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Yield Potential of Sugar Beet – Have We Hit the Ceiling?

机译:甜菜的增产潜力–我们达到了上限吗?

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摘要

The yield of sugar beet has continuously increased in the past decades. The question arises, whether this progress will continue in the future. A key factor for increasing yield potential of the crop is breeding progress. It was related to a shift in assimilate partitioning in the plant toward more storage carbohydrates (sucrose), whereas structural carbohydrates (leaves, cell wall compounds) unintendedly declined. The yield potential of sugar beet was estimated at 24 t sugar ha-1. For maximum yield, sufficient growth factors have to be available and the crop has to be able to fully utilize them. In sugar beet, limitations result from the lacking coincidence of maximum irradiation rates and full canopy cover, sink strength for carbon assimilation and high water demand, which cannot be met by rainfall alone. After harvest, sugar losses during storage occur. The paper discusses options for a further increase in yield potential, like autumn sowing of sugar beet, increasing sink strength and related constraints. It is prospected that yield increase by further widening the ratio of storage and structural carbohydrates will come to its natural limit as a certain cell wall stability is necessary. New challenges caused by climate change and by prolonged processing campaigns will occur. Thus breeding for improved pathogen resistance and storage properties will be even more important for successful sugar beet production than a further increase in yield potential itself.
机译:在过去的几十年中,甜菜的产量不断增加。问题是,这种进步将来是否会继续下去。提高作物单产潜力的关键因素是育种进度。这与植物中同化物分配向更多储存碳水化合物(蔗糖)的转变有关,而结构性碳水化合物(叶子,细胞壁化合物)意外下降。甜菜的产量潜力估计为24 t糖ha -1 。为了获得最大的产量,必须有足够的生长因子并且农作物必须能够充分利用它们。在甜菜中,局限性是由于缺乏最大辐照率和完全的树冠覆盖,碳吸收的下沉强度和高需水量的巧合所致,仅靠降雨是无法满足的。收获后,在存储过程中会发生糖损失。本文讨论了进一步提高单产潜力的选择,例如甜菜的秋季播种,增加水槽强度和相关限制。可以预见,通过进一步扩大贮藏和结构碳水化合物的比例来增加产量将达到其自然极限,因为必须具有一定的细胞壁稳定性。气候变化和长时间的加工运动将带来新的挑战。因此,为了成功地生产甜菜,进行育种以提高病原体的抗药性和储藏性能,比进一步提高产量本身本身更为重要。

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