Vassileva Maria, Malusà Eligio, Sas-Paszt Lidia, Trzcinski Pawel, Galvez Antonia, Flor-Peregrin Elena, Shilev Stefan, Canfora Loredana, Mocali Stefano, Vassilev Nikolay
Department of Chemical Engineering, University of Granada, C/Fuentenueva s/n, 18071 Granada, Spain.
The National Institute of Horticultural Research, 96-100 Skierniewice, Poland.
Microorganisms. 2021 Jun 9;9(6):1254. doi: 10.3390/microorganisms9061254.
The application of plant beneficial microorganisms has been widely accepted as an efficient alternative to chemical fertilizers and pesticides. Isolation and selection of efficient microorganisms, their characterization and testing in soil-plant systems are well studied. However, the production stage and formulation of the final products are not in the focus of the research, which affects the achievement of stable and consistent results in the field. Recent analysis of the field of plant beneficial microorganisms suggests a more integrated view on soil inoculants with a special emphasis on the inoculant production process, including fermentation, formulation, processes, and additives. This mini-review describes the different groups of fermentation processes and their characteristics, bearing in mind different factors, both nutritional and operational, which affect the biomass/spores yield and microbial metabolite activity. The characteristics of the final products of fermentation process optimization strategies determine further steps of development of the microbial inoculants. Submerged liquid and solid-state fermentation processes, fed-batch operations, immobilized cell systems, and production of arbuscular mycorrhiza are presented and their advantages and disadvantages are discussed. Recommendations for further development of the fermentation strategies for biofertilizer production are also considered.
植物有益微生物的应用已被广泛认可为一种替代化肥和农药的有效方法。高效微生物的分离与筛选、其特性表征以及在土壤 - 植物系统中的测试都得到了充分研究。然而,最终产品的生产阶段和配方并非研究重点,这影响了在田间获得稳定且一致的结果。近期对植物有益微生物领域的分析表明,对于土壤接种剂需要有更综合的观点,特别强调接种剂的生产过程,包括发酵、配方、工艺和添加剂。本综述描述了不同类型的发酵过程及其特点,同时考虑到影响生物量/孢子产量和微生物代谢物活性的营养和操作等不同因素。发酵过程优化策略的最终产品特性决定了微生物接种剂的进一步开发步骤。文中介绍了深层液体发酵和固态发酵过程、补料分批操作、固定化细胞系统以及丛枝菌根的生产,并讨论了它们的优缺点。还考虑了生物肥料生产发酵策略进一步发展的建议。