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植物促生长特性的筛选、 及 : 关于磷溶解、吲哚乙酸产生和铁载体合成的研究 。 (注:原文中两个逗号处内容缺失,影响完整准确理解和翻译)

Screening , , and for Plant-Growth-Promoting Traits: A Study on Phosphate Solubilization, IAA Production, and Siderophore Synthesis.

作者信息

Moropana Thabo J, Jansen Van Rensburg Elbert Lukas, Makulana Livhuwani, Phasha Nkateko N

机构信息

Department of Biochemistry, Microbiology and Biotechnology, University of Limpopo, Private Bag X1106, Sovenga 0727, South Africa.

出版信息

J Fungi (Basel). 2024 Nov 22;10(12):811. doi: 10.3390/jof10120811.

Abstract

The global rise in population has led to an increased demand for food production, necessitating the adoption of sustainable agricultural practices. Traditional methods often rely on synthetic chemicals that negatively impact both human health and the environment. This study aimed to screen soil fungal strains for plant-growth-promoting traits, specifically focusing on their ability to solubilize phosphates, produce indole-3-acetic acid (IAA), and synthesize siderophores. Fungal strains were identified using rDNA sequencing of the ITS regions, and their growth-promoting abilities were assessed in vitro. JKJ7, JKJ12, and JKJ18 exhibited varying degrees of phosphate solubilization, with JKJ12 solubilizing the highest amount of tricalcium phosphate (TCP), while JKJ7 was the most effective in solubilizing phytic acid calcium salt (PCS). In terms of IAA production, JKJ7 produced the highest auxin concentration (68.51 mg/L), followed by JKJ18 and JKJ12. Additionally, JKJ7 produced the highest amount of siderophores (83.7%), indicating its potential for improving iron uptake in plants. Principal Component Analysis (PCA) revealed distinct functional capabilities among the strains, particularly in phosphate solubilization and IAA production, suggesting their complementary use in consortium formulations. These results indicate that these fungal strains possess significant plant-growth-promoting traits and could be used as bioinoculants for sustainable agriculture, either as single strains or in combination.

摘要

全球人口增长导致对粮食生产的需求增加,这使得采用可持续农业做法成为必要。传统方法通常依赖合成化学品,这对人类健康和环境都有负面影响。本研究旨在筛选具有促进植物生长特性的土壤真菌菌株,特别关注它们溶解磷酸盐、产生吲哚 - 3 - 乙酸(IAA)和合成铁载体的能力。使用ITS区域的rDNA测序鉴定真菌菌株,并在体外评估它们的促生长能力。JKJ7、JKJ12和JKJ18表现出不同程度的磷酸盐溶解能力,其中JKJ12溶解的磷酸三钙(TCP)量最高,而JKJ7在溶解植酸钙盐(PCS)方面最有效。在IAA产生方面,JKJ7产生的生长素浓度最高(68.51毫克/升),其次是JKJ18和JKJ12。此外,JKJ7产生的铁载体量最高(83.7%),表明其具有改善植物铁吸收的潜力。主成分分析(PCA)揭示了菌株之间不同的功能能力,特别是在磷酸盐溶解和IAA产生方面,表明它们在联合制剂中的互补用途。这些结果表明,这些真菌菌株具有显著的促进植物生长特性,可作为可持续农业的生物接种剂单独使用或组合使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b477/11677876/6b4b2140ed5f/jof-10-00811-g001.jpg

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