4.5 Article

Using dazomet to reduce broomrape seed banks in soils with low moisture content

期刊

CROP PROTECTION
卷 59, 期 -, 页码 43-50

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.cropro.2014.01.013

关键词

Phelipanche ramosa; Methyl isothiocyanate; Methyl bromide alternatives; Fumigation; Weed control

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资金

  1. Commonwealth Government of Australia under the Branched Broomrape Eradication Program
  2. State Government of Australia under the Branched Broomrape Eradication Program

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Dazomet (Basamie(R)) is a dry powder formulation that releases the toxic gas methyl isothiocyanate for the control of soil borne pests and weed seeds when applied to moist soils. We evaluated its efficacy for destroying Phelipanche mutelii (branched broomrape) seed banks. Dazomet is typically used where effectiveness can be improved with the addition of water but we examined its performance in soils with low moisture content in container experiments and field trials. In containers, less than 10% of P. mutelii seed remained viable 30 days after dazomet applications of 112.8-338.4 kg ha(-1) at soil moisture content from 0.05 to 0.15 g g(-1). Seeds buried at a depth of 5 cm needed to be in contact with the product for longer than one week before viability was affected. An initial field trial did not detect a decline in seed viability 7 days after dazomet application. Viability assessments in a second field trial were made 30 days after dazomet application with an airseeder at a rate of 338.4 kg ha(-1). Less than 10% of P. mutelii seeds at a depth of 5 cm survived and dazomet was as effective as two other soil fumigants, methyl bromide and a methyl iodide/chloropicrin mixture. The release of methyl isothiocyanate is reduced in soils in containers with low soil moisture content but occurs over a long time period. Methyl isothiocyanate dissipated more rapidly in soils in containers with higher soil moisture content and at lower dazomet application rates. A higher application rate is required in the field to ensure the dazomet powder is evenly distributed through the soil profile and there is adequate methyl isothiocyanate resident in the top soil layer to achieve seed kill. This has consequences for plant back times in fumigated land following dazomet application. Crown Copyright (C) 2014 Published by Elsevier Ltd. All rights reserved.

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