可持续农业中的磷酸盐溶解真菌:释放真菌生物肥料促进植物生长的潜力。

IF 2.4 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Folia microbiologica Pub Date : 2024-08-01 Epub Date: 2024-06-27 DOI:10.1007/s12223-024-01181-0
Shih-Feng Fu, Vignesh Kumar Balasubramanian, Chih-Ling Chen, Thuy Trang Tran, Jothi Basu Muthuramalingam, Jui-Yu Chou
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引用次数: 0

摘要

磷溶解真菌(PSF)是一种有益微生物,通过增加土壤中的磷(P)供应量,在植物生长中发挥着关键作用。虽然磷是植物所必需的养分,但由于其结合成不溶解的形式,植物往往无法获得。PSF 可通过多种机制有效促进结合磷的释放。许多真菌物种都具有溶解各种磷酸盐化合物的能力。常用的 PSF 包括青霉、曲霉、根霉、镰刀菌、毛霉和硬菌。此外,酵母菌(如酿酒酵母)也有可能被用作 PSF。PSF 分泌的有机酸能螯合磷酸盐离子,从而提高磷酸盐在土壤中的溶解度。此外,PSF 还能利用磷酸酶、植酸酶和膦酸酶等酶来分解土壤中的有机磷化合物。此外,PSF 还能与其他土壤微生物(包括固氮菌和丛枝菌根真菌)相互作用,产生协同效应,进一步促进植物生长和养分吸收。与化学肥料相比,利用 PSF 作为生物肥料具有诸多优势,包括环境友好、成本效益高和肥料利用效率更高。此外,在具有高磷酸盐吸附性的挑战性环境中,PSF 也能证明是有益的。因此,本综述是一项最新研究,旨在拓宽人们对 PSF 及其在磷增溶方面潜在应用的了解。本综述还重点探讨了 PSF 的多样性、增溶机制、PSF 在土壤微生物组中的生态作用以及对可持续农业的益处。通过深入研究 PSF 的生态作用及其作为生物肥料的潜力,本研究有助于加深对可持续农业实践的理解,并应对缺磷环境中的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The phosphate-solubilising fungi in sustainable agriculture: unleashing the potential of fungal biofertilisers for plant growth.

The phosphate-solubilising fungi in sustainable agriculture: unleashing the potential of fungal biofertilisers for plant growth.

Phosphate-solubilising fungi (PSF) are beneficial microorganisms that play a pivotal role in plant growth by increasing the availability of phosphorus (P) in soil. Although phosphorus is an essential nutrient for plants, it often becomes inaccessible as it binds into insoluble forms. PSF effectively facilitate the release of this bound phosphorus through diverse mechanisms. Numerous fungal species demonstrate the ability to solubilise various types of phosphate compounds. Among the commonly researched PSF are Penicillium, Aspergillus, Rhizopus, Fusarium, Trichoderma, and Sclerotium. Moreover, yeasts such as Saccharomyces cerevisiae can potentially be leveraged as PSF. PSF secrete organic acids that chelate phosphate ions, thereby increasing their solubility in the soil. Moreover, PSF contribute to the decomposition of organic phosphorus compounds in soil by employing enzymes such as phosphatases, phytases, and phosphonatases. Furthermore, PSF can interact with other soil microorganisms, including nitrogen-fixing bacteria and arbuscular mycorrhizal fungi (AM-fungi), fostering synergistic effects that further enhance plant growth and nutrient absorption. The utilisation of PSF as biofertilisers offers numerous advantages over chemical fertilisers, including environmental friendliness, cost-effectiveness, and enhanced fertiliser utilisation efficiency. Furthermore, PSF can prove beneficial in challenging environments characterised by high phosphate sorption. Hence, this review serves as an updated study aimed at broadening the understanding of PSF and its potential applications in P solubilisation. This review also focuses on the diversity of PSF, the mechanisms underlying solubilisation, ecological roles of PSF in soil microbiome, and the benefits of sustainable agriculture. By delving into the ecological roles of PSF and their potential as biofertilisers, this study contributes to a deeper understanding of sustainable agriculture practices and addresses challenges in phosphate-scarce environments.

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来源期刊
Folia microbiologica
Folia microbiologica 工程技术-生物工程与应用微生物
CiteScore
5.80
自引率
0.00%
发文量
82
审稿时长
6-12 weeks
期刊介绍: Unlike journals which specialize ever more narrowly, Folia Microbiologica (FM) takes an open approach that spans general, soil, medical and industrial microbiology, plus some branches of immunology. This English-language journal publishes original papers, reviews and mini-reviews, short communications and book reviews. The coverage includes cutting-edge methods and promising new topics, as well as studies using established methods that exhibit promise in practical applications such as medicine, animal husbandry and more. The coverage of FM is expanding beyond Central and Eastern Europe, with a growing proportion of its contents contributed by international authors.
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