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Identification and Characterization of the Phosphate-Solubilizing Bacterium Pantoea sp. S32 in Reclamation Soil in Shanxi China

机译:磷酸盐增溶细菌Pantoea sp。的鉴定和表征。中国山西垦区土壤中的S32

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摘要

Phosphate solubilizing bacteria (PSB) can convert insoluble forms of phosphorus (P) to accessible forms. Five highly efficient PSB strains, H22, Y11, Y14, Y34, and S32, were screened and isolated from an alfalfa rhizosphere in heavy metal-contaminated reclamation area in Shanxi Province, China. Based on morphological observations, 16S rRNA sequencing, cellular fatty acid composition analysis, and the BIOLOG test, H22, Y11, and Y34 were identified as Pseudomonas sp., while Y14 and S32 were identified as Pantoea sp. Among them, S32 showed the highest P-solubilizing efficiency in culture medium containing Ca3(PO4)2, lecithin, and powered phosphate rock. The culture medium conditions to obtain the highest P-solubilization efficiency were optimized as follows: the culture temperature was 30°C; the incubation time was 5 days; the initial pH was 7.0; and glucose served as the carbon source. Furthermore, the P-solubilization efficiency of S32 in media containing CaHPO4, lecithin, phosphate rock (PR), FePO4, or AlPO4 was determined to be 18.38, 3.07, 0.16, 0.51, or 2.62%, respectively. In addition, the acid and alkali phosphatase activities of S32 were tested as 6.94 U/100 mL and 4.12 U/100 mL, respectively. The soil inoculation experiment indicated that inoculation with S32 resulted in an obvious improvement in the available P of both the experimental and reclaimed soil. The rice seedling growth experiment also suggested that the application of S32 significantly increased the plant height, biomass, root growth, and P uptake of rice in both experimental and reclaimed soil. Taken together, the isolated S32 strain showed high P-solubilization capacity for both Pi and Po, and its ameliorative effect on reclaimed soil recovery provides the theoretical basis for crop development in the reclaimed soil of mine field.
机译:磷酸盐增溶细菌(PSB)可以将磷(P)的不溶形式转化为可及形式。从中国山西省重金属污染开垦区的苜蓿根际筛选并分离了五株高效PSB菌株H22,Y11,Y14,Y34和S32。根据形态学观察,通过16S rRNA测序,细胞脂肪酸组成分析和BIOLOG测试,将H22,Y11和Y34鉴定为假单胞菌属,而将Y14和S32鉴定为泛菌属。其中,S32在含有Ca3(PO4)2,卵磷脂和高能磷酸盐岩的培养基中表现出最高的P增溶效率。获得最高P-增溶效率的培养基条件如下优化:培养温度为30℃;和孵育时间为5天;初始pH为7.0。葡萄糖是碳源。此外,S32在含CaHPO4,卵磷脂,磷酸盐岩(PR),FePO4或AlPO4的介质中的P增溶效率分别确定为18.38%,3.07、0.16、0.51或2.62%。另外,测试S32的酸和碱性磷酸酶活性分别为6.94U / 100mL和4.12U / 100mL。土壤接种实验表明,用S32接种可显着提高实验土壤和再生土壤的有效磷。水稻幼苗生长实验还表明,在试验土壤和再生土壤中,施用S32均可显着提高水稻的株高,生物量,根系生长和磷吸收。综上所述,分离出的S32菌株对Pi和Po均具有较高的P增溶能力,其对复垦土壤恢复的改善作用为矿田复垦土壤中的作物生长提供了理论基础。

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