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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Distribution of nutrients in the root zone affects yield, quality and blossom end rot of tomato fruits
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Distribution of nutrients in the root zone affects yield, quality and blossom end rot of tomato fruits

机译:根区养分的分布会影响番茄果实的产量,品质和开花期腐烂

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Tomato plants (Lycopersicon esculentum Mill. 'DRK') were grown hydroponically in two experiments to determine the effects of nutrient concentration and distribution in the root zone on yield, quality and blossom end rot (BER). The plants were grown in rockwool with their root systems divided into two portions. Each portion was irrigated with nutrient solutions with either the same or different electrical conductivity (EC) in the range 0 to 6 dS m(-1). In both experiments, fruit yields decreased as EC increased from moderate to high when solutions of equal concentration were applied to both portions of the root system. However, higher yields were obtained when a solution with high EC was applied to one portion of the root system and a solution of low EC to the other portion. For example, the fresh weight of mature fruits in the 6/6 treatment was only 20% that of the 3/3 treatment but the 6/0 treatment had a yield that was 40% higher. The reduction in yield in the high EC treatments was due to an increase in the number of fruits with BER and smaller fruit size. BER increased from 12% to 88% of total fruits as EC increased from 6/0 to 6/6 and fruit length decreased from 67 mm to 52 mm. Fruit quality (expressed as titratable acidity and soluble solids) increased as EC increased. In summary, high yields of high quality tomatoes with minimal incidence of BER were obtained when one portion of the root system was supplied with a solution of high EC and the other portion with a solution of moderate or zero EC.
机译:番茄植物(Lycopersicon esculentum Mill。'DRK')在两个实验中以水培方式生长,以确定养分浓度和根区分布对产量,品质和花期腐烂(BER)的影响。植物在岩棉中生长,其根系分为两部分。每个部分都用营养液灌洗,营养液的电导率(EC)相同或不同,范围为0到6 dS m(-1)。在两个实验中,当将相同浓度的溶液应用于根系的两个部分时,果实的产量都随着EC从中等到较高的增加而降低。但是,如果将高EC的溶液应用于根系的一部分,而将低EC的溶液应用于另一部分,则会获得更高的产量。例如,在6/6处理中,成熟水果的鲜重仅为3/3处理的20%,而6/0处理的单产则高40%。高EC处理的产量下降是由于带有BER和较小果实大小的果实数量增加。随着EC从6/0增加到6/6,果实长度从67 mm减少到52 mm,BER从总果实的12%增加到88%。果实质​​量(表示为可滴定的酸度和可溶性固体)随EC的增加而提高。总之,当向根系统的一部分提供高EC溶液,而另一部分则提供中等EC溶液或零EC溶液时,可获得BER发生率最低的高品质番茄。

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