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首页> 外文期刊>Plant Biosystems >Isolation of plant growth promoting rhizobacteria from wheat rhizosphere and their effect on improving growth, yield and nutrient uptake of plants.
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Isolation of plant growth promoting rhizobacteria from wheat rhizosphere and their effect on improving growth, yield and nutrient uptake of plants.

机译:从小麦根际中分离出促进根际生长的植物,并改善植物的生长,产量和养分吸收。

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摘要

This study was conducted to isolate plant growth promoting rhizobacteria (PGPR) from wheat rhizosphere and to evaluate their potential use for improving growth, yield and nutrient uptake of wheat. Eight PGPR strains were isolated and studied for their morphological and cultural characteristics, phosphate solubilization and indole acetic acid (IAA) production. All isolates produced IAA ranging from 5.5-31.0 micro g/ml, while four isolates were P-solubilizers. On the basis of morphological characteristics, IAA production and P solubilization, strains WPR-32, WPR-42, and WPR-51 were identified as PGPR and selected for further study. Efficiency of these three PGPR isolates and their mixtures (combinations) at two N levels (N at the rate of 50 and 100 kg ha-1) was evaluated in wheat under greenhouse conditions. Application of PGPR significantly increased plant height, shoot fresh weight and shoot dry weight by 25, 45, and 86%, respectively, while increase in root length, root fresh and dry weight was 27, 102, and 76%, respectively, over the un-inoculated control. PGPR also increased number of tillers per plant, 1000-grain weight and grain yield by 23, 48 and 59% over the control. Uptake of N and P by plant shoot was increased by three-fold, while K uptake was increased by 58% with PGPR application. The rate of increase in growth, yield and nutrient accumulation was even higher in treatments receiving combined application of PGPR and N-fertilizer. The concentration of NO3--N and available P in soil also increased with PGPR treatments. Results indicated that among the PGPR isolates, efficiency of mixture of isolates was higher than the individual isolates and isolate S7 was relatively more consistent than the remaining strains. This study demonstrated that application of PGPR with N fertilizer increased the fertilizer N efficiency by increasing N content and N uptake in plants. This study also indicated that use of PGPR had similar effects on growth, yield and nutrient uptake of wheat when compared with the low N level, i.e. N50. Therefore, application of PGPR with low fertilizer rates could be a viable supplementary strategy for maximum benefits in terms of cost of production and sustaining productivity. However, the applicability of this approach has to be tested in further field studies.
机译:进行这项研究是为了从小麦根际中分离出促进植物生长的根际细菌(PGPR),并评估其在改善小麦生长,产量和养分吸收方面的潜在用途。分离出八株PGPR菌株,并对其形态和培养特性,磷酸盐溶解和吲哚乙酸(IAA)的生产进行了研究。所有分离株产生的IAA范围为5.5-31.0 micro g / ml,而四个分离株为P-增溶剂。根据形态特征,IAA产生和P增溶,将WPR-32,WPR-42和WPR-51菌株鉴定为PGPR,并选择进行进一步研究。在温室条件下,在小麦中评估了这三种PGPR分离物及其混合物(组合)在两个氮水平(氮在50和100 kg ha -1 的比率)下的效率。施用PGPR可使株高,枝鲜重和枝干重分别增加25%,45%和86%,而根长,根鲜重和干重分别增加27%,102%和76%。未接种的对照。 PGPR还增加了每株植物的分ers数量,1000粒重和谷物产量,分别比对照提高了23%,48%和59%。 PGPR的施用使植物芽对氮和磷的吸收增加了三倍,而钾的吸收增加了58%。 PGPR和氮肥组合施用的处理,其生长,产量和养分积累的增长速率甚至更高。 PGPR处理后,土壤中 3 - -N和速效磷的含量也增加。结果表明,在PGPR分离株中,分离株的混合效率高于单个分离株,而S 7 分离株比其余菌株更一致。这项研究表明,PGPR与氮肥一起施用可通过增加植物中的氮含量和氮吸收量来提高肥料氮效率。这项研究还表明,与低氮水平(N <50)相比,PGPR的使用对小麦的生长,产量和养分吸收具有相似的影响。因此,以较低的肥料用量施用PGPR可能是一种可行的补充策略,可在生产成本和维持生产力方面实现最大收益。但是,这种方法的适用性必须在进一步的现场研究中进行测试。

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