Acta Agriculturae Scandinavica. Section B, Soil and Plant Science (Oct 2017)

Relationship of soil properties to pyroxasulfone bioactivity in a range of prairie soils

  • Anna M. Szmigielski,
  • Ryan D. Hangs,
  • Jeff J. Schoenau

DOI
https://doi.org/10.1080/09064710.2017.1327082
Journal volume & issue
Vol. 67, no. 7
pp. 665 – 669

Abstract

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The relationship between pyroxasulfone bioactivity and soil properties has not been investigated in a wide range of soils typical of western Canada. In this study, 47 soils from Saskatchewan, Manitoba and Alberta, with varying organic matter content (1.5%–22.1%), pH (5.0–7.9), and clay content (6.8%–59.4%) were used to evaluate the effect of soil properties on pyroxasulfone bioactivity and its relevance to field application rates. Bioactivity was assessed by measuring the reduction of sugar beet shoot length after 7 days in response to 0, 92, 184, and 368 µg ai kg−1 pyroxasulfone concentration in soil. Multiple regression analysis showed that pyroxasulfone bioactivity was related to soil organic matter content, pH and clay content. Grouping the soils according to these properties allowed for a summarization of pyroxasulfone field application rates required to achieve bioactivity based on the magnitude of sugar beet shoot length inhibition (%). The estimated field application rates ranged from less than 120–480 g ai ha−1.

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