Department of Soil Science Engineering, Faculty of Agricultural Engineering and Technology, University of Tehran, Karaj, 31587-77871, Iran.
Environ Sci Pollut Res Int. 2019 Jul;26(19):19804-19813. doi: 10.1007/s11356-019-05284-x. Epub 2019 May 14.
The present study focused on the characterization of plant growth promoting rhizospheric (R) and endophytic (E) bacteria and their impact on wheat cultivars growth. In this study, 400 strains were isolated from the rhizosphere soil (250 isolates) and surface-sterilized roots (150 isolates) of wheat and screened for their ability to plant growth promotion (PGP) traits. Four R isolates and four E isolates with different ability were selected to investigate the interaction between R and B bacteria associated with wheat cultivars under in vitro and greenhouse conditions. Plant growth parameters were found to be enhanced by the combined inoculation of two groups of R and E bacteria compared to individual inoculations (respectively 33.7 and 37.8% increase in root and shoot dry weight), suggesting that PGP rhizobacteria acted synergistically with PGP endophytes in phosphate solubilization. Compared to inoculation with phosphate-solubilizing bacteria (PSB) or indole-3-acetic acid producer bacteria (IAA-PB), inoculation by bacteria with multiple PGP properties (PSB and IAA-PS) showed higher promotion capacity. Also, in greenhouse assay, bacterial inoculation had a positive effect on the soil dehydrogenase (70.2%) and phosphatase (52.2%) activity. It seems PGP traits do not work independently of each other but additively as it was suggested in the "synergistic hypothesis" that multiple mechanisms are responsible for the plant growth promotion and increased yield. Findings of this study could improve the current bio-fertilizer production procedure in research and related industries.
本研究专注于具有植物促生作用的根际(R)和内生(E)细菌的特性及其对小麦品种生长的影响。在这项研究中,从小麦根际土壤(250 株)和表面灭菌根(150 株)中分离出 400 株菌株,并筛选其具有植物促生(PGP)特性的能力。选择了 4 株 R 菌株和 4 株 E 菌株,这些菌株具有不同的能力,以研究在体外和温室条件下与小麦品种相关的 R 和 B 细菌之间的相互作用。与单独接种相比,发现组合接种两组 R 和 E 细菌可增强植物生长参数,根和茎干重分别增加 33.7%和 37.8%,这表明具有植物促生作用的根际细菌与具有植物促生作用的内生细菌在解磷方面协同作用。与解磷细菌(PSB)或吲哚-3-乙酸产生细菌(IAA-PB)接种相比,接种具有多种 PGP 特性的细菌(PSB 和 IAA-PS)表现出更高的促进能力。此外,在温室试验中,细菌接种对土壤脱氢酶(70.2%)和磷酸酶(52.2%)活性有积极影响。具有植物促生作用的特性似乎不是相互独立起作用,而是相加起作用,正如“协同假说”所表明的那样,多种机制负责植物生长促进和产量增加。本研究的结果可以改善当前研究和相关行业中生物肥料生产的程序。