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Response of Four Dry Bean Market Classes to Pre-Emergence Applications of Pyroxasulfone, Sulfentrazone and Pyroxasulfone plus Sulfentrazone 被引量:1

Response of Four Dry Bean Market Classes to Pre-Emergence Applications of Pyroxasulfone, Sulfentrazone and Pyroxasulfone plus Sulfentrazone
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摘要 Only one herbicide mode of action (ALS inhibitor) is currently available to Ontario dry bean producers for soil-applied broadleaf weed control. Four field studies were conducted over two years (2014, 2015) to examine the tolerance of four market classes of dry beans to sulfentrazone (210 and 420 g&middot;ai&middot;ha<sup>-1</sup>) and pyroxasulfone (100 and 200 g&middot;ai&middot;ha<sup>-1</sup>) applied alone and in combination. The registration of these two herbicides would provide Ontario dry bean producers with two additional modes of action for broadleaf weed control. Pyroxasulfone caused up to 23%, 6%, 7% and 10% injury in adzuki, kidney, small red Mexican and white bean, respectively;sulfentrazone caused up to 51%, 12%, 15% and 44% injury and the combination caused up to 90%, 23%, 29% and 62% injury, respectively. Kidney and small red Mexican bean density, height, seed moisture content and yield were not affected. Pyroxasulfone (200 g&middot;ai&middot;ha<sup>-1</sup>) + sulfentrazone (420 g&middot;ai&middot;ha<sup>-1</sup>) reduced adzuki and white bean density, shoot dry weight, height and yield. This study concludes that pyroxasulfone (100 g&middot;ai&middot;ha<sup>-1</sup>) + sulfentrazone (210 g&middot;ai&middot;ha<sup>-1</sup>) applied PRE can be safely used to control weeds in Ontario kidney and small red Mexican bean production. Only one herbicide mode of action (ALS inhibitor) is currently available to Ontario dry bean producers for soil-applied broadleaf weed control. Four field studies were conducted over two years (2014, 2015) to examine the tolerance of four market classes of dry beans to sulfentrazone (210 and 420 g&middot;ai&middot;ha<sup>-1</sup>) and pyroxasulfone (100 and 200 g&middot;ai&middot;ha<sup>-1</sup>) applied alone and in combination. The registration of these two herbicides would provide Ontario dry bean producers with two additional modes of action for broadleaf weed control. Pyroxasulfone caused up to 23%, 6%, 7% and 10% injury in adzuki, kidney, small red Mexican and white bean, respectively;sulfentrazone caused up to 51%, 12%, 15% and 44% injury and the combination caused up to 90%, 23%, 29% and 62% injury, respectively. Kidney and small red Mexican bean density, height, seed moisture content and yield were not affected. Pyroxasulfone (200 g&middot;ai&middot;ha<sup>-1</sup>) + sulfentrazone (420 g&middot;ai&middot;ha<sup>-1</sup>) reduced adzuki and white bean density, shoot dry weight, height and yield. This study concludes that pyroxasulfone (100 g&middot;ai&middot;ha<sup>-1</sup>) + sulfentrazone (210 g&middot;ai&middot;ha<sup>-1</sup>) applied PRE can be safely used to control weeds in Ontario kidney and small red Mexican bean production.
作者 Allison N. Taziar Nader Soltani Christy Shropshire Darren E. Robinson Mitch Long Chris L. Gillard Peter H. Sikkema Allison N. Taziar;Nader Soltani;Christy Shropshire;Darren E. Robinson;Mitch Long;Chris L. Gillard;Peter H. Sikkema(University of Guelph Ridgetown Campus, Ridgetown, Canada;FMC Corporation, Saskatoon, Canada)
出处 《American Journal of Plant Sciences》 2016年第8期1217-1225,共9页 美国植物学期刊(英文)
关键词 Adzuki Bean (Erimo) Kidney Bean (Red Hawk) Small Red Mexican Bean (Merlot) White Bean (T9905) Crop Injury Plant Density Plant Height Seed Moisture Content Tolerance Yield Adzuki Bean (Erimo) Kidney Bean (Red Hawk) Small Red Mexican Bean (Merlot) White Bean (T9905) Crop Injury Plant Density Plant Height Seed Moisture Content Tolerance Yield
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