Vyas Riddhi, Pandya Maharshi, Pohnerkar Jayashree, Kumar G Naresh
Department of Biochemistry, Faculty of Science, The Maharaja Sayajirao University of Baroda, Vadodara, Gujarat 390002 India.
3 Biotech. 2020 Mar;10(3):118. doi: 10.1007/s13205-020-2115-8. Epub 2020 Feb 15.
Biofilm formation is considered as a stress combating strategy adopted by bacteria in response to variety of cellular and environmental signals. Impaired respiration due to low oxygen concentrations is one such signal that triggers wrinkling and robust biofilm formation in . hemoglobin (VHb) improves microaerobic growth and bioproduct synthesis in a variety of bacteria by supplying oxygen to the respiratory chain. Present study was carried out to determine the effect of VHb on multicellularity of . Thus, DK1042 (WT) was genetically modified to express and genes under the control of P43 promoter at locus by double cross over events. Biofilm formation by the integrant NRM1113 and WT was monitored on Lysogeny broth (LB) and LB containing glycerol and manganese (LBGM) medium. The WT produced more wrinkled colonies than NRM1113 on LB and LBGM medium. Concomitantly, biofilm-associated sporulation and production of pulcherriminic acid was decreased in NRM1113 as compared to WT on LB as well as LBGM. Expression studies of genes encoding structural components of biofilms revealed ~ 70% down-regulation of gene in NRM1113 on both LB and LBGM which is correlated with reduced wrinkling in NRM1113. Moreover, NRM1113 showed increased colony expansion compared to WT in LB, LBGM and high osmolarity conditions. VHb expression alters various processes in different host cells, our study represents that VHb modulates biofilm formation, sporulation and pulcherriminic acid formation in DK1042.
生物膜形成被认为是细菌为应对各种细胞和环境信号而采取的一种应激对抗策略。低氧浓度导致的呼吸受损就是这样一种信号,它会触发[具体细菌名称]中出现褶皱并形成坚固的生物膜。血红蛋白(VHb)通过向呼吸链供应氧气来改善多种细菌的微需氧生长和生物产品合成。本研究旨在确定VHb对[具体细菌名称]多细胞性的影响。因此,通过双交换事件,对DK1042(野生型)进行基因改造,使其在[具体位点]的P43启动子控制下表达[相关基因名称]基因。在溶菌肉汤(LB)以及含有甘油和锰的LB(LBGM)培养基上监测整合体NRM1113和野生型的生物膜形成情况。在LB和LBGM培养基上,野生型产生的菌落比NRM1113更皱。与此同时,与野生型相比,在LB以及LBGM上,NRM1113中与生物膜相关的孢子形成和嗜铁素酸的产生减少。对生物膜结构成分编码基因的表达研究表明,在LB和LBGM上,NRM1113中[相关基因名称]基因下调约~70%,这与NRM1113中褶皱减少相关。此外,在LB、LBGM和高渗透压条件下,与野生型相比,NRM1113的菌落扩展增加。VHb表达会改变不同宿主细胞中的各种过程,我们的研究表明VHb调节[具体细菌名称]DK1042中的生物膜形成、孢子形成和嗜铁素酸形成。