首页> 外文期刊>Agricultural Sciences >Culture Optimization for Mass Production of &i&Rhizobium&/i& Using Bioreactor Made of Readily Available Materials and Agitated by Air Flow
【24h】

Culture Optimization for Mass Production of &i&Rhizobium&/i& Using Bioreactor Made of Readily Available Materials and Agitated by Air Flow

机译:培养优化& LT; I& GT; Rhizobium; LT; / i& 使用由易于使用的材料制成的生物反应器并通过空气流动搅动

获取原文
           

摘要

Large quantities of Rhizobium leguminosarum by conventional technique are a time-consuming and labor-intensive method of production. The selection of different types of nutrient media for the production of large amounts of rhizobium at low cost, determination of environmental regulators of culture medium and the effect of different levels of air flow into nutrition media have been investigated. Rhizobium cultured in modified air lift bioreactor as improved conventional system using Yeast Extract Mannitol Broth by assessing aeration and agitation in their submerged growth. For selection of suitable nutrient media for Rhizobium before mass production, YMA (Yeast Mannitol Agar), YSA (Yeast Sucrose Agar), YMA + bromthymol blue (BTB), YMA + Congo red (CR) medium was tested. To optimize the growing conditions of different temperatures, pH levels and salt strengths were investigated. Three air flow speeds at the rate of 0.01, 0.05 and 0.1 VVM for oxygen supply were ensured. A thick off-white bacterial colony was observed on the YMA plate among different culture media. Room temperature (25 ˚ C - 30 ˚ C), neutral pH (7.0), low salinity (1%) was observed to be suitable among the environmental conditions for Rhizobium mass production. The maximum density of Rhizobium was observed using air supply of 0.1 VVM level in bioreactor system. The result seemed that the air supply and agitation was an important growth factor in submerged cultivation. This study provides useful information on large scale production of Rhizobium of interest employing low cost effective modified air lift bioreactor within less time.
机译:通过常规技术大量的Relizobiumosarum是一种耗时和劳动密集型的生产方法。针对生产大量的根茎的不同类型的营养培养基的选择,研究了培养基环境调节剂的测定和不同水平的空气流入营养培养基的效果。通过在浸没生长中评估曝气和搅动,改性空气提升生物反应器在改良的空气提升生物反应器中培养的传统系统,通过评估其浸没生长中的曝气和搅动。对于在批量生产前选择合适的营养培养基,在批量生产前,YMA(酵母甘露醇琼脂),YMA(酵母蔗糖琼脂),YMA +溴酚蓝(BTB),YMA +刚果红色(CR)培养基进行了测试。为了优化不同温度的不断增长的条件,研究了pH水平和盐强度。确保了用于氧气供应速率0.01,0.05和0.1 VVM的三个空气流速。在不同培养基中的YMA板上观察到厚厚的灰白细菌菌落。室温(25˚ C - 30˚ c),中性pH(7.0),低盐度(1%)是合适的碱批量生产的环境条件。在生物反应器系统中使用0.1 VVM水平的空气供应观察到根瘤大的最大密度。结果似乎空气供给和搅拌是淹没栽培中的重要增长因素。本研究提供了有关在更短的时间内采用低成本有效的改性空气提升生物反应器的大规模生产的有关大规模生产的有用信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号