Department of Engineering and Technology of Chemical Processes, Faculty of Chemistry, Wroclaw University Science and Technology, 50-373 Wroclaw, Poland.
Int J Mol Sci. 2022 Oct 27;23(21):13049. doi: 10.3390/ijms232113049.
The plant-microbe holobiont has garnered considerable attention in recent years, highlighting its importance as an ecological unit. Similarly, manipulation of the microbial entities involved in the rhizospheric microbiome for sustainable agriculture has also been in the limelight, generating several commercial bioformulations to enhance crop yield and pest resistance. These bioformulations were termed biofertilizers, with the consistent existence and evolution of different types. However, an emerging area of interest has recently focused on the application of these microorganisms for waste valorization and the production of "bio-organic" fertilizers as a result. In this study, we performed a bibliometric analysis and systematic review of the literature retrieved from Scopus and Web of Science to determine the type of microbial inoculants used for the bioconversion of waste into "bio-organic" fertilizers. The , species, cyanobacterial biomass species, sp. and sp. were identified to be consistently used for the recovery of nutrients and bioconversion of wastes used for the promotion of plant growth. Cyanobacterial strains were used predominantly for wastewater treatment, while and were used on a wide variety of wastes such as sawdust, agricultural waste, poultry bone meal, crustacean shell waste, food waste, and wastewater treatment plant (WWTP) sewage sludge ash. Several bioconversion strategies were observed such as submerged fermentation, solid-state fermentation, aerobic composting, granulation with microbiological activation, and biodegradation. Diverse groups of microorganisms (bacteria and fungi) with different enzymatic functionalities such as chitinolysis, lignocellulolytic, and proteolysis, in addition to their plant growth promoting properties being explored as a consortium for application as an inoculum waste bioconversion to fertilizers. Combining the efficiency of such functional and compatible microbial species for efficient bioconversion as well as higher plant growth and crop yield is an enticing opportunity for "bio-organic" fertilizer research.
近年来,植物-微生物整体备受关注,凸显了其作为生态单位的重要性。同样,对根际微生物组中涉及的微生物实体进行操纵,以实现可持续农业,也引起了广泛关注,产生了几种商业生物制剂来提高作物产量和抗虫害能力。这些生物制剂被称为生物肥料,其存在和演变形式多种多样。然而,最近一个新兴的研究领域关注的是将这些微生物应用于废物增值,并因此生产“生物有机”肥料。在这项研究中,我们对 Scopus 和 Web of Science 中检索到的文献进行了文献计量分析和系统综述,以确定用于将废物转化为“生物有机”肥料的微生物接种剂的类型。发现 、 、蓝细菌生物量物种、 和 被一致用于回收营养物质和转化废物,以促进植物生长。蓝细菌菌株主要用于处理废水,而 和 则广泛用于木屑、农业废物、家禽骨粉、甲壳类废物、食品废物和污水处理厂(WWTP)污泥灰等各种废物。观察到几种生物转化策略,如浸没发酵、固态发酵、需氧堆肥、微生物激活造粒和生物降解。不同功能的微生物(细菌和真菌)群体具有不同的酶功能,如几丁质分解、木质纤维素分解和蛋白水解,以及它们的植物生长促进特性,作为一种混合物被探索作为接种剂应用于废物生物转化为肥料。结合这些功能和兼容的微生物物种的效率,以及更高的植物生长和作物产量,为“生物有机”肥料研究提供了一个诱人的机会。
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