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1.
Microb Cell Fact ; 23(1): 144, 2024 May 22.
Artigo em Inglês | MEDLINE | ID: mdl-38773450

RESUMO

Fengycin is an important member of the lipopeptide family with a wide range of applications in the agricultural, food, medical and cosmetic industries. However, its commercial application is severely hindered by low productivity and high cost. Therefore, numerous studies have been devoted to improving the production of fengycin. We summarize these studies in this review with the aim of providing a reference and guidance for future researchers. This review begins with an overview of the synthesis mechanism of fengycin via the non-ribosomal peptide synthetases (NRPS), and then delves into the strategies for improving the fengycin production in recent years. These strategies mainly include fermentation optimization and metabolic engineering, and the metabolic engineering encompasses enhancement of precursor supply, application of regulatory factors, promoter engineering, and application of genome-engineering (genome shuffling and genome-scale metabolic network model). Finally, we conclude this review with a prospect of fengycin production.


Assuntos
Lipopeptídeos , Engenharia Metabólica , Engenharia Metabólica/métodos , Lipopeptídeos/biossíntese , Lipopeptídeos/metabolismo , Fermentação , Peptídeo Sintases/genética , Peptídeo Sintases/metabolismo
2.
J Cell Physiol ; 2023 Mar 22.
Artigo em Inglês | MEDLINE | ID: mdl-36946428

RESUMO

Bacillus subtilis XF-1 is a well-investigated biocontrol agent against the biotrophic Plasmodiophora brassicae Woron., the causal agent of clubroot disease of cruciferous crops. The present study demonstrates that XF-1 could efficiently control clubroot disease via leaf spraying and provides an understanding of the biocontrol mechanisms. High-performance thin-layer chromatography (HTPLC) analysis indicated the presence of fengycin-type cyclopeptides in the supernatant. A ppsB deletion mutant of XF-1 resulted in no fengycin production, significantly reduced the lysis rate of testing spores in vitro and the primary infection rate of root hair in vivo, and decreased the protection value against clubroot disease under the greenhouse conditions. Confocal laser scanning microscopy proved that fengycin was not required for leaf internalization and root colonization. Moreover, the expression level of the ppsB gene in XF-1 was regulated by its cell density in root during interaction with P. brassicae. In addition, the ΔppsB mutant of XF-1 could not efficiently control disease because it led to a lower activation level of the jasmonic acid and salicylic acid signaling pathways in roots, which are necessary for the plant defense reaction upon pathogen invasion. Altogether, the present study provides a new understanding of specific cues in the interaction between B. subtilis and P. brassicae as well as insights into the application of B. subtilis in agriculture.

3.
Appl Microbiol Biotechnol ; 107(19): 6103-6120, 2023 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-37561179

RESUMO

Bacillus subtilis species complex is known as lipopeptide-producer with biotechnological potential for pharmaceutical developments. This study aimed to identify lipopeptides from a bacterial isolate and evaluate their antifungal effects. Here, we isolated and identified a lipopeptide-producing bacterium as a species of Bacillus subtilis complex (strain UL-1). Twenty lipopeptides (six iturins, six fengycins, and eight surfactins) were identified in the crude extract (CE) and fractions (F1, F2, F3, and F4), and the highest content of total lipopeptides was observed in CE and F2. The chemical quantification data corroborate with the hemolytic and antifungal activities that CE and F2 were the most hemolytic and inhibited the fungal growth at lower concentrations against Fusarium spp. In addition, they caused morphological changes such as shortening and/or atypical branching of hyphae and induction of chlamydospore-like structure formation, especially in Fusarium solani. CE was the most effective in inhibiting the biofilm formation and in disrupting the mature biofilm of F. solani reducing the total biomass and the metabolic activity at concentrations ≥ 2 µg/mL. Moreover, CE significantly inhibited the adherence of F. solani conidia on contact lenses and nails as well as disrupted the pre-formed biofilms on nails. CE at 100 mg/kg was nontoxic on Galleria mellonella larvae, and it reduced the fungal burden in larvae previously infected by F. solani. Taken together, the lipopeptides obtained from strain UL-1 demonstrated a potent anti-Fusarium effect inducing morphological alterations and antibiofilm activities. Our data open further studies for the biotechnological application of these lipopeptides as potential antifungal agents. KEY POINTS: • Lipopeptides inhibit Fusarium growth and induce chlamydospore-like structures. • Lipopeptides hamper the adherence of conidia and biofilms of Fusarium solani. • Iturins, fengycins, and surfactins were associated with antifungal effects.


