Institute of Biological Sciences, Faculty of Science, University of Malaya, 50603, Kuala Lumpur, Malaysia.
Centre for Research in Development, Social and Environment (SEEDS) Faculty of Social Sciences and Humanities, Universiti Kebangsaan Malaysia, 43600, UKM, Bangi, Selangor Darul Ehsan, Malaysia.
J Environ Manage. 2024 Jan 1;349:119445. doi: 10.1016/j.jenvman.2023.119445. Epub 2023 Oct 27.
Biofertilizers encompass microorganisms that can be applied to plants, subsequently establishing themselves within the plant's rhizosphere or internal structures. This colonization stimulates plant development by enhancing nutrient absorption from the host. While there is growing literature documenting the applications of microalgae-based and bacterial-based biofertilizers, the research focusing on the effectiveness of consortia formed by these microorganisms as short-term plant biofertilizers is notably insufficient. This study seeks to assess the effectiveness of microalgae-bacterial biofertilizers in promoting plant growth and their potential contribution to the circular economy. The review sheds light on the impact of microalgae-bacterial biofertilizers on plant growth parameters, delving into factors influencing their efficiency, microalgae-bacteria interactions, and effects on soil health. The insights from this review are poised to offer valuable guidance to stakeholders in agriculture, including farmers, environmental technologists, and businesses. These insights will aid in the development and investment in more efficient and sustainable methods for enhancing crop yields, aligning with the Sustainable Development Goals and principles of the circular economy.
生物肥料包括可应用于植物的微生物,这些微生物随后在植物的根际或内部结构中定居。这种定植通过增强宿主对养分的吸收来刺激植物的生长。虽然越来越多的文献记录了基于微藻和细菌的生物肥料的应用,但关于这些微生物形成的联合体作为短期植物生物肥料的有效性的研究明显不足。本研究旨在评估微藻-细菌生物肥料在促进植物生长方面的有效性及其对循环经济的潜在贡献。该综述揭示了微藻-细菌生物肥料对植物生长参数的影响,深入探讨了影响其效率的因素、微藻-细菌相互作用以及对土壤健康的影响。本综述的见解有望为农业领域的利益相关者(包括农民、环境技术人员和企业)提供有价值的指导。这些见解将有助于开发和投资更高效、更可持续的方法来提高作物产量,与可持续发展目标和循环经济原则保持一致。