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首页> 外文期刊>Applied and Environmental Microbiology >Utilization of Heterologous Siderophores Enhances Levels of Iron Available to Pseudomonas putida in the Rhizosphere
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Utilization of Heterologous Siderophores Enhances Levels of Iron Available to Pseudomonas putida in the Rhizosphere

机译:异源铁载体的利用提高了根际中恶臭假单胞菌可利用的铁水平

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摘要

Pseudomonas spp. have the capacity to utilize siderophores produced by diverse species of bacteria and fungi, and the present study was initiated to determine if siderophores produced by rhizosphere microorganisms enhance the levels of iron available to a strain of Pseudomonas putida in this natural habitat. We used a previously described transcriptional fusion (pvd-inaZ) between an iron-regulated promoter (pvd) and the ice nucleation reporter gene (inaZ) to detect alterations in iron availability toP. putida. Ice nucleation activity (INA) expressed from thepvd-inaZ fusion by P. putida N1R or N1R Pvd?, a derivative deficient in the production of a pyoverdine siderophore, was inversely related to the concentration of ferric citrate in a culture medium. In culture, INA expressed by N1R Pvd? (pvd-inaZ) was reduced in the presence of the ferric complex of pseudobactin-358, a pyoverdine siderophore produced by P. putida WCS358 that can be utilized as a source of iron by N1R Pvd?. In the rhizosphere of cucumbers grown in sterilized soil, N1R Pvd? (pvd-inaZ) expressed INA, indicating that iron availability was sufficiently low in that habitat to allow transcription of the iron-regulated pvd promoter. Coinoculation with WCS358 or N1R significantly decreased INA expressed by N1R Pvd? (pvd-inaZ) in the rhizosphere, whereas coinoculation with a pyoverdine-deficient mutant of WCS358 did not reduce INA expressed by N1R Pvd?(pvd-inaZ). These results indicate that iron availability to N1R Pvd?(pvd-inaZ) in the rhizosphere was enhanced by the presence of another strain of P. putida that produces a pyoverdine that N1R Pvd?(pvd-inaZ) was able to utilize as a source of iron. In culture, strain N1R Pvd? also utilized ferric complexes of the siderophores enterobactin and aerobactin as sources of iron. In the rhizosphere of cucumbers grown in sterilized soil, INA expressed by N1R Pvd? (pvd-inaZ) was reduced in the presence of strains of Enterobacter cloacae that produced enterobactin, aerobactin, or both siderophores, but INA expressed by N1R Pvd?(pvd-inaZ) was not altered in the presence of a mutant of E. cloacae deficient in both enterobactin and aerobactin production. Therefore, the iron status of P. putida was altered by siderophores produced by an unrelated bacterium coinhabiting the rhizosphere. Finally, we demonstrated that INA expressed by N1R containing pvd-inaZ in the rhizosphere differed between plants grown in sterilized versus nonsterilized field soil. The results of this study demonstrate that (i) P. putida expresses genes for pyoverdine production and uptake in the rhizosphere, but the level of gene expression is influenced by other bacteria that coexist with P. putida in this habitat, and (ii) diverse groups of microorganisms can alter the availability of chemical resources in microbial habitats on root surfaces.
机译:假单胞菌它们具有利用多种细菌和真菌产生的铁载体的能力,因此本研究旨在确定根际微生物产生的铁载体是否能增强该自然生境中恶臭假单胞菌菌株可利用的铁水平。我们使用铁调控的启动子(pvd)和冰成核报告基因(inaZ)之间的先前描述的转录融合(pvd-inaZ)来检测铁对P的可用性变化。普蒂达。恶臭假单胞菌N1R或N1RPvdα由pvd-inaZ融合体表达的冰成核活性(INA),其缺乏生成嘧啶铁矿铁载体的衍生物,与培养基中柠檬酸铁的浓度成反比。在文化上,INA由N1R Pvd表达吗? (pvd-inaZ)在假细菌-358的铁络合物存在下被还原,该细菌是恶臭假单胞菌WCS358产生的吡over铁,可以被N1RPvdα用作铁源。在无菌土壤中生长的黄瓜的根际中,N1R Pvd? (pvd-inaZ)表达INA,表明该生境中铁的利用率足够低,无法转录铁调控的pvd启动子。与WCS358或N1R一起接种可显着降低N1R Pvd?表达的INA。 (pvd-inaZ)在根际中的表达,而与WCS358的嘧啶过量缺乏突变体共接种不会降低N1R Pvd?(pvd-inaZ)表达的INA。这些结果表明,存在另一株恶臭假单胞菌,该菌株产生了N1R Pvd?(pvd-inaZ)能够用作来源的吡over,从而增强了根际中N1R Pvd?(pvd-inaZ)的铁可用性。铁。在培养中,菌株N1R Pvd?也利用铁载体肠杆菌素和气杆菌素的铁配合物作为铁源。在无菌土壤中生长的黄瓜的根际中,INA用N1R Pvd?表达。 (pvd-inaZ)在产生肠杆菌素,气杆菌素或两种铁载体的阴沟肠杆菌菌株存在下降低,但在阴沟肠杆菌的突变体存在下,N1R Pvd?(pvd-inaZ)表达的INA不会改变。肠杆菌素和气杆菌素生产均不足。因此,恶臭假单胞菌的铁状态被共同居住在根际的无关细菌产生的铁载体改变。最后,我们证明了在无菌田和非灭菌田间种植的植物之间,根际中含pvd-inaZ的N1R表达的INA有所不同。这项研究的结果表明(i)恶臭假单胞菌在根际表达用于生产和吸收化脓定的基因,但是基因表达水平受到与该恶臭假单胞菌共存的其他细菌的影响,并且(ii)微生物群可以改变根表面微生物生境中化学资源的可用性。

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