首页> 外文期刊>Polish Journal of Environmental Studies >Effects of PGPR Co-inoculation on Growth, Phosphorus Nutrition and Phosphatase/Phytase Activities of Faba Bean under Different Phosphorus Availability Conditions
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Effects of PGPR Co-inoculation on Growth, Phosphorus Nutrition and Phosphatase/Phytase Activities of Faba Bean under Different Phosphorus Availability Conditions

机译:PGPR共同分离对不同磷可用条件下Faba Bean生长,磷营养和磷酸酶/植酸酶活性的影响

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摘要

Plant growth promoting rhizobacteria (PGPR) may improve crop yield and reduce or optimize the use of chemical fertilizers. We investigated the effect of co-inoculation on growth, phosphorus nutrition, and phosphatase-phytase activities of Vicia faba under different phosphorus availability conditions. The studied strains possess several PGPR traits such as nitrogen fixation ability, solubilization of phosphate and potassium, and production of exopolysaccharides, auxins, and siderophores. Based on their 16S rDNA sequences, the strains were identified as Rahnella aquatilis (PGP30), Pseudomonas brassicacearum (PGP291) and Rhizobium sp. (RhOF57A). In a greenhouse experiment, plants were inoculated with an individual strain or co-inoculated with two strains in addition to uninoculated controls. Each setup was supplemented either with tricalcium phosphate Ca-3(PO4)(2) (TCP treatment) or irrigated with potassium phosphate KH2PO4 (PO4 treatment). Regardless of the applied phosphorus source, co-inoculation significantly increased biomass and phosphorus concentrations in plants as well as in bean pods. Moreover, especially co-inoculation increased phosphatase-phytase activities in roots supplemented with tricalcium phosphate. This study suggests that co-inoculation of plants is a means to prevent phosphorus limitation and for judicious use of chemical fertilizers.
机译:植物生长促进robococacteria(PGPR)可以改善作物产量并减少或优化化学肥料的使用。我们研究了同系对不同磷的可用性条件下蚕豆生长,磷营养和磷酸酶 - 植酸酶活性的影响。研究的菌株具有几种PGPR特征,例如氮固定能力,磷酸盐溶解和钾,以及生产的外核,植物毒素和施工团。基于16S rDNA序列,菌株被鉴定为Rahnella Aquatilis(PGP30),假单胞菌芸苔(PGP291)和Rhizobium sp。 (rhof57a)。在温室实验中,除了未征收的对照之外,植物也用个体菌株接种或用两个菌株接种。每种设置用磷酸三钙Ca-3(PO4)(2)(2)(TCP处理)补充或用磷酸钾KH2PO4(PO4处理)灌溉。无论应用的磷源,共同接种显着增加植物中的生物质和磷浓度以及豆荚中的磷浓度。此外,特别是共同接种增加了补充有磷酸三钙的根中的磷酸酶 - 植物活性。本研究表明,植物的共同接种是一种预防磷限制和可明智使用化学肥料的方法。

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