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Influence of soil moisture on yield and quality of tomato on a heavy clay soil.

机译:土壤水分对重黏土番茄产量和品质的影响。

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摘要

The effect of three soil moisture regimes, i.e. deficit (22-26 mm H2O per 100 mm soil depth), field capacity (FC, 34-43 mm) and saturation (44-48 mm), on the growth, yield and quality of tomato (Lycopersicon esculentum) cultivar 'Improved Apollo' was examined on a heavy clay soil in the screen house. Leaf area and plant height were reduced in deficit and saturation, whereas stem diameter increased with increasing soil moisture. Fruit yield declined by 31 and 24% in deficit and saturation, respectively, compared with FC. Maximum attainable fruit yield would be achieved with 35 mm H2O per 100 mm soil depth. Total titratable acidity (TTA), ascorbic acid (AA) and firmness decreased, while pH increased with increasing soil moisture. Dry matter, total soluble solids (TSS), TSS:TTA and blossom end rot (BER) were highest for deficit, followed by saturation, and lowest at FC. Although yield increased and BER decreased at FC, other quality improved with water stress compared to FC..
机译:三种土壤水分状况,即水分亏缺(每100毫米土壤深度22-26毫米水柱),田间持水量(34-43毫米)和饱和度(44-48毫米)对玉米生长,产量和品质的影响在筛房的重粘土上检查了番茄(改良番茄)品种“改良的阿波罗”。叶面积和植物高度的亏缺和饱和度降低,而茎直径随土壤湿度的增加而增加。与FC相比,水果产量的亏缺和饱和度分别降低了31%和24%。每100毫米土壤深度使用35毫米水柱,可获得最大的水果产量。随着土壤湿度的增加,总可滴定酸度(TTA),抗坏血酸(AA)和硬度降低,而pH升高。干物质,总可溶性固形物(TSS),TSS:TTA和开花末腐烂(BER)的赤字最高,其次是饱和,FC最低。尽管在FC上产量增加而BER降低,但与FC相比,其他品质随水分胁迫而改善。

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