Suppr超能文献

泥炭的部分替代:对基质物理水文特性和鼠尾草生长的影响

Partial Replacement of Peat: Effects on Substrate Physico-Hydrological Properties and Sage Growth.

作者信息

Sdao Anna Elisa, Cacini Sonia, Loconsole Danilo, Conversa Giulia, Cristiano Giuseppe, Elia Antonio, De Lucia Barbara

机构信息

Department of Soil, Plant and Food Sciences, University of Bari Aldo Moro, Via Amendola 165/A, 70126 Bari, Italy.

CREA Research Centre for Vegetables and Ornamental Crops, Council for Agricultural Research and Economics, Via dei Fiori 8, 51017 Pescia, Italy.

出版信息

Plants (Basel). 2025 Sep 7;14(17):2801. doi: 10.3390/plants14172801.

Abstract

The transformation of organic by-products derived from waste into value-added resources represents a promising strategy to advance circular economy principles and bolster environmental and agricultural sustainability, especially in soilless cultivation. This study evaluates the viability of three organic by-products-wood fiber (WF), coffee silverskin (CS), and brewer's spent grains (BSGs)-as partial peat replacements in horticultural substrates. Ten growing media formulations were assessed, incorporating increased doses (0-40% / as peat replacement-PR) of each alternative by-product. The effects on physical and hydraulic substrate properties, along with plant growth traits, were examined using two ornamental genotypes, 'Victoria' and 'Amistad'. To synthesize the multivariate growth data into a single, biologically meaningful metric, based on the first principal component, a Growth Index (GI), a PC1-derived index, was calculated, providing a powerful, unified metric to rank substrate efficacy. WF-based substrates exhibited increased porosity and diminished water retention, whereas media enriched with CS and BSG enhanced moisture availability, particularly at 20-40 PR. The bulk density was highest at PR40 for both WF and BSG treatments, and at PR20 in CS-based substrates. Electrical conductivity increased in CS and BSG treatments with rising PR levels. The results on the vegetative growth of ornamental sages have highlighted that differential PR rates are required depending on the specific organic by-product and plant genotype. In 'Victoria', GI indicates that a 20% replacement of peat with BSG provided the optimal conditions for holistic plant development; the lowest GI for WF substrates across nearly all peat replacement levels indicated that it was the most detrimental alternative for this cultivar. In 'Amistad', the analysis of the GI scores revealed that the CS20 and BSG20 of peat replacement yielded the highest overall growth, with GI scores significantly greater than those of the peat control. CS10 and BSG40 also showed high GI scores in 'Amistad'. WF10 had GI scores similar to those of the peat control. In general, the GI-based approach confirms that moderate inclusion of brewer's spent grain (BSG20) is a highly effective peat replacement for both genotypes. At the same time, coffee silverskin (CS) is particularly effective for the 'Amistad' genotype. This analysis underscores that optimal substrate formulation is not only dependent on the amendment type and rate but also critically on the plant genotype.

摘要

将源自废弃物的有机副产品转化为增值资源,是推进循环经济原则以及增强环境和农业可持续性的一项颇具前景的策略,尤其是在无土栽培中。本研究评估了三种有机副产品——木纤维(WF)、咖啡银皮(CS)和啤酒糟(BSG)——作为园艺基质中部分泥炭替代品的可行性。评估了十种栽培基质配方,其中每种替代副产品的用量增加(0 - 40% / 作为泥炭替代物 - PR)。使用两种观赏基因型‘Victoria’和‘Amistad’,研究了对基质物理和水力性质以及植物生长性状的影响。为了将多变量生长数据综合为一个单一的、具有生物学意义的指标,基于第一主成分计算了一个生长指数(GI),这是一个源自PC1的指数,它提供了一个强大的、统一的指标来对基质功效进行排名。基于木纤维的基质孔隙率增加且保水性降低,而富含咖啡银皮和啤酒糟的基质提高了水分有效性,特别是在20 - 40 PR时。对于木纤维和啤酒糟处理,在PR40时容重最高,而在基于咖啡银皮的基质中在PR20时容重最高。随着PR水平升高,咖啡银皮和啤酒糟处理的电导率增加。观赏鼠尾草营养生长的结果表明,根据特定的有机副产品和植物基因型,需要不同的PR率。在‘Victoria’中,GI表明用20%的啤酒糟替代泥炭为植株整体发育提供了最佳条件;在几乎所有泥炭替代水平下,木纤维基质的GI最低,这表明它对该品种是最不利的替代品。在‘Amistad’中,对GI得分的分析表明,用20%的咖啡银皮和啤酒糟替代泥炭产生了最高的整体生长,GI得分显著高于泥炭对照。在‘Amistad’中,CS10和BSG40也显示出较高的GI得分。WF10的GI得分与泥炭对照相似。总体而言,基于GI的方法证实,适度加入啤酒糟(BSG20)对两种基因型都是一种非常有效的泥炭替代品。同时,咖啡银皮对‘Amistad’基因型特别有效。该分析强调,最佳的基质配方不仅取决于改良剂类型和用量,还关键取决于植物基因型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e838/12431024/49ff09ccc176/plants-14-02801-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验