘膦除草剂配方对蚯蚓和水渗透的影响更大
草甘膦是全球数千种草甘膦除草剂中使用最广泛的活性成分。人工智能或GBH对蚯蚓的短期影响是众所周知的,但很少有研究检测应用后3个月以上的长期遗留影响。在盆栽实验中,我们研究了对深穴蚯蚓和土壤功能的短期和长期影响。因此,覆盖作物Sinapis alba生长在土壤有机质含量为3.0%或4.1%的土壤中,并喷洒GBH(Touchdown Quattro、Roundup PowerFlex或Roundup LB Plus)或相应的草甘膦AI(二铵、钾盐或异丙胺盐)或人工除草(对照)。长期效果显示,即使在施用后4个月,GBHs也能提高蚯蚓的活性,但在AI和对照下的活性相似。在前一次处理5个月后,同样处理的另一次应用也增加了GBH下蚯蚓的活性,尤其是在高SOM水平下。模拟强降雨后的水分渗透比人工智能或人工除草低50%,而GBH的浸出率高30%。个别GBH和AI的效果各不相同,并受到SOM和土壤湿度的影响。全面披露GBH配方中的所有成分对于全面评估环境风险是必要的。
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
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