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Life cycle and gene dispersal of oilseed rape volunteers (Brassica napus L.)

机译:油菜志愿者的生命周期和基因分散(Brassica Napus L.)

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To assess gene dispersal from oilseed rape volunteers, the whole life cycle of deliberately broadcast seeds and seed losses during harvest was observed in four different tillage operations. Treatments 1 and 3 were immediate stubble tillage, later followed by primary tillage with a plough or cultivator. In treatment 2, the stubble tillage was delayed for four weeks and later followed by primary tillage ploughing. Treatment 4 was zero tillage. The following crop in all treatments was winter wheat. In autumn, between about 7 and mostly less than 50% of the initial rape seeds emerged, whereas volunteer emergence was less than 0.01% in spring. Depending on the treatment, a seed bank was built up reaching up to 30% of the initial number of seeds. The seedbank was largest when seeds were immediately incorporated into the soil by stubble tillage. Up to 85% of seeds could not be found; the heaviest losses occurring when the seeds remained on the soil surface for a while in treatments 2 and 4. When volunteers flowered at the same time as an oilseed rape crop, gene dispersal in space by pollen transfer was possible. Flowering volunteer plants could be observed mainly in treatments 3 and 4, at a population density of up to 0.78 plants m~2 in treatment 3. A new generation of seeds could be produced by the volunteers that may found a further cohort of volunteers and enable gene dispersal in time or, in case of volunteers emerging in a rape crop, be harvested with the crop.
机译:为了评估从油菜志愿者基因扩散,在四个不同的耕作作业中观察到收获期间故意广播种子和种子损失的整个生命周期。处理1和3为直接免耕覆盖,以后接着用犁或中耕初级耕作。在治疗2,免耕覆盖被推迟四星期以后,随后初级耕作犁地。治疗4是免耕。在所有治疗以下作物是冬小麦。在秋天,初始油菜种子的约7 50之间,大致小于%出现了,而出现志愿者小于在弹簧0.01%。根据不同的处理,种子库建起来达到了种子的初始数量的30%。该种子库是最大的种子时,立即纳入由免耕覆盖的土壤。截至种子找不到的85%;时发生的种子保持在土壤表面上,用于在处理2和4中的同时,当志愿者开花同时作为油菜作物的严重损失,在空间基因扩散通过花粉转移是可能的。开花自生植物可以主要观察到处理3和4,在高达的人口密度0.78植物M〜2在治疗3.一种新一代的种子可以由志愿者来生产的,其可以发现志愿者的另一个队列和使在时间基因扩散,或者在志愿者新兴在油菜作物的情况下,与作物收获。

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