Jabborova Dilfuza, Annapurna Kannepalli, Paul Sangeeta, Kumar Sudhir, Saad Hosam A, Desouky Said, Ibrahim Mohamed F M, Elkelish Amr
Institute of Genetics and Plant Experimental Biology, Uzbekistan Academy of Sciences, Tashkent Region, Kibray 111208, Uzbekistan.
Division of Microbiology, ICAR-Indian Agricultural Research Institute, Pusa, New Delhi 110012, India.
J Fungi (Basel). 2021 Jul 17;7(7):571. doi: 10.3390/jof7070571.
Biochar and arbuscular mycorrhizal fungi (AMF) can promote plant growth, improve soil properties, and maintain microbial activity. The effects of biochar and AMF on plant growth, root morphological traits, physiological properties, and soil enzymatic activities were studied in spinach ( L.). A pot experiment was conducted to evaluate the effect of biochar and AMF on the growth of spinach. Four treatments, a T1 control (soil without biochar), T2 biochar alone, T3 AMF alone, and T4 biochar and AMF together, were arranged in a randomized complete block design with five replications. The biochar alone had a positive effect on the growth of spinach, root morphological traits, physiological properties, and soil enzymatic activities. It significantly increased the plant growth parameters, such as the shoot length, leaf number, leaf length, leaf width, shoot fresh weight, and shoot dry weight. The root morphological traits, plant physiological attributes, and soil enzymatic activities were significantly enhanced with the biochar alone compared with the control. However, the combination of biochar and AMF had a greater impact on the increase in plant growth, root morphological traits, physiological properties, and soil enzymatic activities compared with the other treatments. The results suggested that the combined biochar and AMF led to the highest levels of spinach plant growth, microbial biomass, and soil enzymatic activity.
生物炭和丛枝菌根真菌(AMF)能够促进植物生长、改善土壤性质并维持微生物活性。本研究以菠菜(L.)为对象,探究了生物炭和AMF对植物生长、根系形态特征、生理特性及土壤酶活性的影响。通过盆栽试验评估生物炭和AMF对菠菜生长的影响。试验设置了四个处理组,分别为:T1对照组(不添加生物炭的土壤)、T2单独添加生物炭组、T3单独接种AMF组以及T4生物炭与AMF共同添加组,采用随机区组设计,重复五次。单独添加生物炭对菠菜的生长、根系形态特征、生理特性及土壤酶活性均有积极影响。它显著提高了植物生长参数,如茎长、叶片数、叶长、叶宽、地上部鲜重和地上部干重。与对照组相比,单独添加生物炭显著增强了根系形态特征、植物生理特性及土壤酶活性。然而,与其他处理组相比,生物炭与AMF共同添加对植物生长、根系形态特征、生理特性及土壤酶活性的提升作用更大。结果表明,生物炭与AMF共同添加使菠菜的植物生长、微生物生物量及土壤酶活性达到最高水平。