Graduate Program in Chemical Engineering, Federal University of São Carlos, Rod. Washington Luiz, km 235, São Carlos, SP, Brazil.
Embrapa Instrumentação, Rua XV de Novembro 1452, São Carlos, SP, Brazil.
Biotechnol Prog. 2022 May;38(3):e3242. doi: 10.1002/btpr.3242. Epub 2022 Feb 23.
The use of phosphate rocks as low-solubility phosphorus fertilizers has been promoted to reduce the environmental impacts of agriculture, but adequate nutrient uptake by plants depends on solubilization of the rock, driven by soil microorganisms. Here, investigation was made of the microbial solubilization of low-solubility phosphate rocks, together with simultaneous bioprotective action involving the biocontrol of microorganisms. The aim was to enhance function and value by delivering two effects using a single bio-based product, in accordance with the concept of a "bioreactor-in-a-granule" system. A composite structure was developed, based on a starch matrix, comprising a combination of Trichoderma asperelloides, as a biocontrol agent, and Aspergillus niger, as an acidulant. A significant increase of up to 150% in P solubilization was achieved, indicating the positive effect of the microorganism-composite interaction. In vitro assays showed that the ability of T. asperelloides to inhibit Fusarium oxysporum mycelial growth was maintained in the presence of A. niger. Moreover, the estimated cost of the composite granule (0.35 US$/kg of product on a dry basis) revealed competitive. The results indicated that the association of T. asperelloides and A. niger is an effective way to increase nutrient availability and to inhibit plant pathogens, opening up possibilities for the design of multifunctional bio-based fertilizer composites.
将磷矿作为低溶解性磷肥的使用已经得到了推广,以减少农业对环境的影响,但植物对养分的充分吸收取决于磷矿在土壤微生物作用下的溶解。因此,本研究调查了低溶解性磷矿的微生物溶解作用,以及同时涉及微生物生物防治的生物保护作用。目的是通过使用单一生物基产品来实现两种效果,以符合“颗粒内生物反应器”系统的概念,从而提高其功能和价值。基于淀粉基质,开发了一种复合结构,其中包含作为生物防治剂的木霉和作为酸化剂的黑曲霉。结果表明,P 溶解率显著提高了 150%,表明了微生物-复合材料相互作用的积极影响。体外试验表明,在黑曲霉存在的情况下,木霉抑制尖孢镰刀菌菌丝生长的能力得以保持。此外,复合颗粒的估计成本(干基产品 0.35 美元/公斤)具有竞争力。研究结果表明,木霉和黑曲霉的组合是一种增加养分有效性和抑制植物病原体的有效方法,为多功能生物基肥料复合材料的设计开辟了可能性。