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在石灰性土壤中种植洋蓟时通过腐殖质和蚯蚓堆肥提高微量营养素有效性:一项为期两年的田间研究的见解

Enhancing Micronutrient Availability Through Humic Substances and Vermicompost While Growing Artichoke Plants in Calcareous Soil: Insights from a Two-Year Field Study.

作者信息

Hafez Mohamed, Zhang Zhao, Younis Mahmoud, Abdelhamid Mahmoud A, Rashad Mohamed

机构信息

Land and Water Technologies Department, Arid Lands Cultivation Research Institute (ALCRI), City of Scientific Research and Technological Applications (SRTA-City), New Borg El-Arab 21934, Egypt.

Key Laboratory of Agricultural Information Acquisition Technology, Ministry of Agriculture and Rural Affairs, China Agricultural University, Beijing 100083, China.

出版信息

Plants (Basel). 2025 Apr 16;14(8):1224. doi: 10.3390/plants14081224.

Abstract

Calcareous soil poses challenges for crop production due to the limited availability of micronutrients in insoluble forms. This study evaluated various organic and biological treatments for managing deficiencies in iron, zinc, and manganese in artichoke ( L.) grown in calcareous soil over two seasons (2023 and 2024). A randomized complete block design (RCBD) was employed, with 24 plots (5 × 8 m each) receiving the following five treatments: mineral fertilizer, humic substances, ALCRI-anti chlorosis, ALCRI-vermicompost, and ALCRI-bio-help. Each treatment was replicated three times. In the 2023 season, significant increases in micronutrient levels were observed following the application of the organic and biological treatments, particularly ALCRI-vermicompost and humic substances. Compared to the control group, the iron content (Fe) increased by 57.1%, reaching 715.6%. Zinc (Zn) rose by 66.1% to 686.4%, while manganese (Mn) and copper (Cu) increased by 56.9% to 685.2% and 44.9% to 673.4%, respectively. These positive trends continued into the 2024 season, with Fe showing even greater gains of 103.4%, peaking at 824.0% in the plots treated with the ALCRI-vermicompost and humic substances. Zn and Mn displayed more modest increases of 36.9% and 58.0%, while Cu exhibited a remarkable rise of 50.7%, reaching 861.2%, particularly for the ALCRI-anti chlorosis treatments. The results indicate that the application of vermicompost fertilizer, alone or in combination with humic substances, significantly enhanced the soil structure, as confirmed by the SEM examination, which revealed increased porosity and improved aggregation. These consistent improvements over two seasons strongly support the effectiveness of organic and biological treatments in enriching soil with essential micronutrients.

摘要

石灰性土壤由于微量营养元素以不溶性形式存在,有效性有限,给作物生产带来了挑战。本研究评估了多种有机和生物处理方法,以解决石灰性土壤中种植的洋蓟(L.)铁、锌和锰缺乏的问题,试验为期两个季节(2023年和2024年)。采用随机完全区组设计(RCBD),24个小区(每个小区5×8米)接受以下五种处理:矿物肥料、腐殖质、ALCRI-抗黄化剂、ALCRI-蚯蚓堆肥和ALCRI-生物助剂。每个处理重复三次。在2023年季节,施用有机和生物处理后,微量营养元素水平显著增加,特别是ALCRI-蚯蚓堆肥和腐殖质。与对照组相比,铁含量(Fe)增加了57.1%,达到715.6%。锌(Zn)增加了66.1%,达到686.4%,而锰(Mn)和铜(Cu)分别增加了56.9%,达到685.2%,以及44.9%,达到673.4%。这些积极趋势持续到2024年季节,铁的增幅更大,达到103.4%,在使用ALCRI-蚯蚓堆肥和腐殖质处理的小区中达到峰值824.0%。锌和锰的增幅较小,分别为36.9%和58.0%,而铜的增幅显著,达到50.7%,达到861.2%,特别是在ALCRI-抗黄化剂处理中。结果表明,单独施用蚯蚓堆肥或与腐殖质结合施用,显著改善了土壤结构,扫描电子显微镜(SEM)检查证实了这一点,显示孔隙率增加,团聚性改善。两个季节以来的这些持续改善有力地支持了有机和生物处理在向土壤中添加必需微量营养元素方面的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeae/12030382/a05b1995087f/plants-14-01224-g001.jpg

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