首页> 外文期刊>Journal of the Science of Food and Agriculture >Norwegian-grown Jerusalem artichoke (Helianthus tuberosus L.): morphology and content of sugars and fructo-oligosaccharides in stems and tubers.
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Norwegian-grown Jerusalem artichoke (Helianthus tuberosus L.): morphology and content of sugars and fructo-oligosaccharides in stems and tubers.

机译:挪威种植的菊芋( Helianthus tuberosus L.):茎和块茎中糖和低聚果糖的形态和含量。

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摘要

BACKGROUND: Two field trials growing Jerusalem artichoke (Helianthus tuberosus L.) are discussed. Twenty genetic variants were compared in order to find genotypes suitable for Norwegian production. A second trial investigated the above-ground part of early and late variants. RESULTS: The highest yield (28.7 t ha-1) and highest amount of tubers per plant was obtained in early variants, e.g. the white Tysnes gave 1.72 kg tubers plant-1. Early variants had a markedly lower portion of smooth tubers. Late variants gave the most preferable tuber shape, but low yield. Only a weak correlation was found between dry matter content and total content of fructo-oligosaccharides (FOS) (r=0.255) in the tubers. The mean content of FOS including sucrose through all variants was found to be 116 g kg-1 fresh weight (FW) or 550 g kg-1 dry weight (DW). The average chain length of FOS in the tubers was found to be DP3.9. There was no difference in tuber FOS content between early and late variants. The highest above-ground amount biomass was found for the late variants when harvested in September. The content of soluble carbohydrates was found to be highest in stalks in August (sucrose and FOS major compounds). CONCLUSION: Early variants give the highest tuber yield under Norwegian growing conditions. Late variants give highest above-ground biomass.
机译:背景:讨论了两个种植菊芋的实地试验。为了找到适合挪威生产的基因型,比较了二十个遗传变异。第二项试验研究了早期和晚期变异的地面部分。结果:在早期变种中,例如每株获得最高产量(28.7 t ha -1 )和最高产量的块茎。白色的Tysnes种植了1.72千克的块茎植物 -1 。早期变种的光滑块茎下部明显较低。后期变种的块茎形状最理想,但产量低。在块茎中,干物质含量与低聚果糖(FOS)总含量( r = 0.255)之间的相关性很弱。发现所有变体中包括蔗糖在内的FOS的平均含量为116 g kg -1 鲜重(FW)或550 g kg -1 干重(DW)。发现块茎中FOS的平均链长为DP3.9。早期和晚期变异之间的块茎FOS含量没有差异。 9月收获时,晚变种的地上生物量最高。 8月份,茎中的可溶性碳水化合物含量最高(蔗糖和FOS主要化合物)。结论:在挪威生长条件下,早期变种的块茎产量最高。后期变异提供了最高的地上生物量。

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