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Phosphate deficiency induced biofilm formation of Burkholderia on insoluble phosphate granules plays a pivotal role for maximum release of soluble phosphate

机译:磷酸盐缺乏诱导不溶性磷酸盐颗粒上伯克霍尔德菌生物膜的形成对于最大程度地释放可溶性磷酸盐起关键作用

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摘要

Involvement of biofilm formation process during phosphate (P) solubilization by rhizobacterial strains is not clearly understood. Scanning electron microscopic observations revealed prominent biofilm development on tricalcium phosphate as well as on four different rock phosphate granules by two P solubilizing rhizobacteria viz. Burkholderia tropica P4 and B. unamae P9. Variation in the biofilm developments were also observed depending on the total P content of insoluble P used. Biofilm quantification suggested a strong correlation between the amounts of available P and degrees of biofilm formation. Lower concentrations of soluble P directed both the organisms towards compact biofilm development with maximum substratum coverage. Variation in the production of extracellular polymeric substances (EPS) in the similar pattern also suggested its close relationship with biofilm formation by the isolates. Presence of BraI/R quorum sensing (QS) system in both the organisms were detected by PCR amplification and sequencing of two QS associated genes viz. braR and rsaL, which are probably responsible for biofilm formation during P solubilization process. Overall observations help to hypothesize for the first time that, biofilm on insoluble P granules creates a close environment for better functioning of organic acids secreted by Burkholderia strains for maximum P solubilization during P deficient conditions.
机译:尚不清楚根瘤菌菌株溶解磷酸盐(P)期间生物膜形成过程的参与。扫描电子显微镜观察揭示了通过两个P增溶的根瘤菌在磷酸三钙以及在四个不同的磷酸岩颗粒上的显着生物膜形成。热带伯克霍尔德菌P4和B. unamae P9。根据所用不溶性磷的总磷含量,还观察到生物膜发育的变化。生物膜定量表明,有效磷含量与生物膜形成程度之间存在很强的相关性。较低的可溶性P浓度会导致两个生物都向致密的生物膜发展,并具有最大的基质覆盖率。胞外聚合物(EPS)产量以相似的模式变化也表明其与分离株形成生物膜的密切关系。通过两个QS相关基因的PCR扩增和测序检测了两种生物中BraI / R群体感应(QS)系统的存在。 braR和rsaL,可能与P增溶过程中生物膜的形成有关。总体观察首次帮助我们假设,不溶性P颗粒上的生物膜创造了一个密闭环境,以使Burkholderia菌株分泌的有机酸更好地发挥功能,从而在P缺乏的条件下最大程度地溶解P。

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