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生物聚合纳米材料的实施减少盐度对番茄数量和质量的负面影响。

Implementation of Biopolymeric Nanomaterials to Reduce the Negative Impacts of Salinity on Tomato Quantity and Quality.

机构信息

Soil, Water and Environment Research Institute, ARC, Giza 12619, Egypt.

Department of Biological Sciences, Faculty of Science, King Abdulaziz University (KAU), Jeddah 21589, Saudi Arabia.

出版信息

Molecules. 2023 Feb 7;28(4):1594. doi: 10.3390/molecules28041594.

Abstract

Sustainable waste reduction strategies and innovative waste reduction concepts, as well as their application in the creation of compounds and products with added value, can benefit the economy while reducing environmental pressures. This research aimed to use biopolymeric nanomaterials to reduce the negative effects of salinity on tomato yield and quality. Three types of biopolymers (cellulose, pectin, and starch) were synthesized and characterized using natural materials such as rice straw, orange peel, and potato peel. The polymer's ability to retain sodium ions was investigated. A greenhouse experiment was conducted to assess the potential of natural polymers (cellulose, starch, and pectin individually or in combination) to reduce the salinity side effects on tomato plants ( L.) cultivar (Super Strain B). Tomato seeds were germinated on soil bits for 20 days before planting five seedlings in each pot (20 cm diameter) with three replicates and filling each pot with sandy loam soil, with or without natural polymers at a rate of 2 g/Kg. The results revealed that all the polymers utilized had a superlative capability to hold sodium ions for both soluble and exchanged sodium. The use of various natural polymer hydrogels increased the number and fresh weight of tomato fruits. Data showed that using biopolymers hydrogels reduced salinity stress by rising the content of phenol, flavonoid, and antioxidant enzymes such as catalase and peroxidase. The use of natural biopolymers significantly improved total soluble solids, pH, and juice substance. Implementing biopolymeric materials could reduce environmental pressures while increasing farm income. Innovative waste reduction strategies, such as the creation of value-added products, will benefit the economy, and this work is a good start in that direction.

摘要

可持续的废物减排策略和创新的废物减排理念,以及它们在具有附加值的化合物和产品创造中的应用,可以在减轻环境压力的同时造福经济。本研究旨在利用生物聚合纳米材料来减少盐分对番茄产量和品质的负面影响。使用天然材料,如稻草、橙皮和土豆皮,合成并表征了三种类型的生物聚合物(纤维素、果胶和淀粉)。研究了聚合物保留钠离子的能力。在温室中进行了实验,评估了天然聚合物(纤维素、淀粉和果胶单独或组合)在减少盐分对番茄植物( L.)品种(超级菌株 B)副作用方面的潜力。番茄种子在土壤小块上发芽 20 天后,在每个 20 厘米直径的花盆中种植 5 株幼苗,并在每个花盆中填充沙壤土,或在沙壤土中添加 2 克/千克的天然聚合物,重复三次。结果表明,所有使用的聚合物都具有超强的能力,可以保持可溶性和交换性钠离子。使用各种天然聚合物水凝胶增加了番茄果实的数量和鲜重。数据显示,使用生物聚合物水凝胶通过提高酚类、类黄酮和抗氧化酶(如过氧化氢酶和过氧化物酶)的含量来减轻盐胁迫。使用天然生物聚合物显著提高了总可溶性固体、pH 值和果汁物质。采用生物聚合材料可以减轻环境压力,同时增加农场收入。创新的废物减排策略,如创造附加值产品,将有益于经济,而这项工作是朝着这个方向迈出的良好开端。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f51/9962965/ac9c09cf4b8e/molecules-28-01594-g001.jpg

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