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Low Tunnel Covering and Microclimate, Fruit Yield, and Quality in an Organic Strawberry Production System

机译:低隧道覆盖和微气候,水果产量和有机草莓生产系统的质量

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Consumer demand for local and organic strawberries (Fragaria x ananassa) is increasing. Growers who can meet this demand have a competitive edge in the direct-to-consumer market. Innovations in strawberry production for northern climates offer new opportunities for growers to meet the demand for local organic strawberries. Typically adopted for season extension, the use of polycovered tunnels for crop protection provides other benefits including protection from adverse weather. Low tunnels are easy to install, low cost, temporary protective structures that are well-adapted for annual day-neutral strawberry production, and they are more space efficient than high tunnels for these low-stature crops. A range of specialty tunnel plastics that modify and diffuse light are available, but there is little information on how these influence strawberry plant growth and performance in the field. Our objectives were to determine the effects of experimental ultraviolet blocking and transmitting plastics on light and microclimate in low tunnel environments and assess differences in fruit yield and quality in the day-neutral strawberry cultivar Albion in an organic production system. This research was conducted on U.S. Department of Agriculture-certified organic land over 2 years, in 2016 and 2017. We found that ultraviolet intensity and daily light integral (DLI) were lower in covered plots than in the open field. Maximum daily temperatures were slightly higher in covered plots. Both ultraviolet-blocking and ultraviolet-transmitting plastics improved marketable fruit yield compared with the open-field control. Strawberries grown in the open-field treatment were lower in chroma than covered plots in 2017, and there was no difference in total soluble solids between treatments in either year. Low tunnel systems allow for increased environmental control and improved fruit quality and are well-adapted for day-neutral organic strawberry production systems.
机译:消费者对本地和有机草莓(Fragaria X Ananassa)的需求正在增加。可以满足这种需求的种植者在直接消费市场中具有竞争优势。北部气候草莓生产的创新为种植者提供了新的机会,以满足对当地有机草莓的需求。通常采用季节延伸,使用多覆盖隧道进行作物保护提供了其他益处,包括免受恶劣天气的保护。低隧道易于安装,成本低,临时保护结构,适应年度中性的草莓生产,它们比这些低平坦作物的高隧道更高的空间效率。提供了一系列修改和漫射光的特种隧道塑料,但几乎没有关于这些影响原野的草莓植物生长和性能的信息。我们的目标是确定实验紫外线阻断和传递塑料对低隧道环境中的光和小环脉的影响,并评估有机生产系统中日中性草莓品种汉语水果产量和质量的差异。该研究是在2016年和2017年超过2年的美国农业认证的有机土地上进行。我们发现紫外线强度和日光积分(DLI)在覆盖的地块中较低,而不是开放领域。在覆盖的地块中,最大每日温度略高。与开放式控制相比,紫外线阻断和紫外线传输塑料均提高了营销果实产量。在开放场处理中生长的草莓在2017年的色度下较低,并且在两年后治疗之间的可溶性固体差异没有差异。低隧道系统允许增加环境控制和改善的果实质量,适用于日中性有机草莓生产系统。

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