Ongena Marc, Jacques Philippe, Delfosse Philippe, Thonart Philippe
Centre Wallon de Biologie Industrielle, Unité de Bio-industries, Faculté Universitaire des Sciences Agronomiques, Gembloux, Belgium.
Biometals. 2002 Mar;15(1):1-13. doi: 10.1023/a:1013157824411.
Fluorescent Pseudomonas species are characterized by the production of pyoverdin-type siderophores for Fe3+ acquisition in iron-limited environments. Since it produces a structurally specific pyoverdin, Pseudomonas putida strain BTP1 could represent a valuable tool in an attempt to correlate the structural features of these compounds with some specificity in their two main properties i.e. affinity for iron and recognition rate by other Pseudomonas strains. An uncommonly high affinity for iron of the pyoverdin synthetized by P. putida BTP1 was observed by comparing both the apparent stability constant and the decomplexation kinetic of its ferric complex with those of ferripyoverdins from other strains. On another hand, results from growth stimulation experiments and labeled ferripyoverdin uptake assays highlighted the very low recognition rate of BTP1 isopyoverdins by membrane receptors of foreign strains. By contrast, P. putida BTP1 was able to utilize a broad spectrum of structurally unrelated exogenous pyoverdins by means of multiple receptors that are likely constitutively expressed in its outer membrane. The unusual traits of its pyoverdin-mediated iron acquisition system should contribute to enlarge the ecological competence of Pseudomonas putida BTP1 in terms of colonization and persistence in the rhizosphere.
荧光假单胞菌属的特点是在铁限制环境中产生吡嗪型铁载体以获取Fe3+。由于恶臭假单胞菌菌株BTP1产生结构特异的吡嗪,它可能是一种有价值的工具,可用于尝试将这些化合物的结构特征与其两个主要特性(即对铁的亲和力和被其他假单胞菌菌株识别的速率)的某些特异性联系起来。通过比较恶臭假单胞菌BTP1合成的吡嗪铁配合物的表观稳定性常数和解离动力学与其他菌株的铁吡嗪的相应数据,观察到其对铁具有异常高的亲和力。另一方面,生长刺激实验和标记的铁吡嗪摄取试验结果表明,外来菌株的膜受体对BTP1异吡嗪的识别率非常低。相比之下,恶臭假单胞菌BTP1能够通过可能在外膜中组成性表达的多种受体利用广泛的结构不相关的外源吡嗪。其吡嗪介导的铁获取系统的异常特性应有助于扩大恶臭假单胞菌BTP1在根际定殖和持久性方面的生态竞争力。