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首页> 外文期刊>Scientia horticulturae >Interactions between changing climate conditions in a semi-closed greenhouse and plant development, fruit yield, and health-promoting plant compounds of tomatoes.
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Interactions between changing climate conditions in a semi-closed greenhouse and plant development, fruit yield, and health-promoting plant compounds of tomatoes.

机译:半封闭温室中不断变化的气候条件与植物发育,水果产量以及促进健康的番茄化合物之间的相互作用。

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Climate change will lead to an excessive change in climate conditions in greenhouses, particularly during the summer. Therefore, a new climate strategy for greenhouses was developed to avoid plant damages. In this context, interactions between changing microclimatic conditions depending on different climate strategies and plant growth, fruit yield as well as secondary plant compounds were investigated between 2008 and 2009. The results showed that a combined application of a high pressure fog system and CO2 enrichment can be applied to decrease the inside temperature and to increase the levels of relative humidity and CO2 concentrations at a high ambient temperature, accompanied by an increase in mean temperature. Such microclimate in the greenhouse were sufficient to accelerate plant growth, to increase dry matter in leaves, and to promote the formation of fruit set per truss in comparison to those grown under conventional climate conditions. Furthermore, the algorithm of the new climate strategy led to a maximum total yield increase by 20%, to a reduction of blossom-end rot in tomatoes and to a pronounced increase in fruit size during the spring experiments. The climate conditions caused by the new technology significantly promoted secondary metabolism, resulting in a maximum increase in contents of lycopene (by 49%), beta-carotene (by 35%), and phenolic compounds (by 16%) as well as associated antioxidant activity in the water-insoluble (by 18.5%) and water-soluble (by 35.4%) fraction compared to the conventional treated plants. Therefore, the new climate strategy may be appropriate to increase the total yield and to improve the fruit quality as well as the health-promoting properties of tomatoes
机译:气候变化将导致温室中气候条件的过度变化,尤其是在夏季。因此,开发了一种新的温室气候策略来避免植物受到损害。在此背景下,根据不同的气候策略,在不同的微气候条件与植物生长,果实产量以及次生植物化合物之间的相互作用进行了研究(2008至2009年)。在较高的环境温度下,可降低室内温度并提高相对湿度和CO2浓度,同时提高平均温度。与在常规气候条件下生长的那些相比,温室中的这种微气候足以加速植物的生长,增加叶片中的干物质并促进每个桁架上结实的形成。此外,新的气候策略的算法导致最大总产量增加20%,减少了番茄开花期腐烂,并在春季试验期间显着增加了果实大小。新技术引起的气候条件极大地促进了二次代谢,导致番茄红素(增加49%),β-胡萝卜素(增加35%)和酚类化合物(增加16%)以及相关的抗氧化剂的含量增加最多与常规处理过的植物相比,水不溶性(18.5%)和水溶性(35.4%)级分的活性增强。因此,新的气候策略可能适合增加番茄的总产量,改善果实品质以及促进番茄健康的特性。

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