首页> 外文期刊>Biosciences Biotechnology Research Asia >Synergistic effect of co-inoculating gum liquid inoculums of Rhizobium japonicum and Azotobacter chroococcum on grain yield of Glycine max.
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Synergistic effect of co-inoculating gum liquid inoculums of Rhizobium japonicum and Azotobacter chroococcum on grain yield of Glycine max.

机译:日本根瘤菌和绿偶氮共接种树胶液接种物对大豆最大产量的协同效应。

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Rhizobium japonicum and Azotobacter chroococcum are known to be symbiotic and non symbiotic nitrogen fixing strains respectively. The main aim behind mixed inoculation is to achieve enhanced nodulation and grain production using gum as carrier rather than lignite. Lignite is not efficient in holding moisture due to which shelf life of bio-fertilizer decreases and cause pollution in production area. Worker in production area suffer from lungs diseases. To study the effect of inoculation with a mixed culture on yield of soybean was undertaken under field condition by random block method. Rhizobium japonicum, cultures were grown and maintained on yeast extract agar medium and Azotobacter chroococcum was grown on Jensen medium. Field trial was carried out by the seed treated with bacterial suspension having 109 cells/ml. The present findings revealed a significant increase in nodulation and grain yield in mixed culture with gums of both the strains against their control and inoculums in conventional carrier lignite. The effect observed after yield of crop the increase in grain yield around 42%. Present investigation confirms beneficial effects of mixed gum inoculum of Rhizobium japonicum and Azotobacter chroococcum against inoculums in lignite and single culture. The synergistic effect on crop yield is due to the various growth promoting substances like Auxins, Gibberllin and Indole 1 3 acetic acid secreted by Azotobacter chroococcum. This possibly is helpful in nitrogen fixation and nodulation, which is beneficial to the prolonged survivability of Rhizobium japonicum in presence of media containing gums. Gums are extracted from the trees. Two different gums are used as carrier as gums are efficient in holding moisture even at high temperature. This gums are nutritive too.
机译:已知日本根瘤菌和嗜铬固氮菌分别是共生和非共生固氮菌株。混合接种的主要目的是使用口香糖而不是褐煤作为载体,以增强结瘤和谷物生产。褐煤不能有效地保持水分,这是因为生物肥料的货架期缩短并在生产区域造成污染。生产地区的工人患有肺部疾病。为了研究田间条件下采用随机分块法接种混合培养物对大豆产量的影响。日本根瘤菌,将培养物培养并保持在酵母提取物琼脂培养基上,而绿假单胞菌则在Jensen培养基上培养。用10 9 细胞/ ml的细菌悬液处理过的种子进行了田间试验。目前的发现表明,在常规的携带褐煤中,与对照的菌株和接种物的树胶混合培养的结瘤和谷物产量显着增加。作物单产后观察到的效果使谷物单产提高了约42%。目前的研究证实,日本根瘤菌和绿脓杆菌混合树胶接种物对褐煤和单一培养物中接种物的有益作用。对农作物产量的协同作用归因于各种生长促进物质,例如绿藻固氮菌分泌的生长素,赤霉素和吲哚1 3乙酸。这可能有助于固氮和结瘤,这有利于在含有牙龈的培养基存在下日本根瘤菌的生存期延长。牙龈是从树上提取的。两种不同的口香糖可用作载体,因为口香糖即使在高温下也能有效保持水分。这种牙龈也有营养。

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