基于谷物麸皮的新型低成本液体培养基,用于提高含氮球菌、枯草芽孢杆菌和假单胞菌的联合体生物肥料的生长、多功能性状和保质期。

IF 1.7 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS
Akashdeep , Suman Kumari , Neeraj Rani
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引用次数: 0

摘要

本研究旨在利用谷物(大米和小麦)麸皮来开发低成本的液体复合生物配方。对不同浓度的麦麸基液体培养基配方进行了评估,以促进联合体生物肥料培养物(绿球菌、枯草芽孢杆菌和假单胞菌)的生长。在以麦麸为基础的制剂中,以麦麸为基础的制剂 WB5 在培养 72 小时后对根瘤酵母菌和枯草芽孢杆菌表现出最高的存活细胞数(10.68 ± 0.09 Log10 CFU/ml)和(12.63 ± 0.04 Log10 CFU/ml),而对假单胞菌来说,以米糠为基础的生物制剂 RB5 则表现出最高的存活细胞数(12.71 ± 0.05 Log10 CFU/ml)。对 RB51 和 WB52 液体配方进行了进一步优化,使用 5、10 和 15 毫摩尔的三卤糖,0.05 和 0.1%的羧甲基纤维素,以及 0.5 和 1.0%的甘油,以提高保质期。在培养 72 小时达到生长高峰后,在所有液体配方中都观察到生物肥料联合体培养物的存活数量逐渐减少。含有 15 毫摩尔三卤糖和 0.1% CMC 的 WB5 和 RB5 配方不仅能显著提高生物肥料联合体培养物的细胞数,而且还能最大限度地支持多功能特性,即磷酸盐和锌的溶解、氨和 IAA 的产生,直至 150 天。在轴生条件下对小麦(PBW 826)的出苗和生长进行的进一步评估表明,添加了 15 mM 曲哈糖的 WB5 生物复合制剂能最大程度地促进小麦出苗和生长。这种低成本液体配方可用于大规模生物肥料生产,是一种经济高效的液体生物肥料生产技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Novel cereal bran based low-cost liquid medium for enhanced growth, multifunctional traits and shelf life of consortium biofertilizer containing Azotobacter chroococcum, Bacillus subtilis and Pseudomonas sp.

Novel cereal bran based low-cost liquid medium for enhanced growth, multifunctional traits and shelf life of consortium biofertilizer containing Azotobacter chroococcum, Bacillus subtilis and Pseudomonas sp.

The present study was carried out to valorise cereal (rice and wheat) bran for the development of low-cost liquid consortium bioformulation. Different concentrations of bran-based liquid media formulations were evaluated for the growth of consortium biofertilizer cultures (Azotobacter chroococcum, Bacillus subtilis and Pseudomonas sp.). Among the bran-based formulations, wheat bran-based formulation WB5, exhibited the highest viable cell of 10.68 ± 0.09 Log10 CFU/ml and 12.63 ± 0.04 Log10 CFU/ml for Azotobacter chroococcum and Bacillus subtilis whereas for Pseudomonas sp., rice bran based bioformulation RB5 recorded maximum viability (12.71 ± 0.05 Log10 CFU/ml) after 72 h of incubation. RB51 and WB52liquid formulations were further optimized for enhanced shelf life using 5, 10 and 15 mM of trehalose, 0.05 and 0.1% carboxymethyl cellulose, and 0.5 and 1.0% glycerol. Following the peak growth at 72 h of incubation, a gradual decrease in the viable population of consortium biofertilizer cultures was observed in all the liquid formulations. The WB5 and RB5 formulations with 15 mM trehalose and 0.1% CMC, not only recorded significantly highest cell count of consortium biofertilizer cultures, but also maximally supported multi-functional traits i.e., phosphate and zinc solubilization, ammonia and IAA production up to 150 days. Further evaluation of seedling emergence and growth of wheat (PBW 826) under axenic conditions recorded WB5 amended with 15 mM trehalose-based consortium bioformulation to exhibit maximum emergence and growth of wheat seedlings. This low-cost liquid formulation can be used for large-scale biofertilizer production as a cost-effective liquid biofertilizer production technology.

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来源期刊
Journal of microbiological methods
Journal of microbiological methods 生物-生化研究方法
CiteScore
4.30
自引率
4.50%
发文量
151
审稿时长
29 days
期刊介绍: The Journal of Microbiological Methods publishes scholarly and original articles, notes and review articles. These articles must include novel and/or state-of-the-art methods, or significant improvements to existing methods. Novel and innovative applications of current methods that are validated and useful will also be published. JMM strives for scholarship, innovation and excellence. This demands scientific rigour, the best available methods and technologies, correctly replicated experiments/tests, the inclusion of proper controls, calibrations, and the correct statistical analysis. The presentation of the data must support the interpretation of the method/approach. All aspects of microbiology are covered, except virology. These include agricultural microbiology, applied and environmental microbiology, bioassays, bioinformatics, biotechnology, biochemical microbiology, clinical microbiology, diagnostics, food monitoring and quality control microbiology, microbial genetics and genomics, geomicrobiology, microbiome methods regardless of habitat, high through-put sequencing methods and analysis, microbial pathogenesis and host responses, metabolomics, metagenomics, metaproteomics, microbial ecology and diversity, microbial physiology, microbial ultra-structure, microscopic and imaging methods, molecular microbiology, mycology, novel mathematical microbiology and modelling, parasitology, plant-microbe interactions, protein markers/profiles, proteomics, pyrosequencing, public health microbiology, radioisotopes applied to microbiology, robotics applied to microbiological methods,rumen microbiology, microbiological methods for space missions and extreme environments, sampling methods and samplers, soil and sediment microbiology, transcriptomics, veterinary microbiology, sero-diagnostics and typing/identification.
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