植酸酶产菌的分离、鉴定、发酵优化及其对大豆幼苗的影响

IF 3.1 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Limin Zhang, Ziwei Song, Jingyuan Guo, Wenjia Liu, Jie Li, Qingxin Meng, Jixian Mo
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引用次数: 0

摘要

土壤中的磷多以植酸等复杂化合物的形式存在,降低了磷的有效性,限制了农业生产。植酸酶具有将植酸水解成磷酸盐的活性。微生物分泌植酸酶矿化土壤中的植酸是提高植酸利用率的有效途径。本研究分离到一株高产植酸酶菌株,经16S rDNA鉴定为假单胞菌,命名为Pseudomonas sp. S3-10。采用单因素法、Plackett-Burman设计(PBD)和响应面法(RSM)对发酵培养基组成和发酵条件进行优化。结果表明,甘蔗糖蜜、MgCl2和温度对细菌的发酵生物量有显著影响。最佳发酵条件为甘蔗糖蜜浓度为61.80 g/L, MgCl2浓度为5.94 g/L,温度为34.4℃。与未优化发酵条件相比,优化发酵条件下的最大生物量提高了160.17±6.26%,达到9.13±0.09 × 109 CFU/mL。盆栽试验结果表明,假单胞菌S3-10对大豆生长有显著的促进作用。该菌株使大豆幼苗鲜重和幼苗长分别提高112.92±28.41%和74.02±3.24%,土壤植酸酶活性和植物根际有效磷浓度分别提高388.15±24.24%和365.05±91.96%。本研究提供了一株高产植酸酶菌株及其最佳发酵条件。该菌具有显著的植物促生长作用,可作为一种新型生物肥料,在农业生产中对减少磷肥使用量、提高磷利用效率、保护生态环境具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation, Identification, and Fermentation Optimization of Phytase-Producing Bacteria and Their Effects on Soybean Seedlings.

Phosphorus in soil mostly exists in complex compounds such as phytic acid, which reduces the effectiveness of phosphorus and limits agricultural production. Phytase has the activity of hydrolyzing phytate into phosphate. The mineralization of phytate in soil by phytase secreted by microorganisms is an effective way to improve the utilization rate of phytate. This study isolated a high-yield phytase strain, identified as Pseudomonas by 16S rDNA and named Pseudomonas sp. S3-10. The fermentation medium composition and conditions were optimized using the single-factor method, Plackett-Burman design (PBD), and response surface methodology (RSM). The results showed that cane molasses, MgCl2, and temperature significantly affected the fermentation biomass of the bacterium. The optimal fermentation conditions were cane molasses and MgCl2 concentrations of 61.80 g/L and 5.94 g/L, respectively, at 34.4 °C. Compared with the unoptimized fermentation conditions, the maximum biomass increased by 160.17 ± 6.26% under the optimized fermentation conditions, reaching 9.13 ± 0.09 × 109 CFU/mL. The pot experiment results showed that Pseudomonas sp. S3-10 has a significant promoting effect on soybean growth. The strain increased the fresh weight and length of soybean seedlings by 112.92 ± 28.41% and 74.02 ± 3.24%, respectively, and increased the phytase activity in the soil and available phosphorus concentration in the plant rhizosphere by 388.15 ± 24.24% and 365.05 ± 91.96%, respectively. This study provided a high-yield phytase strain and its optimal fermentation conditions. The bacterium has significant plant growth-promoting effects and can be used as a new type of biological fertilizer, which is of great significance for reducing phosphorus fertilizer usage, improving phosphorus utilization efficiency, and protecting the ecological environment in agricultural production.

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来源期刊
Applied Biochemistry and Biotechnology
Applied Biochemistry and Biotechnology 工程技术-生化与分子生物学
CiteScore
5.70
自引率
6.70%
发文量
460
审稿时长
5.3 months
期刊介绍: This journal is devoted to publishing the highest quality innovative papers in the fields of biochemistry and biotechnology. The typical focus of the journal is to report applications of novel scientific and technological breakthroughs, as well as technological subjects that are still in the proof-of-concept stage. Applied Biochemistry and Biotechnology provides a forum for case studies and practical concepts of biotechnology, utilization, including controls, statistical data analysis, problem descriptions unique to a particular application, and bioprocess economic analyses. The journal publishes reviews deemed of interest to readers, as well as book reviews, meeting and symposia notices, and news items relating to biotechnology in both the industrial and academic communities. In addition, Applied Biochemistry and Biotechnology often publishes lists of patents and publications of special interest to readers.
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