Assuntos
Antifúngicos , Bacillus subtilis , Bacillus subtilis/metabolismo , Antifúngicos/química , Esporos Fúngicos/metabolismo , Biofilmes , Lipopeptídeos/metabolismo , Peptídeos Cíclicos/metabolismo , Doenças das Plantas/microbiologia
4.
Cell Mol Life Sci ; 79(5): 263, 2022 Apr 28.
Artigo em Inglês | MEDLINE | ID: mdl-35482131

RESUMO

With the onset of Listeria monocytogenes resistance to the bacteriocin nisin, the search for alternative antimicrobial treatments is of fundamental importance. In this work, we set out to investigate proteins and lipids involved in the resistance mechanisms of L. monocytogenes against the antimicrobial peptides (AMPs) nisin and fengycin. The effect of sub-lethal concentrations of nisin and lipopeptide fengycin secreted by Bacillus velezensis P34 on L. monocytogenes was investigated by mass spectrometry-based lipidomics and proteomics. Both AMPs caused a differential regulation of biofilm formation, confirming the promotion of cell attachment and biofilm assembling after treatment with nisin, whereas growth inhibition was observed after fengycin treatment. Anteiso branched-chain fatty acids were detected in higher amounts in fengycin-treated samples (46.6%) as compared to nisin-treated and control samples (39.4% and 43.4%, respectively). In addition, a higher relative abundance of 30:0, 31:0 and 32:0 phosphatidylglycerol species was detected in fengycin-treated samples. The lipidomics data suggest the inhibition of biofilm formation by the fengycin treatment, while the proteomics data revealed downregulation of important cell wall proteins involved in the building of biofilms, such as the lipoteichoic acid backbone synthesis (Lmo0927) and the flagella-related (Lmo0718) proteins among others. Together, these results provide new insights into the modification of lipid and protein profiles and biofilm formation in L. monocytogenes upon exposure to antimicrobial peptides.


Assuntos
Bacteriocinas , Listeria monocytogenes , Nisina , Peptídeos Antimicrobianos , Lipídeos , Listeria monocytogenes/fisiologia , Nisina/farmacologia
5.
Appl Microbiol Biotechnol ; 106(7): 2557-2567, 2022 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-35362719

RESUMO

D-Xylose is a key component of lignocellulosic biomass and the second-most abundant carbohydrate on the planet. As one of the most powerful cyclo-lipopeptide antibiotics, fengycin displays strong wide-spectrum antifungal and antiviral, as well as potential anti-cancer activity. Pyruvate is a key metabolite linking the biosynthesis of fatty acids and amino acids, the precursors for fengycin. In this study, the genes encoding the Dahms xylose-utilization pathway were integrated into the amyE site of Bacillus subtilis 168, and based on the metabolic characteristics of the Dahms pathway, the acetate kinase (ackA) and lactate dehydrogenase (ldh) genes were knocked out. Then, the metabolic control module II was designed to convert glycolaldehyde, another intermediate of the Dahms pathway, in addition to pathways for the conversion of acetaldehyde into malic acid and oxaloacetic acid, resulting in strain BSU03. In the presence of module II, the content of acetic and lactic acid decreased significantly, and the xylose uptake efficiency increased. At the same time, the yield of fengycin increased by 87% compared to the original strain. Additionally, the underlying factors for the increase of fengycin titer were revealed through metabonomic analysis. This study therefore demonstrates that this regulation approach can not only optimize the intracellular fluxes for the Dahms pathway, but is also conducive to the synthesis of secondary metabolites similar to fengycin. KEY POINTS: • The expression and effect of the Dahms pathway on the synthesis of fengycin in Bacillus subtilis 168. • The expression of regulatory module II can promote the metabolic rate of the Dahms pathway and increase the synthesis of the fengycin.


