首页> 美国卫生研究院文献>PLoS Clinical Trials >Effect of Post-Infiltration Soil Aeration at Different Growth Stages on Growth and Fruit Quality of Drip-Irrigated Potted Tomato Plants (Solanum lycopersicum)
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Effect of Post-Infiltration Soil Aeration at Different Growth Stages on Growth and Fruit Quality of Drip-Irrigated Potted Tomato Plants (Solanum lycopersicum)

机译:不同生长期的入渗后土壤通气对滴灌盆栽番茄生长的影响

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摘要

Soil hydraulic principles suggest that post-infiltration hypoxic conditions would be induced in the plant root-zone for drip-irrigated tomato production in small pots filled with natural soil. No previous study specifically examined the response of tomato plants (Solanum lycopersicum) at different growth stages to low soil aeration under these conditions. A 2 × 6 factorial experiment was conducted to quantify effects of no post-infiltration soil aeration versus aeration during 5 different periods (namely 27–33, 34–57, 58–85, 86–99, and 27–99 days after sowing), on growth and fruit quality of potted single tomato plants that were sub-surface trickle-irrigated every 2 days at 2 levels. Soil was aerated by injecting 2.5 liters of air into each pot through the drip tubing immediately after irrigation. Results showed that post-infiltration aeration, especially during the fruit setting (34–57 DAS) and enlargement (58–85 DAS) growth stages, can positively influence the yield, root dry weight and activity, and the nutritional (soluble solids and vitamin C content), taste (titratable acidity), and market quality (shape and firmness) of the tomato fruits. Interactions between irrigation level and post-infiltration aeration on some of these fruit quality parameters indicated a need for further study on the dynamic interplay of air and water in the root zone of the plants under the conditions of this experiment.
机译:土壤水力原理表明,在装满天然土壤的小盆中,在滴灌番茄生产的植物根部区域会诱导入渗后缺氧。以前没有研究专门研究过番茄在不同条件下对不同土壤低通气量的反应。进行了2×6阶乘实验,以量化5个不同时期(即播种后27-33、34-57、58-85、86-99和27-99天)没有入渗后土壤通气与通气的影响。 ,关于每2天进行2次地下滴灌的盆栽单株番茄的生长和果实品质。灌溉后立即通过滴水管向每个盆中注入2.5升空气,为土壤充气。结果表明,入渗后通气,尤其是在坐果期(34–57 DAS)和膨大期(58–85 DAS)生长阶段,可以对产量,根干重和活性以及营养(可溶性固形物和维生素)产生积极影响C含量),口味(可滴定的酸度)和番茄果实的市场品质(形状和硬度)。在某些水果质量参数上,灌溉水平和入渗后通气之间的相互作用表明,在该试验条件下,有必要进一步研究植物根部区域空气与水的动态相互作用。

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