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Halotolerant Azotobacter spp. and its formulations to screen, different carrier materials and shelf life study

机译:耐盐固氮菌属。及其筛选,不同载体材料和货架期研究的配方

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摘要

The present research work was conducted to screen different carrier materials for salinity tolerant Azotobacter spp. to be used as biofertilizer and its shelf life study. Formulations of Azotobacter spp. in fly-ash, saw dust and rice husk ash were screened for the better survival as bacterial biofertilizers. Fly ash was observed as best carrier material and fly ash was further used as carrier material for optimization and shelf life study stored at 30±1°C up to six months. Optimization of Fly ash based bioformulation revealed that 30±1°C temperature, 35% moisture content and zero day of storage time were find as best condition for biofertilizer bioformulation to survive. Shelf life study in (fly ash) reveals that the population of bacteria gradually decreases with storage time and maximum population was observed at zero day (41) of formulation. The population of Azotobactor declined upto 02 log at 108 cfu/g after six months of storage which is within the permissible limit. From these results itcan be concluded that the stress tolerant strains of biofertilizer formulations in fly ash could be a better option for the growth and yield of the crop in sodic/saline type of soil.
机译:进行本研究工作以筛选耐盐性固氮菌属物种的不同载体材料。用作生物肥料及其保质期研究。固氮菌属的制剂。在粉煤灰中,筛选了锯末和稻壳灰作为细菌生物肥料,具有更好的存活率。粉煤灰被认为是最好的载体材料,粉煤灰进一步被用作载体材料,用于优化和货架期研究,在30±1°C下储存长达六个月。基于粉煤灰的生物制剂的优化显示,发现30±1°C的温度,35%的水分含量和零存储时间是生物肥料生物制剂生存的最佳条件。在(粉煤灰)中的保质期研究表明,细菌的数量随着储存时间的增加而逐渐减少,在配方的第零天观察到最大数量(41)。储存六个月后,共沸菌种群以108 cfu / g的速度下降至02 log,这在允许的范围内。从这些结果可以得出结论,粉煤灰中生物肥料配方的耐应力菌株可能是苏打/盐渍土壤中作物生长和产量的更好选择。

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