Assuntos
Lipopeptídeos , Xilose , Antifúngicos/metabolismo , Bacillus subtilis/genética , Bacillus subtilis/metabolismo , Lipopeptídeos/metabolismo , Xilose/metabolismo
6.
Lett Appl Microbiol ; 75(2): 450-459, 2022 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-35620862

RESUMO

In this study, an endophytic Bacillus sp. strain (K7) was isolated from the medicinally important ornamental plant, Jasminum officinale. Biochemical analyses were conducted to evaluate the nature of the extracted product, which displayed strong anticandidal activity against Candida albicans (CA) SC5314, as evident from the results obtained in agar-cup diffusion tests, phase-contrast microscopy, scanning electron microscopy and minimum inhibitory concentration assays. After confirming the presence of the gene clusters encoding the lipopeptides iturins and fengycin in the genome of K7, their corresponding molecular ions were identified using MALDI-TOF-MS. 3D structures of the lipopeptides were downloaded from specific databases and molecular docking was performed against a vital CA enzyme, exo-1,3-beta-glucanase, involved in cell wall remodelling, adhesion to polymer materials and biofilm formation. The docking score of iturins was found to be -8·6 and -8·2 kcal mol-1 and for fengycin it was -9·4 kcal mol-1 , indicating a strong affinity of these cyclic lipopeptides towards exo-1,3-beta-glucanase. The combined in vitro and in silico anticandidal studies suggested that these secreted lipopeptides from Bacillus sp. may be used as potential therapeutics against opportunistic and complicated infections of CA.


Assuntos
Bacillus , Bacillus/metabolismo , Candida albicans/metabolismo , Glucana 1,3-beta-Glucosidase/metabolismo , Lipopeptídeos/farmacologia , Simulação de Acoplamento Molecular , Peptídeos Cíclicos/química , Peptídeos Cíclicos/farmacologia
7.
Molecules ; 26(20)2021 Oct 19.
Artigo em Inglês | MEDLINE | ID: mdl-34684889

RESUMO

Fengycin, as a lipopeptide produced by Bacillus subtilis, displays potent activity against filamentous fungi, including Aspergillus flavus and Soft-rot fungus, which exhibits a wide range of potential applications in food industries, agriculture, and medicine. To better clarify the regulatory mechanism of fructose on fengycin biosynthesis, the iTRAQ-based proteomic analysis was utilized to investigate the differentially expressed proteins of B. amyloliquefaciens fmb-60 cultivated in ML (without fructose) and MLF (with fructose) medium. The results indicated that a total of 811 proteins, including 248 proteins with differential expression levels (162 which were upregulated (fold > 2) and 86, which were downregulated (fold < 0.5) were detected, and most of the proteins are associated with cellular metabolism, biosynthesis, and biological regulation process. Moreover, the target genes' relative expression was conducted using quantitative real-time PCR to validate the proteomic analysis results. Based on the results of proteome analysis, the supposed pathways of fructose enhancing fengycin biosynthesis in B. amyloliquefaciens fmb-60 can be summarized as improvement of the metabolic process, including cellular amino acid and amide, fatty acid biosynthesis, peptide and protein, nucleotide and nucleobase-containing compound, drug/toxin, cofactor, and vitamin; reinforcement of peptide/protein translation, modification, biological process, and response to a stimulus. In conclusion, this study represents a comprehensive and systematic investigation of the fructose mechanism on improving fengycin biosynthesis in B. amyloliquefaciens, which will provide a road map to facilitate the potential application of fengycin or its homolog in defending against filamentous fungi.


