Shen Lan, Wu Xiao-Qin, Zeng Qing-Wei, Liu Hong-Bin
Co-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing, 210037, Jiangsu, China.
Curr Microbiol. 2016 Dec;73(6):915-923. doi: 10.1007/s00284-016-1139-0. Epub 2016 Sep 24.
Phytate-mineralizing rhizobacteria (PMR) play an important role in providing phosphorus for the sustainable plant growth. It is important to investigate the ability of PMR to produce phytase under different phosphate levels for its application. The effects of different concentrations of soluble phosphate on the ability of phytate mineralization of Pseudomonas fluorescens JZ-DZ1, a phytate-mineralizing rhizobacterium, were investigated in both solid and liquid media. The results on solid media showed that halo zone width gradually reduced with concentrations of soluble phosphate increasing from 0.05 to 20 mM, indicating the reduction of the ability of phytate mineralization. The results were consistent with the quantitative detection of phytase activity from the overall trend. An 1866-bp β-propeller phytase (BPP) gene (phyPf) was cloned from the strain, and the deduced amino acid sequence of phyPf shared 98 % of identity with a known BPP from Pseudomonas sp. BS10-3 (AJF36073.1). The results of relative real-time quantitative PCR assay showed that the expression of phyPf was induced by a low concentration (0.1 mM) of soluble phosphate, suggesting that BPP secretion was regulated by gene phyPf. The BPP-harboring bacterium P. fluorescens JZ-DZ1 with low phosphate-inducible ability of phytate mineralization could be potentially applied to promote phosphorus uptake for plants in the future.
植酸矿化根际细菌(PMR)在为植物可持续生长提供磷方面发挥着重要作用。研究PMR在不同磷水平下产生植酸酶的能力对于其应用至关重要。在固体和液体培养基中研究了不同浓度的可溶性磷酸盐对植酸矿化根际细菌荧光假单胞菌JZ-DZ1的植酸矿化能力的影响。固体培养基上的结果表明,随着可溶性磷酸盐浓度从0.05 mM增加到20 mM,晕圈宽度逐渐减小,表明植酸矿化能力降低。结果与植酸酶活性的定量检测总体趋势一致。从该菌株中克隆了一个1866 bp的β-螺旋桨植酸酶(BPP)基因(phyPf),phyPf推导的氨基酸序列与来自假单胞菌属BS10-3(AJF36073.1)的已知BPP有98%的同一性。相对实时定量PCR分析结果表明,phyPf的表达受低浓度(0.1 mM)可溶性磷酸盐诱导,表明BPP的分泌受基因phyPf调控。具有低磷酸盐诱导植酸矿化能力的携带BPP的荧光假单胞菌JZ-DZ1未来可能潜在地应用于促进植物对磷的吸收。