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Identification of Environmental Factors Limiting Plant Uptake of Metaldehyde Seed Treatments under Field Conditions

机译:确定田间条件下限制植物吸收甲醛种子处理的环境因素

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Slugs are serious pests of oilseed rape (canola) and wheat with most damage occurring just after sowing and seedling emergence.As an alternative to the use of bait pellets,molluscicidal seed treatments have been shown to protect seeds and seedlings from slug damage in laboratory and semi-field experiments.However,protection offered to plants in field trials was diminished and shortlived in comparison with laboratory experiments.To determine why field efficacy was reduced,we grew seedlings under a range of environmental conditions,with appropriate controls,that simulated differences between laboratory and field experiments.We then measured the metaldehyde content of plant seedlings using a previously unpublished methodology described herein,which,unlike previous methods,did not first depolymerize the metaldehyde to acetaldehyde.We confirmed that naturally abundant plant-derived acetaldehyde could not interfere with our measurements of metaldehyde,even if depolymerization took place within the column.Our data suggest that reduced field efficacy results from microbial breakdown and/or loss of active ingredient caused by percolating soil water.Once the seedlings had emerged,neither volatalization nor simulated rainwater reduced the metaldehyde content of seedlings.Our findings will help develop superior seed treatment formulations to overcome these constraints.
机译:ug是油菜和小麦的严重害虫,播种和出苗后立即发生大部分损害。除使用诱饵团块外,已证明杀虫种子处理可在实验室和实验室中保护种子和幼苗免受的破坏。半田间试验。但是,与实验室试验相比,田间试验中提供给植物的保护作用减少了,而且寿命很短。为了确定田间药效降低的原因,我们在一定的环境条件下,适当的控制下种植了幼苗,模拟了两者之间的差异。然后,我们使用此处未描述的以前未公开的方法测量了植物幼苗的甲醛含量,该方法与以前的方法不同,没有首先将乙醛解聚为乙醛。我们确认,天然来源的大量乙醛不会干扰我们对甲醛的测量,即使解聚发生在我们的数据表明,田间药效降低是由于土壤水分渗入引起的微生物分解和/或活性成分损失所致。一旦幼苗出苗,挥发或模拟雨水均不会降低幼苗的甲醛含量。开发卓越的种子处理配方以克服这些限制。

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