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Application of deficit irrigation to container-grown hardy ornamental nursery stock via overhead irrigation, compared to drip irrigation

机译:与滴灌相比,通过架空灌溉在容器种植的耐寒观赏苗木上进行亏缺灌溉

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Growth control of container-grown hardy nursery stock generally requires substantial labour investment. Therefore the possibility of alternative growth control using deficit irrigation is appealing. Increasing water costs and limited availability of abstraction licences have added further incentives for nursery stock producers to use deficit irrigation. There are still, however, concerns that inherent non-uniformity of water uptake under commonly used overhead irrigation, and differing irrigation requirements of diverse crops and substrates, may limit the commercial relevance of a protocol developed for single crops growing in 100% peat and irrigated with a high precision drip system. The aim of this research was to determine whether growth control of hardy nursery stock is possible using deficit irrigation applied with conventional overhead irrigation. Over two years, crop growth under an overhead irrigation system was compared under full irrigation and two severities of deficit irrigation. Initially, two crops of contrasting canopy structure i.e. Cornus alba and Lonicera periclymenum were grown. In a subsequent experiment one crop (Forsythia x intermedia) was grown in two substrates with contrasting quantities of peat (60 and 100%). Deficit irrigation was found to be highly effective in controlling vegetative growth when applied using overhead irrigation with similar results as when drip irrigation was used. This comparable response suggests that deficit irrigation can be applied without precision drip irrigation. Scheduling two very different crops with respect to their water use and uptake potential, however, highlighted challenges with respect to application of appropriate deficits for very different crops under one system; responses to deficit irrigation will be more consistent where nursery management allows for scheduling of crops with very different architecture and water use under different regimes. The effectiveness of deficit irrigation in controlling the growth of Forsythia was similar when a reduced peat based substrate was compared with pure peat; additionally, flowering was enhanced. (C) 2015 Elsevier B.V. All rights reserved.
机译:集装箱生长的耐寒苗木的生长控制通常需要大量的劳动力投资。因此,使用亏缺灌溉进行替代性生长控制的可能性很有吸引力。不断增加的水费和有限的取水许可,进一步刺激了苗木生产者使用亏缺灌溉。然而,仍然存在的担忧是,通常使用的架空灌溉方式下固有的水分吸收不均匀性,以及不同农作物和基质的不同灌溉要求,可能会限制针对种植100%泥炭和灌溉的单农作物制定的协议的商业意义。带有高精度滴灌系统。这项研究的目的是确定使用常规高架灌溉技术进行的亏缺灌溉是否可以控制强壮苗木。在过去的两年中,比较了高架灌溉系统和完全灌溉和两种严重不足灌溉条件下作物的生长情况。最初,种植了两种具有相反冠层结构的农作物,即山茱Corn和忍冬忍冬。在随后的实验中,将一种农作物(连翘x中间培养基)种植在两种基质中,形成对比的泥炭数量(分别为60%和100%)。当使用高架灌溉技术时,发现赤字灌溉在控制营养生长方面非常有效,其效果与滴灌技术相似。这种可比的响应表明,可以在不进行精确滴灌的情况下进行亏缺灌溉。然而,根据水的利用和吸收潜力对两种截然不同的农作物进行安排,突出了在一种系统下对截然不同的农作物实施适当亏空的挑战;如果苗圃管理允许在不同制度下采用不同的结构和用水计划安排作物,那么对缺水灌溉的反应将更加一致。当将减少的泥炭基基质与纯泥炭相比时,亏水灌溉在控制连翘生长方面的效果相似。另外,开花得到增强。 (C)2015 Elsevier B.V.保留所有权利。

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