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首页> 外文期刊>Weed Science: Journal of the Weed Science Society of America >Impact of Wild Blueberry Harvesters on Weed Seed Dispersal within and between Fields
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Impact of Wild Blueberry Harvesters on Weed Seed Dispersal within and between Fields

机译:野生蓝莓收获机对田间和田间杂草种子扩散的影响

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摘要

Agricultural equipment can disperse weed seeds over large distances. Efforts to minimize or prevent equipment-mediated dispersal should be a key component in any integrated weed management plan. Several experiments were initiated in commercial wild blueberry fields to examine the potential impact of harvesting equipment on weed seed dispersal within and between blueberry fields. Seed loads were examined on harvesting equipment between fields and results suggest that harvesting equipment is a major vector of seed dispersal. Seed loads were 397,000 in 2006 and 194,000 in 2007. Of all seeds located on the harvester, 66 to 79% were located on the belts or affiliated components. In 2006, a second experiment was established to examine within-field seed dispersal. A sampling grid was established over multiple distinct poverty oatgrass patches with seed heads at 44% of all sampling points. Following harvest, seeds were located at 67% of all sampling points. In 2006 and 2007, short-distance secondary dispersal of poverty oatgrass by harvesting equipment was measured. The relationship between distance from patch perimeter and seeds per unit area on the side approached by harvesting equipment and the far side of the patch was adequately modeled with an exponential decay model. Secondary dispersal within blueberry fields by harvesting equipment is inevitable. Dispersal may be reduced by avoiding dense weed patches, or altering harvest timing. Periodic cleaning of harvesting equipment between fields will help prevent the spread of weed seed.
机译:农业设备可以将杂草种子散布到很远的距离。减少或防止设备​​介导的扩散的努力应该是任何综合杂草管理计划中的关键组成部分。在商业性野生蓝莓田中启动了一些实验,以检验收割设备对蓝莓田中和田间之间的杂草种子扩散的潜在影响。在田间之间的收获设备上检查了种子负载,结果表明收获设备是种子传播的主要媒介。 2006年的种子量为397,000,2007年为194,000。在收割机上的所有种子中,有66%至79%位于带或附属部件上。在2006年,建立了第二个实验来研究田间种子扩散。在多个不同的贫困燕麦草片上建立了一个采样网格,其种子头占所有采样点的44%。收获后,种子位于所有采样点的67%。在2006年和2007年,通过收割设备对贫困o草的近距离二次扩散进行了测量。利用指数衰减模型对距收获设备所接近的一侧与贴片周长的距离与单位面积种子之间的关系进行了足够的建模。通过收获设备在蓝莓田间进行二次扩散是不可避免的。避免密集的杂草斑块或改变收获时机,可以减少扩散。田间之间定期清洁收割设备将有助于防止杂草种子扩散。

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