Chaudhary Parul, Khati Priyanka, Chaudhary Anuj, Maithani Damini, Kumar Govind, Sharma Anita
Department of Microbiology, College of Basic Sciences and Humanities, G.B. Pant University of Agriculture and Technology, Pantnagar, Uttarakhand, India.
Crop Production Division, Vivekananda Parvatiya Krishi Anusandhan Sansthan, Almora, Uttarakhand, India.
PLoS One. 2021 Apr 26;16(4):e0250574. doi: 10.1371/journal.pone.0250574. eCollection 2021.
In the present study we examined the effect of nanogypsum and Pseudomonas taiwanensis strain BCRC 17751on plant and soil health using conventional and metagenomics approaches. Soil physicochemical properties and agronomical parameters of maize plants were reported to be better when applied with nanogypsum and bacterial inoculum together. When compared to control a significant increase in total bacterial counts, nitrogen, phosphorus, potassium (NPK) solubilizing bacterial population and soil enzyme activities (fluorescein diacetate, alkaline phosphatase, dehydrogenase, β-glucosidase, arylesterase and amylase) was reported in treatments. The metagenomics studies revealed dominance of beneficial bacteria such as Proteobacteria, Bacteriodetes, Planctomycetes, Acidobacteria and Nitrospirae in treated soil. On the other hand some novel bacterial diversity was also reported in treated soil which was evident from presence of taxonomically unclassified sequences. Hence, it can be concluded that combined application of nanogypsum and Pseudomonas taiwanensis in maize help in improving the structure and function of soil which affects the plant health without causing any toxic effect. However, in situ validation of the prescribed treatment is required under field conditions on different crops in order to give maximum benefits to the farmers and the environment.
在本研究中,我们使用传统方法和宏基因组学方法研究了纳米石膏和台湾假单胞菌菌株BCRC 17751对植物和土壤健康的影响。据报道,同时施用纳米石膏和细菌接种剂时,玉米植株的土壤理化性质和农艺参数更佳。与对照相比,各处理的细菌总数、氮磷钾(NPK)溶解细菌数量和土壤酶活性(荧光素二乙酸酯、碱性磷酸酶、脱氢酶、β-葡萄糖苷酶、芳基酯酶和淀粉酶)均显著增加。宏基因组学研究表明,处理后的土壤中变形菌门、拟杆菌门、浮霉菌门、酸杆菌门和硝化螺旋菌门等有益细菌占主导地位。另一方面,处理后的土壤中也报道了一些新的细菌多样性,这从分类学上未分类的序列的存在中可以明显看出。因此,可以得出结论,在玉米中联合施用纳米石膏和台湾假单胞菌有助于改善土壤结构和功能,从而影响植物健康,且不会产生任何毒性作用。然而,为了给农民和环境带来最大利益,需要在田间条件下对不同作物进行规定处理的原位验证。