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Soil humidity as a productive conditioner of soybean culture through inoculation, co-inoculation and rooting

机译:通过接种,共同接种和生根作为大豆培养的土壤湿度

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In the soybean crop, the practice of inoculation is crucial for producing high yields. This is because biological nitrogen fixation (BNF) is the main supplier of the nutrient demand for this crop. However, a few environmental variables can also greatly influence the survival of the bacteria that control this process. In this context, the present work was performed to confirm the many ways in which soil moisture affects this process. In the field, we conducted two experiments at the times of the two sowing dates, 11/24/2015 and 12/17/2015, adopting the factorial 7 x 2 design, with four replications. The inoculation treatments included, non-inoculated (NI); not inoculated along with the nitrogen supplied at the 200 kg ha -1 (NI+N) dosage; inoculation with Bradyrhizobium [I (Brady)]; root enhancers (R); inoculation with Bradyrhizobium + root enhancers (I+R); co-inoculation with Bradyrhizobium + Azospirillum brasilense (I+Azo); co-inoculation with Bradyrhizobium + Azospirillum brasilense + root enhancers (I+Azo+R). The second factor included was the use or absence of a water jet (200 L ha -1 ) directed onto the seeds in the sowing furrow. Then estimations of the initial establishment of the plants, nodulation, and productivity components were measured. Water supplied to the sowing furrow had no effect on soybean nodulation and yield components. Co-inoculation promoted nodulation in soybean plants, particularly in dry mass of the nodules and number of nodules per plant.
机译:在大豆作物中,接种的实践对于生产高产率至关重要。这是因为生物氮固定(BNF)是该作物营养需求的主要供应商。然而,一些环境变量也可以大大影响控制该过程的细菌的存活。在这种情况下,进行本工作以确认土壤水分影响该过程的许多方式。在该领域,我们在两次播种日期,11/24/2015和2015年进行了两次实验,采用了源7 x 2设计,具有四个复制。存在的接种处理,非接种(Ni);没有接种在200kg HA -1(Ni + N)剂量下提供的氮气;用Bradyrhizobium [i(Brady)]接种;根增强剂(R);用Bradyrhizobium +根增强剂(I + R)接种;与Bradyrhizobium + Azospirillum Brasilense(I + AZO)共同接种;与Bradyrhizobium + Azospirillum Brasilense +根增强剂(I + AZO + R)共同接种。包括的第二个因素是使用或不存在于播种沟中的种子上的水射流(200L HA -1)。然后测量初始建立植物,结论和生产率组分的估计。供给播种沟渠的水对大豆瘤瘤和产量组分没有影响。共同接种促进大豆植物的瘤瘤,特别是在结节的干料和每株植物的结节数。

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