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黑曲霉解磷能力的影响因素及其培养条件的优化

[Influencing factors of phosphate solubilizing capacity of Aspergillus niger and optimization of its culture condition].

作者信息

Sun Ran, Zhang Su, Wu Chen-Lin, Li Zhu, Xiao Yang

机构信息

College of Life Science, Guizhou University/Key Laboratory of Plant Resources Conservation and Germplasm Innovation in Mountainous Region (Ministry of Education), Guiyang 550025, China.

Institute of Products Detection & Determination of Guizhou Province, Guiyang 550003, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2020 Jun;31(6):1963-1970. doi: 10.13287/j.1001-9332.202006.033.

DOI:10.13287/j.1001-9332.202006.033
PMID:34494750
Abstract

In this study, we investigated factors affecting the phosphate solubilizing capacity of Aspergillus niger. A strain named A. niger Xj-2 was isolated by single-spore isolation, with phosphate solubilizing capacity of 539.90 mg·L in liquid medium. The simulated process of fermentation kinetics showed that phosphate concentration reached equilibrium after 4 d cultivation, indicating that the optimal fermentation time was around 4 d. Phosphate solubilization capacity of strain Xj-2 in different phosphorus-source culture media followed the order: calcium phosphate (539.90 mg·L)>zinc phosphate (238.45 mg·L)>ferric phosphate (182.64 mg·L)>phosphate rock power (71.80 mg·L) > aluminum phosphate (24.40 mg·L). We further examined the optimal condition of strain Xj-2 for phosphate solubilization by response surface optimization combined with single factor experiments. Results showed that the influence of various factors on the phosphate solubilizing capacity of strain Xj-2 was in the order: carbon source > microbial density > pH. The maximum phosphate solubilizing capacity (616.81 mg·L) could be achieved under the following condition with 10.00 g·L glucose, 0.79 g·L urea, 35 ℃, the initial pH of medium 6.0, 3.8% microbial density and 160 r·min rotating speed.

摘要

在本研究中,我们调查了影响黑曲霉解磷能力的因素。通过单孢子分离法分离出一株名为黑曲霉Xj-2的菌株,其在液体培养基中的解磷能力为539.90 mg·L。发酵动力学模拟过程表明,培养4 d后磷酸盐浓度达到平衡,表明最佳发酵时间约为4 d。菌株Xj-2在不同磷源培养基中的解磷能力顺序为:磷酸钙(539.90 mg·L)>磷酸锌(238.45 mg·L)>磷酸铁(182.64 mg·L)>磷矿粉(71.80 mg·L)>磷酸铝(24.40 mg·L)。我们通过响应面优化结合单因素实验进一步研究了菌株Xj-2解磷的最佳条件。结果表明,各因素对菌株Xj-2解磷能力的影响顺序为:碳源>微生物密度>pH。在以下条件下可实现最大解磷能力(616.81 mg·L):10.00 g·L葡萄糖、0.79 g·L尿素、35℃、培养基初始pH 6.0、微生物密度3.8%和转速160 r·min。

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