Nazari Mateus Torres, Machado Bruna Strieder, Marchezi Giovana, Crestani Larissa, Ferrari Valdecir, Colla Luciane Maria, Piccin Jeferson Steffanello
Graduate Program in Civil and Environmental Engineering, University of Passo Fundo, Campus I, L1 Building. BR 285, Bairro São José, Passo Fundo, RS CEP: 99052-900 - Zip Code 611 Brazil.
Faculty of Engineering and Architecture, University of Passo Fundo, BR 285, Passo Fundo, RS Brazil.
3 Biotech. 2022 Sep;12(9):232. doi: 10.1007/s13205-022-03307-y. Epub 2022 Aug 19.
In this article, we reviewed the international scientific production of the last years on actinomycetes isolated from soil aiming to report recent advances in using these microorganisms for different applications. The most promising genera, isolation conditions and procedures, pH, temperature, and NaCl tolerance of these bacteria were reported. Based on the content analysis of the articles, most studies have focused on the isolation and taxonomic description of new species of actinomycetes. Regarding the applications, the antimicrobial potential (antibacterial and antifungal) prevailed among the articles, followed by the production of enzymes (cellulases and chitinases, etc.), agricultural uses (plant growth promotion and phytopathogen control), bioremediation (organic and inorganic contaminants), among others. Furthermore, a wide range of growth capacity was verified, including temperatures from 4 to 60 °C (optimum: 28 °C), pH from 3 to 13 (optimum: 7), and NaCl tolerance up to 32% (optimum: 0-1%), which evidence a great tolerance for actinomycetes cultivation. was the genus with the highest incidence among the soil actinomycetes and the most exploited for different uses. Besides, the interest in isolating actinomycetes from soils in extreme environments (Antarctica and deserts, for example) is growing to explore the adaptive capacities of new strains and the secondary metabolites produced by these microorganisms for different industrial interests, especially for pharmaceutical, food, agricultural, and environmental purposes.
在本文中,我们回顾了近年来从土壤中分离出的放线菌的国际科研成果,旨在报告在将这些微生物用于不同应用方面的最新进展。文中报道了这些细菌最具潜力的属、分离条件和程序、pH值、温度以及耐盐性。基于文章的内容分析,大多数研究集中在放线菌新物种的分离和分类描述上。在应用方面,抗菌潜力(抗细菌和抗真菌)在文章中占主导地位,其次是酶(纤维素酶和几丁质酶等)的产生、农业用途(促进植物生长和控制植物病原体)、生物修复(有机和无机污染物)等。此外,还验证了广泛的生长能力,包括4至60°C的温度范围(最适温度:28°C)、3至13的pH值范围(最适pH值:7)以及高达32%的耐盐性(最适盐度:0-1%),这证明放线菌对培养具有很强的耐受性。是土壤放线菌中发生率最高且被用于不同用途最多的属。此外,从极端环境(例如南极洲和沙漠)的土壤中分离放线菌以探索新菌株的适应能力以及这些微生物产生的次生代谢产物用于不同工业用途(特别是制药、食品、农业和环境目的)的兴趣正在增加。