Sugarcane Bagasse Is an Effective Soilless Substrate Amendment in Quick-turn Osteospermum Production

IF 1.5 3区 农林科学 Q2 HORTICULTURE Hortscience Pub Date : 2023-10-01 DOI:10.21273/hortsci17286-23
Maureen Thiessen, J. Fields, Damon Abdi, Jeffrey Beasley
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Abstract

Many greenhouse growers rely on peat-based soilless substrates to produce salable crops in a relatively short period of time. Peat-based substrate suppliers often incorporate additional organic materials such as wood fiber to extend peat supplies. Given the relative success of wood-based substrates, growing interest in other fiber materials such as sugarcane bagasse may provide similar benefits for substrate processers. The objective of this research was to evaluate substrate properties and the productivity of a short-term floriculture crop, Osteospermum ‘Bright Lights Purple’, in a commercially available peat-based substrate (PL) that has been amended with either commercially available wood fiber [Hydrafiber (HF)] or an aged sugarcane bagasse fiber (SCB). Thus, substrates consisting of PL amended with 15% or 30% HF or SCB were developed. Plants were fertigated weekly at rates of 100, 200, or 300 ppm N, respectively. Crop growth and fertility dynamics were assessed. Substrate shrinkage was greatest in the 30% bagasse blend but had minimal impact given the 2-month crop cycle. The incorporation of 15% and 30% SCB and HF produced slight changes in pH over a 9-week growth period, with HF generally raising pH and SCB generally lowering pH compared with the 100% PL, showing promise for bagasse in managing substrate pH where irrigation water has high pH and/or alkalinity. Substrate EC was initially reduced by blending SCB and, to a lesser extent, HF, but differences ceased to exist by the end of the experiment. Chlorophyll and blooms were abundant in all substrates and fertigation rates. Regardless of fertigation rate, 30% HF had the lowest growth index and shoot dry mass, and 30% SCB had the lowest root dry mass, although differences were not visually apparent. Foliar N concentrations were greatest in plants grown in the PL and SCB substrates and lowest in HF blends. Overall, growth and dry mass differences were minimal across substrate treatment and fertigation rate, and all plants were marketable with statistically similar shelf life. In conclusion, this research indicates the potential of using SCB as a substrate amendment for short-term crop systems in a similar manner as wood fiber.
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蔗渣是快速生产骨精的有效无土基质改良剂
许多温室种植者依靠泥炭基无土基质在相对较短的时间内生产可销售的作物。泥炭基基材供应商经常加入额外的有机材料,如木纤维,以扩大泥炭供应。鉴于木质基基材的相对成功,对其他纤维材料如甘蔗渣的兴趣日益增长,可能为基材加工者提供类似的好处。本研究的目的是评估短期花卉作物骨ospermum ' Bright Lights Purple '在市售的泥炭基基质(PL)中的基质特性和生产力,该基质已用市售的木纤维[hydrafber (HF)]或陈年甘蔗甘蔗渣纤维(SCB)进行了改性。因此,开发了由15%或30% HF或SCB修饰的PL组成的底物。植株每周分别以100ppm、200ppm或300ppm氮的速率施肥。评估作物生长和肥力动态。在30%甘蔗渣混合物中,基质收缩最大,但在2个月的作物周期中影响最小。在9周的生长期内,15%和30%的SCB和HF的掺入对pH值产生了轻微的变化,与100% PL相比,HF普遍提高pH值,SCB普遍降低pH值,这表明甘蔗渣在灌溉水pH值和/或碱度较高的情况下管理基质pH值有希望。通过混合SCB和较小程度的HF,衬底EC最初降低,但在实验结束时差异不复存在。叶绿素和花在所有基质和施肥条件下都很丰富。在不考虑施肥的情况下,30% HF的生长指数和地上部干质量最低,30% SCB的根干质量最低,但在视觉上差异不明显。在PL和SCB基质中生长的植株叶片氮浓度最高,在HF混合物中最低。总体而言,不同基质处理和施肥水平的植物生长和干质量差异最小,所有植物都可以销售,货架期统计上相似。总之,这项研究表明,利用SCB作为短期作物系统的基材改良剂的潜力与木纤维类似。
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来源期刊
Hortscience
Hortscience 农林科学-园艺
CiteScore
3.00
自引率
10.50%
发文量
224
审稿时长
3 months
期刊介绍: HortScience publishes horticultural information of interest to a broad array of horticulturists. Its goals are to apprise horticultural scientists and others interested in horticulture of scientific and industry developments and of significant research, education, or extension findings or methods.
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