Gruppo Ricicla Labs., Dipartimento di Scienze Agrarie e Ambientali-Produzione, Territorio, Agroenergia (DiSAA), Università Degli Studi Di Milano, Via Celoria 2, 20133, Milano, Italy.
Department for Sustainability, Biotechnologies and Agroindustry Division, ENEA, Italian National Agency for New Technologies, Energy and Sustainable Economic Development, Casaccia Research Center, Via Anguillarese 301, 00123, Rome, Italy.
Sci Rep. 2023 Dec 18;13(1):22478. doi: 10.1038/s41598-023-50166-5.
Bio-based fertilizers (BBFs) recovered from animal manure are promising products to optimise resources recovery and generate high agricultural yields. However, their fertilization value may be limited and it is necessary to enrich BBFs with microbial consortia to enhance their fertilization value. Three specific microbial consortia were developed according to the characteristics of three different BBFs produced from manure (bio-dried solid fraction, solid fraction of digestate and biochar) to enhance plant growth and product quality. A greenhouse pot experiment was carried out with tomato plants grown with microbiologically activated BBFs applied either as N-organic fertilizers or as an organic amendment. A next generation sequencing analysis was used to characterise the development of each rhizospheric community. All the activated BBFs gave enhanced tomato yields (fresh and dry weight) compared with the non-activated treatments and similar to, or higher than, chemical fertilization. Concerning the tomato fruits' organoleptic quality, lycopene and carotenoids concentrations were improved by biological activation. Metagenomic analysis points at Trichoderma as the main driver of the positive effects, with the effects of added bacteria being negligible or limited at the early stages after fertilization. In the context of the circular economy, the activated BBFs could be used to replace synthetic fertilisers, reducing costs and environmental burdens and increasing production.
从动物粪便中回收的生物基肥料 (BBFs) 是优化资源回收和提高农业产量的有前途的产品。然而,它们的施肥价值可能有限,因此有必要用微生物群落来丰富 BBFs,以提高其施肥价值。根据三种不同的 BBFs(生物干固体部分、消化物固体部分和生物炭)的特性,开发了三种特定的微生物群落,以促进植物生长和提高产品质量。通过温室盆栽试验,用微生物激活的 BBFs 处理番茄植物,无论是作为有机 N 肥料还是有机改良剂进行处理。使用下一代测序分析来描述每个根际群落的发展情况。与非激活处理相比,所有激活的 BBFs 都提高了番茄的产量(鲜重和干重),与化学施肥相当,甚至更高。关于番茄果实的感官质量,生物激活提高了番茄红素和类胡萝卜素的浓度。宏基因组分析表明,木霉是产生积极效果的主要驱动因素,添加细菌的效果在施肥后早期可以忽略不计或有限。在循环经济的背景下,激活的 BBFs 可以替代合成肥料,降低成本和环境负担,提高产量。