Institute of Agrophysics, Polish Academy of Sciences, Doświadczalna 4, 20-290 Lublin, Poland.
Dr. Berry Innowacje i Tradycja, Juraszowa 73, 33-386 Podegrodzie, Poland.
Food Chem. 2025 Jan 1;462:140943. doi: 10.1016/j.foodchem.2024.140943. Epub 2024 Aug 20.
Application of microbial-based biopreparations as a pre-harvest strategy offers a method to obtain sustainable agricultural practices and could be an important approach for advancing food science, promoting sustainability, and meeting global food market demands. The impact of a bacterial-fungal biopreparation mixture on soil-plant-microbe interactions, fruit chemical composition and yield of 7 raspberry clones was investigated by examining the structural and functional profiles of microbial communities within leaves, fruits, and soil. Biopreparation addition caused the enhancement of the microbiological utilization of specific compounds, such as d-mannitol, relevant in plant-pathogen interactions and overall plant health. The biopreparation treatment positively affected the nitrogen availability in soil (9-160%). The analysis of plant stress marker enzymes combined with the evaluation of fruit quality and chemical properties highlight changes inducted by the pre-harvest biopreparation application. Chemical analyses highlight biopreparations' role in soil and fruit quality improvement, promoting sustainable agriculture. This effect was dependent on tested clones, showing increase of soluble solid content in fruits, concentration of polyphenols or the sensory quality of the fruits. The results of the next-generation sequencing indicated increase in the effective number of bacterial species after biopreparation treatment. The network analysis showed stimulating effect of biopreparation on microbial communities by enhancing microbial interactions (increasing the number of network edges up to 260%) of and affecting the proportions of mutual relationships between both bacteria and fungi. These findings show the potential of microbial-based biopreparation in enhancing raspberry production whilst promoting sustainable practices and maintaining environmental homeostasis and giving inshght in holistic understanding of microbial-based approaches for advancing food science monitoring.
应用基于微生物的生物制剂作为收获前策略提供了一种获得可持续农业实践的方法,并且可能是推进食品科学、促进可持续性和满足全球粮食市场需求的重要方法。通过检查叶片、果实和土壤中微生物群落的结构和功能谱,研究了细菌-真菌生物制剂混合物对土壤-植物-微生物相互作用、果实化学组成和 7 个覆盆子克隆产量的影响。生物制剂的添加导致了对特定化合物(如与植物-病原体相互作用和整体植物健康相关的 d-甘露醇)的微生物利用的增强。生物制剂处理对土壤中氮的有效性产生了积极影响(9-160%)。植物应激标记酶的分析与果实质量和化学性质的评估相结合,突出了收获前生物制剂应用诱导的变化。化学分析突出了生物制剂在改善土壤和果实质量方面的作用,促进了可持续农业。这种效果取决于测试的克隆,显示出果实中可溶性固形物含量、多酚浓度或果实感官质量的增加。下一代测序的结果表明,生物制剂处理后有效细菌种类的数量增加。网络分析表明,生物制剂通过增强微生物相互作用(将网络边缘的数量增加到 260%)和影响细菌和真菌之间相互关系的比例,对微生物群落产生了刺激作用。这些发现表明,基于微生物的生物制剂在提高覆盆子产量的同时,具有促进可持续实践和维持环境内稳态的潜力,并为全面了解基于微生物的方法在推进食品科学监测方面提供了深入的见解。