The functions of yhcZ gene during Bacillus thuringiensis growth
Received date: 2018-03-07
Revised date: 2018-04-12
Online published: 2018-05-04
Supported by
Supported by the National Natural Science Foundation of China(31530095)
yhcZ and yhcY genes constitute a two-component system in Bacillus subtilis and B. cereus that regulates bacterial growth. However, the exact biological function of yhcZ gene in B. thuringiensis has not been fully elucidated. In this study, we proved that HD73_5824 is an yhcZ gene in B. thuringiensis subsp. kurstaki HD73 strain by combining gene functional annotation, analysis of upstream and downstream genes arrangement, and amino acid sequence alignment. This yhcZ gene may co-regulate bacterial growth with HD73_5825 gene (yhcY gene) by constituting a two-component system. Homologous recombination technology was employed to knock out yhcZ gene of HD73, resulting in a mutant strain HD (ΔyhcZ). The HD (ΔyhcZ) strain grew slower than wild-type strain HD73 in both LB and SSM medium. Re-introduction of yhcZ gene in HD (ΔyhcZ) strain can partially restore the growth, indicating that the deletion of yhcZ gene impacts the cell growth of HD73 strain. HD (ΔyhcZ) strain grew faster than HD73 strain in M9 medium with 0.4% glucose as the sole carbon source, implying that the yhcZ gene plays an important role in glucose utilization by HD73 strain. The results of biolog assay showed that HD (ΔyhcZ) exhibits a lower average well color development compared to HD73. HD(ΔyhcZ) cells also demonstrated a decreased capacity for absorbing and utilizing D/L-serine, formic acid, D-gluconic acid, L-histamine, D-methyl lactate, and citric acid, indicating that yhcZ gene could dramatically influence carbon source utilization of HD73 strains. Additionally, HD (ΔyhcZ) was less resistant to 8% NaCl, suggesting that yhcZ gene may be involved in the expression and regulation of genes related to high-salt stress response in bacterial cells. The results above show that the yhcZ gene significantly promotes glucose and other carbon sources utilization of HD73 strain during growth. Our findings will lay a foundation not only for analyzing the regulatory mechanisms of glucose and carbon sources utilization by yhcZ gene, but also providing a reference for the further research on bacterial growth and fermentation.
Linda Jia, Tantan Gao, Qi Peng, Jing Lv, Jie Zhang, Min Chen, Fuping Song . The functions of yhcZ gene during Bacillus thuringiensis growth[J]. Hereditas(Beijing), 2018 , 40(5) : 415 -424 . DOI: 10.16288/j.yczz.18-061
| [1] | Skerker JM, Prasol MS, Perchuk BS, Biondi EG, Laub MT . Two-component signal transduction pathways regulating growth and cell cycle progression in a bacterium: a system-level analysis. PLoS Biol, 2005,3(10):e334. | |||
| [2] | Li L, Wei KK, Jiang WH, Lu YH . Diversity of regulatory strategies for two-component system response regulators in bacteria. Sci Sin Vitae, 2017,47(5):462-469. | |||
| [2] | 李雷, 卫科科, 姜卫红, 芦银华 . 细菌双组分系统应答调控蛋白调控策略的多样性. 中国科学: 生命科学, 2017,47(5):462-469. | |||
| [3] | Krell T, Lacal J, Busch A, Silva-Jiménez H, Guazzaroni ME, Ramos JL . Bacterial sensor kinases: diversity in the recognition of environmental signals. Annu Rev Microbiol, 2010,64(1):539-559. | |||
| [4] | Li YH, Lau PCY, Tang N, Svensäter G, Ellen RP, Cvitkovitch DG . Novel two-component regulatory system involved in biofilm formation and acid resistance in Streptococcus mutans. J Bacteriol, 2002,184(22):6333-6342. | |||
| [5] | Hoch JA . A life in Bacillus subtilis signal transduction. Annu Rev Microbiol, 2017,71:1-19. | |||
| [6] | Beier D, Gross R . Regulation of bacterial virulence by two-component systems. Curr Opin Microbiol, 2006,9(2):143-152. | |||
| [7] | Worthington RJ, Blackledge MS, Melander C . Small- molecule inhibition of bacterial two-component systems to combat antibiotic resistance and virulence. Future Med Chem, 2013,5(11):1265-1284. | |||
| [8] | Vilas-Bôas GT, Peruca APS, Arantes OMN . Biology and taxonomy of Bacillus cereus, Bacillus anthracis, and Bacillus thuringiensis. Can J Microbiol, 2007,53(6):673-687. | |||
| [9] | Diomandé SE, Chamot S, Antolinos V, Vasai F, Guinebretière MH, Bornard I , Nguyen-the C, Broussolle V, Brillard J. The CasKR two-component system is required for the growth of mesophilic and psychrotolerant Bacillus cereus strains at low temperatures. Appl Environ Microbiol, 2014,80(8):2493-2503. | |||
| [10] | Diomandé SE, Doublet B, Vasaï F, Guinebretière MH, Broussolle V , Brillard J. Expression of the genes encoding the CasK/R two-component system and the DesA desaturase during Bacillus cereus cold adaptation. FEMS Microbiol Lett, 2016, 363(16): fnw174. | |||
| [11] | Esbelin J, Armengaud J, Zigha A, Duport C . ResDE-Dependent regulation of enterotoxin gene expression in Bacillus cereus: evidence for multiple modes of binding for ResD and interaction with Fnr. J Bacteriol, 2009,191(13):4419-4426. | |||
| [12] | Brillard J, Susanna K, Michaud C, Dargaignaratz C, Gohar M, Nielsen-Leroux C, Ramarao N, Kolstø AB , Nguyen-the C, Lereclus D, Broussolle V. The YvfTU two-component system is involved in plcR expression in Bacillus cereus. BMC Microbiol, 2008,8:183. | |||
| [13] | <
/
|