首页> 外文期刊>Physiology and Molecular Biology of Plants >Effect of heat treatment around the fruit set region on growth and yield of watermelon [Citrullus lanatus (Thunb.) Matsum. and Nakai]
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Effect of heat treatment around the fruit set region on growth and yield of watermelon [Citrullus lanatus (Thunb.) Matsum. and Nakai]

机译:座果区周围的热处理对西瓜生长和产量的影响[Citrullus lanatus(Thunb。)和中井]

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摘要

The present experiment was aimed to study the effect of imposing modulated temperature treatments 14 °C and 18 °C, around the fruiting region of watermelon plants, and to estimate the economic feasibility of the temperature treatments based on energy consumption for heating. Watermelon cultivar 'Sambok-gul' was selected and sown on perlite beds in a plastic house under controlled conditions at Watermelon Farm, Jeongeup-Jeonbuk, longitude 35° 31' 47.51N, 126° 48'48.84E, altitude 37 m during the early spring season (2010-2011). The findings revealed that the temperature treatment at 18 °C caused significant increase in weight (2.0 kg plant~(-1)), fruit weight (8.3 kg plant~(-1)), soluble solid content (11.5 %), and fruit set rate (96.5 %) at harvest stage. Higher contents of Ca~(2+) and Mg~(2+) ions were observed in the 1st upper leaf of the fruit set node (79.3 mgL~(-1)) and the 1st lower leaf of the fruit set node (12.0 mgL~(-1)), respectively at 14 °C. The power consumption and extra costs of the temperature treatment 18 °C were suggested as affordable and in range of a farmer's budget (41.14 USD/22 days). Hence, it was concluded that modulating temperature treatments could be utilized successfully to optimize the temperature range for enhancing the fruit yield and quality in the winter watermelon crops.
机译:本实验旨在研究在西瓜果实期周围实施14°C和18°C调制温度处理的效果,并基于加热的能量消耗估算温度处理的经济可行性。西瓜品种'Sambok-gul'被选定并在受控条件下播种在塑料棚的珍珠岩床上,该农场在静邑-全北市的西瓜农场,经度35°31'47.51N,126°48'48.84E,早期海拔37 m春季(2010-2011年)。研究结果表明,在18°C的温度下处理显着增加了重量(2.0 kg植物〜(-1)),水果重量(8.3 kg植物〜(-1)),可溶性固形物(11.5%)和水果收获阶段的定型率(96.5%)。在果实结节的第一上叶(79.3 mgL〜(-1))和果实结节的第一下叶(12.0)中观察到较高的Ca〜(2+)和Mg〜(2+)离子含量mgL〜(-1))分别在14°C下进行。建议在18°C的温度范围内以低功耗运行,且价格合理,且不超出农民的预算(41.14美元/ 22天)。因此,得出的结论是,可以成功地利用调节温度处理来优化温度范围,以提高冬季西瓜作物的果实产量和品质。

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