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Effect of Gluconacetobacter diazotrophicus on Sweet Sorghum (Sorghum bicolor) in Tropical Semi-arid Soil

机译:糖醋杆菌重氮营养菌对热带半干旱土壤甜高粱的影响

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Gluconacetobacter diazotrophicus, an endophytic diazotroph, has been isolated from sugar-rich plants. This organism excretes part of fixed nitrogen in medium. An investigation was undertaken to isolate and evaluate strains of G. diazotrophicus on sweet sorghum (Sorghum bicolor (L.) Moench). Two strains of G. diazotrophicus isolated from endorhizosphere of sweet sorghum (Acdl and Acd2) were tested for their plant growth potential and nitrogen-fixing ability along with a reference strain obtained fromBrazil (Pal3) under green house and field conditions with sweet sorghum cultivar PC 121 in the presence of fertilizer nitrogen (20 and 40 kg N ha~(-1)) applied in the form of isotopically labelled ammonium sulphate [(~(15)NH_4)_2S0_4]. Results indicatedthat the strains Acdl, Acd2 and Pal3 at 30 and 60 days of plant age increased all the parameters of plant growth over uninoculated control. The performance of the reference strain, Pal3 was superior to Acdl and Acd2 strains. The bacterial population in the endorhizosphere of the host was higher in inoculated treatments than the controls. It was found that the %N fixed at 30 and 60 days of plant growth was ranging between 0.14 and 1.0 with the use of [(~(15)NH_4)_2S0_4] under greenhouse conditions. In afield experiment, inoculation of G. diazotrophicus (Acdl, Acd2 and Pal3) gave differential response in all plant growth and yield parameters. Strain Pal3 at a nitrogen level of 40 kg N ha~(-1) recorded the highest straw and grain yield.
机译:已经从富含糖的植物中分离出内生的重氮营养菌糖醋杆菌重氮营养菌。该生物体从培养基中排泄部分固定氮。进行了研究以分离和评估甜高粱(高粱双色(L.)Moench)上的重氮梭菌菌株。测试了从甜高粱根际内分离的两株重氮梭菌菌株(Acdl和Acd2)的植物生长潜力和固氮能力,以及从巴西(Pal3)在温室和田间条件下用甜高粱品种PC获得的参考菌株。 121在以同位素标记的硫酸铵[(〜(15)NH_4)_2S0_4]形式施用的肥料氮(20和40 kg N ha〜(-1))存在下。结果表明,与未接种的对照相比,在植物龄的30天和60天时,菌株Acd1,Acd2和Pal3增加了植物生长的所有参数。参照菌株Pal3的性能优于Acdl和Acd2菌株。在接种的处理中,宿主的根际内的细菌种群高于对照。发现在温室条件下,使用[(〜(15)NH_4)_2S0_4],固定在植物生长30天和60天的%N在0.14和1.0之间。在野外实验中,接种重氮营养菌(Acdl,Acd2和Pal3)在所有植物生长和产量参数上均产生差异响应。氮含量为40 kg N ha〜(-1)的Pal3菌株的秸秆和谷物产量最高。

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