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Physiological and genetic characterization of calcium phosphate precipitation by Pseudomonas species

机译:假单胞菌种沉淀磷酸钙的生理和遗传特征

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摘要

Microbial biomineralization is a widespread phenomenon. The ability to induce calcium precipitation around bacterial cells has been reported in several Pseudomonas species but has not been thoroughly tested. We assayed 14 Pseudomonas strains representing five different species for the ability to precipitate calcium. Calcium phosphate precipitated adjacent to the colonies of all the Pseudomonas strains tested and also precipitated on the surface of colonies for several of the Pseudomonas strains assayed. The precipitate was commonly precipitated as amorphous calcium phosphate, however seven of the 14 Pseudomonas strains tested precipitated amorphous apatite in agar adjacent to the colonies. Out of the seven Pseudomonas strains that precipitated amorphous apatite, six are plant pathogenic. The formation of amorphous apatite was commonly observed in the area of the agar where amorphous calcium phosphate had previously formed. A transposon mutagenesis screen in Pseudomonas syringae pv. tomato DC3000 revealed genes involved in general metabolism, lipopolysaccharide and cell wall biogenesis, and in regulation of virulence play a role in calcium precipitation. These results shed light on the common ability of Pseudomonas species to perform calcium precipitation and the underlying genetic regulation involved in biomineralization.
机译:微生物生物矿化是普遍现象。在几种假单胞菌物种中已经报道了诱导细菌细胞周围钙沉淀的能力,但尚未进行彻底测试。我们分析了代表五个不同物种的14种假单胞菌菌株沉淀钙的能力。磷酸钙在所有测试的假单胞菌菌株的菌落附近沉淀,并且在所分析的几种假单胞菌菌株的菌落表面上沉淀。沉淀物通常以无定形磷酸钙沉淀,但是测试的14种假单胞菌菌株中有7个在邻近菌落的琼脂中沉淀出无定形磷灰石。在沉淀出无定形磷灰石的七个假单胞菌菌株中,有六个是植物致病性的。通常在琼脂先前已形成无定形磷酸钙的区域中观察到无定形磷灰石的形成。丁香假单胞菌PV中的转座子诱变筛选。番茄DC3000揭示了与一般代谢,脂多糖和细胞壁生物发生有关的基因,并且在调节毒力方面发挥了钙沉淀的作用。这些结果揭示了假单胞菌物种进行钙沉淀的共同能力以及涉及生物矿化的潜在遗传调控。

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