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新型 Mater-Bi 可生物降解草莓地膜(× 杜氏):对地膜持续时间、作物产量、果实品质和营养特性的影响

New Mater-Bi, Biodegradable Mulching Film for Strawberry ( × Duch.): Effects on Film Duration, Crop Yields, Qualitative, and Nutraceutical Traits of Fruits.

作者信息

Morra Luigi, Bilotto Maurizio, Mignoli Emiliana, Sicignano Mariarosaria, Magri Anna, Cice Danilo, Cozzolino Rosaria, Malorni Livia, Siano Francesco, Picariello Gianluca, Guerrini Sara, Petriccione Milena

机构信息

Council for Agricultural Research and Economics (CREA), Research Center for Cereal and Industrial Crops, 81100 Caserta, Italy.

Department of Environmental, Biological and Pharmaceutical Sciences and Technologies (DiSTABiF), University of Campania Luigi Vanvitelli, Via Vivaldi 43, 81100 Caserta, Italy.

出版信息

Plants (Basel). 2022 Jun 29;11(13):1726. doi: 10.3390/plants11131726.

Abstract

In the main strawberry areas of Southern Italy, cultivation is carried out by transplanting plants on raised beds (30-40 cm from ground level), mulched with black polyethylene (PE). This technique has becoming increasingly expensive due to the growing prices of plastic mulches, the cost to remove them at the end of crop cycle, and the difficulty to dispose of black, dirty plastic films. The main objective of this research was the replacement of PE mulch with a new biodegradable mulching film Mater-Bi-based (Novamont), characterized by an increased permanence in the field designed for long crop life. In 2021, two Mater-Bi-based, black, 18 μm thick mulching films were tested under tunnel: N5 as innovative film and N18 as commercial standard film. Black PE film, 50 μm thick was the control. Strawberry cultivars 'Sabrina' and 'Elide' were cropped on the three mulching films according to a split plot design with four replications. Harvests lasted from March to June 2021. Cvs Sabrina and Elide yielded around 40 t ha, while the mean effect of mulching films did not point out differences between the biodegradable mulches and PE. In 4 out of 12 harvests we analyzed samples of fruits to assess the influence of mulches on the contents of °Brix, polyphenols, antioxidant activity, ascorbic acid, flavonoids, and anthocyanins. On average, °Brix was clearly improved in fruits on PE compared to biodegradable films, while all the other qualitative traits resulted in being more dependent on the cultivars and times of sampling effects. Overall, biodegradable mulches are a viable alternative to PE mulch, and the innovative N5 film appeared promising for the enhancement of durability of soil coverage in a long-lasting cycle.

摘要

在意大利南部的主要草莓种植区,种植是通过将植株移栽到高出地面30 - 40厘米的苗床上进行的,苗床用黑色聚乙烯(PE)薄膜覆盖。由于塑料薄膜价格不断上涨、作物生长周期结束时移除薄膜的成本以及处理黑色脏塑料薄膜的困难,这种技术变得越来越昂贵。本研究的主要目的是用一种新型的基于 Mater - Bi(诺瓦蒙特公司)的可生物降解地膜取代PE地膜,其特点是在设计用于长作物生长周期的田间具有更长的耐久性。2021年,在隧道条件下测试了两种基于Mater - Bi的黑色、18微米厚的地膜:N5作为创新地膜,N18作为商业标准地膜。50微米厚的黑色PE膜为对照。根据裂区设计,将草莓品种“萨布丽娜”和“埃利德”种植在这三种地膜上,重复四次。收获期从2021年3月持续到6月。“萨布丽娜”和“埃利德”品种的产量约为40吨/公顷,而地膜的平均效果并未显示可生物降解地膜与PE地膜之间存在差异。在12次收获中的4次,我们分析了果实样本,以评估地膜对糖度、多酚、抗氧化活性、抗坏血酸、黄酮类化合物和花青素含量的影响。平均而言,与可生物降解地膜相比,PE地膜覆盖的果实糖度明显提高,而所有其他品质性状更多地取决于品种和采样时间的影响。总体而言,可生物降解地膜是PE地膜的可行替代品,创新的N5地膜在长期循环中增强土壤覆盖耐久性方面似乎很有前景。

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