School of Chemistry and Chemical Engineering, Shihezi University, Shihezi 832003, China.
School of Environmental and Chemical Engineering, Xi'an Polytechnic University, Xi'an 710048, China.
Biomed Res Int. 2020 Jun 18;2020:8321462. doi: 10.1155/2020/8321462. eCollection 2020.
Chemical fertilizers were applied on perennial tree vines to obtain high yields, which have resulted in considerable deterioration of soil quality, and it is likely to have negative impacts on the development of the grape industry. In this study, Rs-198 liquid biofertilizer (Rs198LBF) was inoculated into grape rhizosphere soils to assess its influence on grape growth and microbial community. Field experiment results showed that grape growth and quality increased depending on the concentrations of Rs198LBF applications. The berry weight, length, and width in addition with 60 ml Rs198LBF (1.44 × 10 cfu ml Rs-198) per grapevine treatment (BFP3) were 17.2%, 6.2%, and 4.4% higher than those of CK (control, non-inoculation) treatment, respectively. The available phosphorus contents in addition with 40 ml Rs198LBF per grapevine (BFP2) and BFP3 treatments were 12.6% and 55.3% higher than those of CK treatment ( < 0.05). The activities of invertase and alkaline phosphatase were improved in BFP2 and BFP3 treatment compared with those in CK. The relative abundance of potentially beneficial bacteria significantly increased compared with that in CK treatment ( < 0.05). The clusters of orthologous groups (COG) annotation illustrated that the application of 60 ml Rs198LBF increased the relative abundance of metabolic genes in rhizosphere soil. The results of this study show that biofertilizer is very effective in enhancing plant growth and affects soil community diversity.
化肥被施用于多年生藤本植物以获得高产,这导致了土壤质量的显著恶化,并可能对葡萄产业的发展产生负面影响。在这项研究中,Rs-198 液体生物肥料(Rs198LBF)被接种到葡萄根际土壤中,以评估其对葡萄生长和微生物群落的影响。田间试验结果表明,葡萄的生长和品质随着 Rs198LBF 应用浓度的增加而提高。与 CK(对照,未接种)处理相比,每株葡萄处理的浆果重量、长度和宽度分别增加了 17.2%、6.2%和 4.4%,其中 60ml Rs198LBF(1.44×10cfu/ml Rs-198)。与 CK 处理相比,每株葡萄施用 40ml Rs198LBF(BFP2)和 BFP3 处理的有效磷含量分别增加了 12.6%和 55.3%(<0.05)。与 CK 处理相比,BFP2 和 BFP3 处理中的转化酶和碱性磷酸酶活性提高。与 CK 处理相比,潜在有益细菌的相对丰度显著增加(<0.05)。同源基因簇(COG)注释表明,施用 60ml Rs198LBF 增加了根际土壤中代谢基因的相对丰度。本研究结果表明,生物肥料在促进植物生长方面非常有效,并影响土壤群落多样性。