首页> 外文期刊>Acta Agronomica >Influence of plant growth-promoting rhizobacteria (PGPR) on blackberry (Rubus glaucus Benth. cv. thornless) growth under semi-cover and field conditions
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Influence of plant growth-promoting rhizobacteria (PGPR) on blackberry (Rubus glaucus Benth. cv. thornless) growth under semi-cover and field conditions

机译:半覆盖和田间条件下植物促生根瘤菌(PGPR)对黑莓(Rubus glaucus Benth。cv。thornless)生长的影响

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This study shows the effect of three plant growth-promoting rhizobacteria (PGPR) strains of the genus Bacillus on blackberry (Rubus glaucus Benth.) development under semi cover and field conditions (cropping systems). Endogenous strain Bacillus subtilis GIBI-200, B. pumilus GIBI-206, its mixture (B. subtilis GIBI-200 + B. pumilus GIBI-206), and commercial strain B. subtilis QST-713 were compared to conventional mineral fertilization (Control) in each cropping system. Field condition system presented higher values (P0.001) than semi cover in: total number of branches (7.32), number of productive branches (7.0), flowers per raceme (26.2), and the lowest percentage of unproductive branches (6.1%). Significant differences (P0.05) were obtained in total number of branches over time by bacterial strains. Nonetheless, last observation of this variable did not present statistical differences among strains and mineral fertilization. No significant differences were evident in terms of number, length, diameter and flowers in the productive branches regarding to bacterial strains and Control. B. subtilis GIBI-200 + B. pumilus GIBI-206 showed a similar statistical behavior compare to mineral fertilization in the number of clusters (8.3) and percentage of unproductive branches (11.1%). In addition, GIBI-200 + GIBI-206, despite statistical equality, exposed greater values than individual strains. Field condition system remains the most promising alternative for the development of blackberry crop and PGPR acts as biofertilizers achieving effects in the long-term growth of blackberry similar to mineral fertilization. Mixtures of PGPR can produce a synergic effect and new combinations should be evaluated in future studies.
机译:这项研究显示了半覆盖和田间条件(种植系统)下,芽孢杆菌属的三种植物促生根瘤菌(PGPR)菌株对黑莓(Rubus glaucus Benth。)发育的影响。将内源枯草芽孢杆菌GIBI-200,短小芽孢杆菌GIBI-206,其混合物(枯草芽孢杆菌GIBI-200 +短小芽孢杆菌GIBI-206)和商业菌株枯草芽孢杆菌QST-713与常规矿物施肥(对照)。现场条件系统在以下方面显示出比半覆盖更高的值(P <0.001):分支总数(7.32),生产性分支的数量(7.0),每个总状花序的花朵(26.2),非生产性分支的百分比最低(6.1%) 。细菌菌株随时间的分支总数获得了显着差异(P <0.05)。尽管如此,最后对该变量的观察并未显示出菌株和矿物施肥之间的统计学差异。关于细菌菌株和对照,在生产分支中的数量,长度,直径和花方面没有明显差异。枯草芽孢杆菌GIBI-200 +短小芽孢杆菌GIBI-206与矿物施肥相比,在簇数(8.3)和非生产性枝的百分比(11.1%)方面显示出相似的统计行为。此外,尽管统计上均等,GIBI-200 + GIBI-206的暴露值要高于个别菌株。田间条件系统仍然是黑莓作物发展的最有希望的替代方法,PGPR作为生物肥料,在黑莓的长期生长中起到类似于矿物肥料的作用。 PGPR的混合物可产生协同作用,新组合应在以后的研究中进行评估。

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