López-Vargas Elsy Rubisela, Hidalgo-Martínez Diego, Becerra-Martínez Elvia, Zepeda-Vallejo L Gerardo, Hernández-Guerrero Claudia J, Hernández-Fuentes Alma Delia, Cadenas-Pliego Gregorio, Pérez-Álvarez Marissa
Institute of Agricultural Sciences, Autonomous University of the State of Hidalgo, Tulancingo 43600, Mexico.
Department of Biology, Healthcare and the Environment, Faculty of Pharmacy and Food Sciences, University of Barcelona, 08028 Barcelona, Spain.
Int J Mol Sci. 2025 May 19;26(10):4844. doi: 10.3390/ijms26104844.
This study investigated the effects of two nanofertilizers (NFs): copper nanoparticles (NPs) synthesised using cotton (CuC) and chitosan (CuCh) as well as two biofertilizers (BFs), nopal extract (NE) and commercial Biojal worm humus (WH), on the growth of black bean seedlings. The treatments consisted of applying 50 mg L of CuC, 50 mg L of CuCh, 50 mg L of NE, 100 mg L of WH, their respective combinations, and an absolute control that consisted of distilled water. The CuC, CuCh, WH, and WH + CuC leaf applications resulted in an increase in plant height by 34.4%, 19.5%, 25.7%, and 20.3%, respectively. Furthermore, the CuC and WH applications led to an increase in the number of leaves by 53.2% and 36.9%, respectively. However, the addition of NE + CuC resulted in a 37.4% decrease in dry weight. A total of 44 metabolites were identified, including 7 sugars, 17 amino acids, 12 organic acids, 4 nucleosides, 1 alcohol, and 3 miscellaneous metabolites. The NE + CuC and WH treatments resulted in a notably higher concentration of various metabolites, including amino acids, organic acids, and sugars. Conversely, the CuCh treatment led to an increased concentration of nucleosides, amino acids, trigonelline, and nicotinamide adenine dinucleotide (NAD).
本研究调查了两种纳米肥料(NFs):以棉花(CuC)和壳聚糖(CuCh)合成的铜纳米颗粒(NPs)以及两种生物肥料(BFs),即仙人掌提取物(NE)和商业Biojal蚯蚓腐殖质(WH),对黑豆幼苗生长的影响。处理包括施用50毫克/升的CuC、50毫克/升的CuCh、50毫克/升的NE、100毫克/升的WH、它们各自的组合,以及由蒸馏水组成的绝对对照。CuC、CuCh、WH和WH + CuC叶面喷施分别使株高增加了34.4%、19.5%、25.7%和20.3%。此外,施用CuC和WH分别使叶片数量增加了53.2%和36.9%。然而,添加NE + CuC导致干重下降了37.4%。总共鉴定出44种代谢物,包括7种糖类、17种氨基酸、12种有机酸、4种核苷、1种醇类和3种其他代谢物。NE + CuC和WH处理导致包括氨基酸、有机酸和糖类在内的各种代谢物浓度显著更高。相反,CuCh处理导致核苷、氨基酸、胡芦巴碱和烟酰胺腺嘌呤二核苷酸(NAD)的浓度增加。