Lee Junkyung, Jo Na-Yeon, Shim Su-Yeon, Le Tran Yen Linh, Jeong Woo Yong, Kwak Ki Wung, Choi Hyun Sik, Lee Byong-O, Kim Soo-Ryang, Lee Myung-Gyu, Hwang Sun-Goo
Department of Applied Plant Science, Sangji University, Wonju-si, 26339, Republic of Korea.
Department of Smart-Farm Life, Science Sangji University, Wonju-si, 26339, Republic of Korea.
Sci Rep. 2025 Mar 26;15(1):10439. doi: 10.1038/s41598-025-95327-w.
Organic liquid fertilizers from livestock manure are increasingly recognized as sustainable amendments influencing soil bacterial communities. Yet, their direct impacts on bacterial composition and crop functionality remain unclear. Addressing this gap, we developed a bio-liquid fertilizer (LBF) by culturing Chlorella fusca in a purified pig manure-based medium. We compared its effects with chemical (CLF) and fermented (FLM) liquid fertilizers on Chinese cabbage (Brassica rapa subsp. pekinensis). We aimed to determine how organic bio-liquid fertilizers enhance crop health and soil bacterial balance, contributing to sustainable agricultural practices. Although LBF did not surpass CLF in promoting growth, it significantly increased antioxidant compounds (polyphenols, flavonoids), sugars, and antioxidant activities, including nitrite-scavenging capacity and reducing power. Soil bacterial communities were strongly correlated with key chemical properties (Na, K, NO-N, Ca, pH). Notably, Litorilinea decreased under CLF, and Sphingomonas and Nocardioides declined under FLM, whereas LBF treatment increased all three genera, suggesting improved bacterial conditions. These findings demonstrate that a well-designed organic bio-liquid fertilizer can bridge knowledge gaps by enhancing plant functionality and promoting beneficial soil bacteria. This approach supports more efficient nutrient recycling and may foster greater resilience and sustainability in modern farming systems.
来自畜禽粪便的有机液体肥料越来越被认为是影响土壤细菌群落的可持续改良剂。然而,它们对细菌组成和作物功能的直接影响仍不清楚。为了填补这一空白,我们通过在以纯猪粪为基础的培养基中培养小球藻,开发了一种生物液体肥料(LBF)。我们将其与化学液体肥料(CLF)和发酵液体肥料(FLM)对大白菜(Brassica rapa subsp. pekinensis)的影响进行了比较。我们旨在确定有机生物液体肥料如何增强作物健康和土壤细菌平衡,从而促进可持续农业实践。尽管LBF在促进生长方面没有超过CLF,但它显著增加了抗氧化化合物(多酚、黄酮类化合物)、糖类以及抗氧化活性,包括亚硝酸盐清除能力和还原能力。土壤细菌群落与关键化学性质(钠、钾、硝态氮、钙、pH值)密切相关。值得注意的是,CLF处理下Litorilinea减少,FLM处理下鞘氨醇单胞菌属和诺卡氏菌属减少,而LBF处理增加了所有这三个属,表明细菌状况得到改善。这些发现表明,精心设计的有机生物液体肥料可以通过增强植物功能和促进有益土壤细菌来填补知识空白。这种方法支持更高效的养分循环利用,并可能在现代农业系统中增强恢复力和可持续性。