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Field evaluation of Flight Control (TM) to reduce blackbird damage to newly planted rice

机译:飞行控制(TM)的现场评估,以减少黑鸟对新种植稻米的损害

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An effective, economic, and environmentally safe bird repellent is needed to reduce blackbird (Icterinae) depredations to newly planted rice. We evaluated Flight Control(TM), a 50% anthraquinone product, as a seed treatment for newly planted rice. We treated rice seed with Flight Control at a 2% (g/g) concentration (1% active anthraquinone) the day of planting. This concentration reduced the number of blackbirds (P=0.0003) using treated fields and blackbird damage to rice seed (P=0.0124). The chemical concentration of anthraquinone on rice seed averaged 0.79% (SE=0.06%) at planting; 0.39% (SE= 0.04%) at day 1, 0.34% (SE=0.05%) at day 3, and 0.41% (SE=0.06%) at day 5 post-planting. Rice seedling counts were similar between treated and untreated exclosures, suggesting that Flight Control had no phytotoxic effects to rice seed. Our results showed Flight Control to be an effective blackbird repellent that warrants further development as a management tool to reduce blackbird damage to newly planted rice and other agricultural commodities.
机译:需要一种有效,经济和环境安全的驱鸟剂,以减少对新栽种稻米的黑bird(小翅目)的掠食。我们评估了50%蒽醌产品Flight Control™作为新种植水稻的种子处理。播种当天,我们以2%(g / g)的浓度(1%的活性蒽醌)进行了Flight Control处理水稻种子。这种浓度减少了使用处理过的田地的黑鸟数量(P = 0.0003)和黑鸟对水稻种子的伤害(P = 0.0124)。种植时水稻种子中蒽醌的化学浓度平均为0.79%(SE = 0.06%)。种植后第1天为0.39%(SE = 0.04%),第3天为0.34%(SE = 0.05%),第5天为0.41%(SE = 0.06%)。处理和未处理的排泄物之间的水稻幼苗计数相似,表明飞行控制对水稻种子没有植物毒性作用。我们的研究结果表明,飞行控制是一种有效的黑鸟驱虫剂,应作为一种管理工具进行进一步开发,以减少黑鸟对新种植的大米和其他农产品的损害。

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