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在蔬菜生长的各个阶段通过向土壤喷洒[具体提取物1]和[具体提取物2]提取物促进其生长及产生次生代谢产物

Growth Promotion and Secondary Metabolites of Vegetables by Spraying Soil with and Extracts at Various Stages of Growth.

作者信息

Ei Ei, Park Hyun Hwa, Kuk Yong In

机构信息

Department of Oriental Medicine Resources, Sunchon National University, Suncheon 57922, Republic of Korea.

出版信息

Plants (Basel). 2025 Jan 16;14(2):237. doi: 10.3390/plants14020237.

Abstract

There is a growing need for sustainable, efficient methods to promote plant growth and protect crops, with plant extracts offering natural, multi-component solutions. Based on previous observations, , , and were selected from 17 water extracts to investigate how the application times of soil sprays affect the antioxidant enzymes and secondary metabolites in fruity and leafy vegetables at different growth stages. From 1 week after sowing (WAS) to 4 WAS, all applications increased the shoot fresh weight by 42-69% in cucumbers, 40-64% in tomatoes, 46-65% in kale and 42-63% in lettuce. These applications also increased the photosynthesis, flavonoids and antioxidative enzymes (ascorbate peroxide (APOD) and guaiacol peroxidase (GPOD)), which provided the plants with a balanced supply of nutrients essential for growth. In the real world, these results show that the use of natural extracts ( and ) can be a sustainable, eco-friendly alternative to synthetic fertilizers and pesticides, helping to improve crop yields and metabolism without harming the environment. This approach could reduce the reliance on chemical inputs and promote more sustainable agricultural practices, especially in controlled environments, like greenhouses, where crops like cucumbers and kale are grown.

摘要

对促进植物生长和保护作物的可持续、高效方法的需求日益增长,植物提取物提供了天然的多成分解决方案。基于先前的观察,从17种水提取物中选择了[提取物名称1]、[提取物名称2]、[提取物名称3]和[提取物名称4],以研究土壤喷雾的施用次数如何影响不同生长阶段果菜类和叶菜类蔬菜中的抗氧化酶和次生代谢产物。从播种后1周(WAS)到4WAS,所有处理使黄瓜地上部鲜重增加42 - 69%,番茄增加40 - 64%,羽衣甘蓝增加46 - 65%,生菜增加42 - 63%。这些处理还增加了光合作用、类黄酮和抗氧化酶(抗坏血酸过氧化物酶(APOD)和愈创木酚过氧化物酶(GPOD)),为植物提供了生长所需的均衡营养供应。在现实世界中,这些结果表明,使用天然提取物([提取物名称1]和[提取物名称2])可以成为合成肥料和农药的可持续、环保替代品,有助于提高作物产量和新陈代谢,同时不损害环境。这种方法可以减少对化学投入物的依赖,并促进更可持续的农业实践,特别是在像温室这样的可控环境中,黄瓜和羽衣甘蓝等作物在其中种植。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe62/11768731/816e798edf41/plants-14-00237-g001.jpg

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