School of Chemistry and Chemical Engineering, Wuhan University of Science and Technology, Wuhan, 430081, Hubei, People's Republic of China.
Key Laboratory of Hubei Province for Coal Conversion and New Carbon Materials, Wuhan University of Science and Technology, Wuhan, 430081, Hubei, People's Republic of China.
World J Microbiol Biotechnol. 2020 Jan 29;36(2):27. doi: 10.1007/s11274-019-2744-4.
A phosphate solubilizing bacterium ZB was isolated from the rhizosphere soil of Araucaria, which falls into the species Pantoea agglomerans. Optimization for phosphate solubilization by strain ZB was performed. At optimum culture conditions, the isolate showed great ability of solubilizing different insoluble inorganic phosphate sources viz. Ca(PO) (TCP), Hydroxyapatite (HP), CaHPO, AlPO, FePO along with rock phosphates (RPs). Inoculation with planktonic cells was found to enhance dissolved phosphorous as compared to that achieved by symplasma inoculation. Besides inoculation with different status of cells, pre-incubation could also exert a great effect on phosphate solubilization ability of P. agglomerans. When isolate ZB was cultured with glucose as carbon sources, phosphorous was more efficiently dissolved from HP and RP without pre-incubation in comparison to that obtained with pre-cultivation. Pre-cultivation, however, was more suitable for P solubilization than no pre-cultivation when bacteria were grown with xylose. A positive correlation was detected between the production of organic acids and phosphate solubilization. P. agglomerans ZB possessed many plant growth promotion traits such as N fixation and production of indole 3-acetic acid, phytase, alkaline phosphatase. Pot experiment showed inoculation with single isolate ZB or biofertilizer prepared from semi-solid fermentation of isolate ZB with spent mushroom substrate (SMS) compost could enhance plant growth with respect to number of leaves, plant leave area, stem diameter, root length, root dry mass, shoot dry mass and biomass when compared to the abiotic control, revealing strain ZB could be a promising environmental-friendly biofertilizer to apply for agricultural field.
从南洋杉根际土壤中分离到一株能溶解磷酸盐的细菌 ZB,鉴定为泛菌属 Pantoea agglomerans。对菌株 ZB 进行了溶磷条件的优化。在最佳培养条件下,该菌具有溶解不同不溶性无机磷源的能力,包括磷酸三钙(TCP)、羟基磷灰石(HP)、磷酸氢钙、磷酸铝、磷酸铁以及磷矿粉。与共生体接种相比,浮游细胞的接种能提高溶解磷的含量。除了用不同状态的细胞接种外,预培养也能对 P. agglomerans 的溶磷能力产生很大的影响。当菌株 ZB 以葡萄糖为碳源培养时,与预培养相比,未经预培养时从 HP 和 RP 中溶解的磷更多。然而,当细菌以木糖为碳源生长时,预培养比不预培养更适合 P 溶磷。有机酸的产生与磷酸盐的溶解之间存在正相关。ZB 具有许多植物生长促进特性,如固氮和产生吲哚-3-乙酸、植酸酶、碱性磷酸酶。盆栽试验表明,与非生物对照相比,单独接种单菌株 ZB 或用菌株 ZB 与废菌糠基质(SMS)堆肥进行半固态发酵制备的生物肥料能提高叶片数、叶片面积、茎直径、根长、根干重、茎干重和生物量,表明菌株 ZB 可能是一种很有前途的环保型生物肥料,可用于农业领域。