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Response of Weeping Lantana ( Lantana montevidensis ) to Compost-Based Growing Media and Electrical Conductivity Level in Soilless Culture: First Evidence

机译:无土栽培中垂枝马tana(Lantana montevidensis)对基于堆肥的生长介质和电导率水平的响应:第一个证据

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The most common substrate for potted ornamental plants is prepared with Sphagnum peat; however, the cost and declining availability of high-quality peat, due to environmental constraints, make it necessary to investigate for alternative organic materials. The present study aimed to determine the effects of partial compost replacement with peat and the optimum electrical conductivity (EC) level of the nutrient solution in potted weeping lantana [ L. montevidensis (Spreng.) Briq.] under a recirculating soilless system. Three compost-based substrates were prepared by mixing peat (Pe) with sewage sludge-based compost (Co.) at a rate of 0% (Pe90Co0Pu10, control), 30% (Pe60Co30Pu10), or 60% (Pe30Co60Pu10), respectively. The soilless recirculated closed system was equipped with two different EC levels (high and low) of nutrient solution. Growing media main characteristics and plant bio-morphometric parameters were evaluated. Our first evidence clearly demonstrates that the replacement of peat with compost at doses of 30% and 60% gave the poorest results for plant diameter, shoots, leaves, flowers, and fresh and dry mass, probably indicating that the physical characteristics of the compost based substrates may be the major factor governing plant growth rate. Compost media pH and EC values, too, showed negative effects on plant growth. Considering the effect of EC level, all morphological traits were significantly improved by high EC compared to low EC in weeping lantana. Thus, based on first evidence, further research is needed on organic materials for the establishment of ecological substrates with optimal physicochemical characteristics for the growth of weeping lantana.
机译:盆栽观赏植物最常见的基质是用泥炭藓泥炭制成的。然而,由于环境的限制,高质量泥炭的成本和可用性下降,使得有必要研究替代有机材料。本研究旨在确定在无土循环系统下盆栽的垂枝马鞭草(L. montevidensis(Spreng。)Briq。)中用泥炭代替部分堆肥的效果以及营养液的最佳电导率(EC)水平。通过将泥炭(Pe)与污水污泥基堆肥(Co.)分别以0%(Pe90Co0Pu10,对照),30%(Pe60Co30Pu10)或60%(Pe30Co60Pu10)的比例混合来制备三种基于堆肥的基质。无土循环封闭系统配备了两种不同EC水平(高和低)的营养液。评价了生长介质的主要特征和植物生物形态学参数。我们的第一个证据清楚地表明,以30%和60%的剂量用堆肥代替泥炭对植物直径,枝条,叶子,花朵以及新鲜和干燥质量的效果最差,这可能表明堆肥的物理特性基于底物可能是决定植物生长速率的主要因素。堆肥培养基的pH和EC值也显示出对植物生长的负面影响。考虑到EC水平的影响,在哭泣的马tana丹中,与低EC相比,高EC显着改善了所有形态特征。因此,基于第一个证据,需要进一步研究有机材料,以建立具有最佳理化特性的垂枝马lan生长的生态基质。

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