首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Siderophore-Mediated Iron Acquisition Influences Motility and Is Required for Full Virulence of the Xylem-Dwelling Bacterial Phytopathogen Pantoea stewartii subsp. stewartii
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Siderophore-Mediated Iron Acquisition Influences Motility and Is Required for Full Virulence of the Xylem-Dwelling Bacterial Phytopathogen Pantoea stewartii subsp. stewartii

机译:铁载体介导的铁捕获会影响运动性并且对于木质部寄居细菌性植物病原菌Pantoea stewartii亚种的完全毒性是必需的。斯图瓦蒂

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摘要

Iron is a key micronutrient for microbial growth but is often present in low concentrations or in biologically unavailable forms. Many microorganisms overcome this challenge by producing siderophores, which are ferric-iron chelating compounds that enable the solubilization and acquisition of iron in a bioactive form. Pantoea stewartii subsp. stewartii, the causal agent of Stewart's wilt of sweet corn, produces a siderophore under iron-limiting conditions. The proteins involved in the biosynthesis and export of this siderophore are encoded by the iucABCD-iutA operon, which is homologous to the aerobactin biosynthetic gene cluster found in a number of enteric pathogens. Mutations in iucA and iutA resulted in a decrease in surface-based motility that P. stewartii utilizes during the early stages of biofilm formation, indicating that active iron acquisition impacts surface motility for P. stewartii. Furthermore, bacterial movement in planta is also dependent on a functional siderophore biosynthesis and uptake pathway. Most notably, siderophore-mediated iron acquisition is required for full virulence in the sweet corn host, indicating that active iron acquisition is essential for pathogenic fitness for this important xylem-dwelling bacterial pathogen.
机译:铁是微生物生长的关键微量营养素,但通常以低浓度或生物学上不可用的形式存在。许多微生物通过产生铁载体克服了这一挑战,铁载体是铁-铁螯合化合物,能够以生物活性形式溶解和获得铁。 Pantoea stewartii亚种。 Stewartii是Stewart甜玉米枯萎病的病原体,它在铁限制条件下产生铁载体。参与该铁载体的生物合成和输出的蛋白质由iucABCD-iutA操纵子编码,该操纵子与在许多肠道病原体中发现的航空细菌素生物合成基因簇同源。 iucA和iutA中的突变导致Stewartii在生物膜形成的早期阶段利用的基于表面的运动性降低,表明活性铁的获取影响Stewartii的表面运动性。此外,植物中细菌的移动还取决于功能性铁载体的生物合成和摄取途径。最值得注意的是,甜玉米宿主中的完全毒力需要铁载体介导的铁获取,这表明活性铁的获取对于这种重要的木质部居留细菌病原体的致病适应性至关重要。

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