首页> 外文期刊>European Journal of Soil Biology >Effects of co-inoculation of native Rhizobium and Pseudomonas strains on growth parameters and yield of two contrasting Phaseolus vulgaris L. genotypes under Cuban soil conditions.
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Effects of co-inoculation of native Rhizobium and Pseudomonas strains on growth parameters and yield of two contrasting Phaseolus vulgaris L. genotypes under Cuban soil conditions.

机译:共同接种天然根瘤菌和假单胞菌菌株对古巴土壤条件下两种不同菜豆的基因型生长参数和产量的影响。

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Plant growth-promoting rhizobacteria (PGPR) have been isolated from legume nodules, displaying a potential to enhance nodulation, growth and yield of legume plants when co-inoculated with Rhizobium. This study genetically characterizes bacteria isolated from bean root nodules in Cuba and investigates the effect of Rhizobium-Pseudomonas co-inoculation on common bean (Phaseolus vulgaris L.) genotypes under two different Cuban soil conditions. Bacteria were identified by partial sequencing of the 16S rDNA gene. Growth-promoting effects of Rhizobium pisi-Pseudomonas monteilii co-inoculation were evaluated under field conditions in consecutive years. Two contrasting bean genotypes (BAT-477 and DOR-364) were co-inoculated and grown in two different soil types (Cambisol and Oxisol) in Cuban farm areas. Several growth parameters were evaluated at three time points during the crop cycle (21, 42 and 87 days after planting). In total, 20 strains were isolated belonging to six different genera, i.e. Arthrobacter, Chryseobacterium, Enterobacter, Stenotrophomonas, Pseudomonas and Rhizobium. It was observed that native Rhizobium-Pseudomonas co-inoculation as compared to single Rhizobium inoculation increased the nodulation, growth parameters and yield of the different genotypes. The response of BAT-477 was more pronounced than that of DOR-364. These findings contribute to the understanding of the interplay between Rhizobium, PGPR and the plant host under different soil conditions. Importantly, co-inoculation with R. pisi and P. monteilii could be an effective biofertilization strategy for common bean production.
机译:从豆科植物的根瘤中分离出了促进植物生长的根瘤菌(PGPR),与根瘤菌一起接种时,具有增强豆科植物的根瘤,生长和产量的潜力。这项研究的遗传学特征是从古巴的豆类根瘤中分离出细菌,并研究了两种不同古巴土壤条件下根瘤菌-假单胞菌共接种对普通豆类(菜豆)基因型的影响。通过对16S rDNA基因进行部分测序来鉴定细菌。连续几年在田间条件下评估了皮氏根瘤菌-蒙特氏假单胞菌共接种的促生长作用。在古巴农场地区共接种了两种不同的大豆基因型(BAT-477和DOR-364),并在两种不同的土壤类型(Cambisol和Oxisol)中生长。在作物周期的三个时间点(种植后21、42和87天)评估了几个生长参数。总共分离出属于六个不同属的20个菌株,即节杆菌,金细菌,肠杆菌,嗜麦芽单胞菌,假单胞菌和根瘤菌。观察到,与单根根瘤菌接种相比,天然根瘤菌-假单胞菌共接种增加了不同基因型的结瘤,生长参数和产量。 BAT-477的响应比DOR-364的响应更明显。这些发现有助于了解不同土壤条件下根瘤菌,PGPR与植物宿主之间的相互作用。重要的是,与R. pisi和P. monteilii共同接种可能是普通豆生产的有效生物肥策略。

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