Mwampashi Lenganji Lackson, Magubika Aneth Japhet, Ringo Job Frank, Theonest Dickson J, Tryphone George Muhamba, Chilagane Luseko Amos, Nassary Eliakira Kisetu
Department of Crop Science and Horticulture, College of Agriculture, Sokoine University of Agriculture, Morogoro, Tanzania.
Department of Soil and Geological Sciences, College of Agriculture, Sokoine University of Agriculture, Morogoro, Tanzania.
Front Microbiol. 2024 Nov 1;15:1491861. doi: 10.3389/fmicb.2024.1491861. eCollection 2024.
This systematic review examines the global agricultural relevance and practical environmental implications of arbuscular mycorrhizal fungi (AMF) within the phylum Glomeromycota. Following PRISMA guidelines, ensuring a comprehensive and unbiased literature review, a literature search was conducted, focusing on the functional roles of AMF in enhancing crop productivity, nutrient uptake, and soil health. Key findings reveal that AMF contribute significantly to sustainable agriculture by reducing the need for chemical fertilizers and increasing plant resilience to environmental stressors like drought, salinity, or pest resistance. The review highlights the importance of AMF in forming symbiotic relationships with plants, which enhance nutrient absorption and improve soil structure, showcasing long-term benefits such as reduced erosion or improved water retention. However, the current literature lacks in-depth exploration of the taxonomy and evolutionary aspects of AMF, as well as the specific functional roles they play in different agricultural contexts, e.g., understanding evolution could enhance strain selection for specific crops. This review identifies several urgent research gaps, including a need for a more refined understanding of AMF community dynamics under varying land management practices. For example, there are gaps in and a critical evaluation of advanced molecular techniques. Such techniques are essential for studying these interactions. Addressing these gaps will enhance the integration of AMF into sustainable agricultural systems and improve ecosystem management practices across different geographical regions. Future research should prioritize developing precise molecular imaging techniques and optimizing AMF applications for different crops and soil types to maximize their ecological and agricultural benefits. This could be practical through interdisciplinary collaboration (e.g., involving molecular biologists, agronomists, etc.). In conclusion, this review advances the practical application of AMF in agriculture and its contribution to biodiversity conservation in agroecosystems. Integrating these findings into policy frameworks could encourage sustainable farming practices, promote the adoption of AMF inoculants, and foster incentives for environmentally friendly land management strategies.
本系统综述探讨了球囊菌门内丛枝菌根真菌(AMF)在全球农业中的相关性及其实际环境影响。按照PRISMA指南进行文献检索,以确保全面且无偏倚的文献综述,检索重点为AMF在提高作物生产力、养分吸收和土壤健康方面的功能作用。主要研究结果表明,AMF通过减少对化肥的需求以及提高植物对干旱、盐碱化或抗虫害等环境胁迫的抵御能力,对可持续农业做出了重大贡献。该综述强调了AMF与植物形成共生关系的重要性,这种关系可增强养分吸收并改善土壤结构,展现出诸如减少土壤侵蚀或提高保水能力等长期效益。然而,当前文献缺乏对AMF分类学和进化方面的深入探索,以及它们在不同农业环境中所起的具体功能作用,例如了解进化情况有助于为特定作物选择菌株。本综述确定了几个亟待填补的研究空白,包括需要更深入地了解不同土地管理方式下AMF群落动态。例如,先进分子技术方面存在差距且缺乏批判性评估。此类技术对于研究这些相互作用至关重要。填补这些空白将促进AMF融入可持续农业系统,并改善不同地理区域的生态系统管理实践。未来研究应优先开发精确的分子成像技术,并针对不同作物和土壤类型优化AMF的应用,以最大限度地发挥其生态和农业效益。通过跨学科合作(如分子生物学家、农学家等参与)这是可行的。总之,本综述推动了AMF在农业中的实际应用及其对农业生态系统生物多样性保护的贡献。将这些研究结果纳入政策框架可鼓励可持续农业实践,促进AMF接种剂的采用,并为环境友好型土地管理策略提供激励措施。