Assuntos
Bacillus amyloliquefaciens/metabolismo , Proteínas de Bactérias/metabolismo , Frutose/metabolismo , Lipopeptídeos/metabolismo , Proteômica/métodos
8.
BMC Genomics ; 21(1): 767, 2020 Nov 05.
Artigo em Inglês | MEDLINE | ID: mdl-33153447

RESUMO

BACKGROUND: Bacillus subtilis strain NCD-2 is an excellent biocontrol agent against plant soil-borne diseases and shows broad-spectrum antifungal activities. This study aimed to explore some secondary metabolite biosynthetic gene clusters and related antimicrobial compounds in strain NCD-2. An integrative approach combining genome mining and structural identification technologies using ultra-high-performance liquid chromatography coupled to quadrupole time-of-flight tandem mass spectrometry (UHPLC-MS/MS), was adopted to interpret the chemical origins of metabolites with significant biological activities. RESULTS: Genome mining revealed nine gene clusters encoding secondary metabolites with predicted functions, including fengycin, surfactin, bacillaene, subtilosin, bacillibactin, bacilysin and three unknown products. Fengycin, surfactin, bacillaene and bacillibactin were successfully detected from the fermentation broth of strain NCD-2 by UHPLC-QTOF-MS/MS. The biosynthetic gene clusters of bacillaene, subtilosin, bacillibactin, and bacilysin showed 100% amino acid sequence identities with those in B. velezensis strain FZB42, whereas the identities of the surfactin and fengycin gene clusters were only 83 and 92%, respectively. Further comparison revealed that strain NCD-2 had lost the fenC and fenD genes in the fengycin biosynthetic operon. The biosynthetic enzyme-related gene srfAB for surfactin was divided into two parts. Bioinformatics analysis suggested that FenE in strain NCD-2 had a similar function to FenE and FenC in strain FZB42, and that FenA in strain NCD-2 had a similar function to FenA and FenD in strain FZB42. Five different kinds of fengycins, with 26 homologs, and surfactin, with 4 homologs, were detected from strain NCD-2. To the best of our knowledge, this is the first report of a non-typical gene cluster related to fengycin synthesis. CONCLUSIONS: Our study revealed a number of gene clusters encoding antimicrobial compounds in the genome of strain NCD-2, including a fengycin synthetic gene cluster that might be unique by using genome mining and UHPLC-QTOF-MS/MS. The production of fengycin, surfactin, bacillaene and bacillibactin might explain the biological activities of strain NCD-2.


Assuntos
Anti-Infecciosos , Bacillus subtilis , Genoma Bacteriano , Bacillus subtilis/genética , Cromatografia Líquida de Alta Pressão , Lipopeptídeos , Família Multigênica , Espectrometria de Massas em Tandem
9.
BMC Microbiol ; 20(1): 160, 2020 06 15.
Artigo em Inglês | MEDLINE | ID: mdl-32539679

RESUMO

BACKGROUND: There is an urgent need to discover biocontrol agents to control bacterial wilt. This study reports on a new lipopeptide-producing biocontrol strain FJAT-46737 and explores its lipopeptidic compounds, and this study investigates the antagonistic effects of these compounds. RESULTS: Based on a whole genome sequence analysis, the new strain FJAT-46737 was identified as Bacillus velezensis, and seven gene clusters responsible for the synthesis of bioactive secondary metabolites in FJAT-46737 were predicted. The antimicrobial results demonstrated that FJAT-46737 exhibited broad-spectrum antimicrobial activities in vitro against three bacteria and three fungi. Pot experiments showed that the control efficiencies for tomato bacterial wilt of the whole cultures, the 2-fold diluted supernatants and the crude lipopeptide of FJAT-46737 were 66.2%, 82.0%, and 96.2%, respectively. The above results suggested that one of the antagonistic mechanisms of FJAT-46737 was the secretion of lipopeptides consisting of iturins, fengycins and surfactins. The crude lipopeptides had significant antagonistic activities against several pathogens (including Ralstonia solanacearum, Escherichia coli and Fusarium oxysporum) and fengycins were the major antibacterial components of the lipopeptides against R. solanacearum in vitro. Furthermore, the rich organic nitrogen sources (especially yeast extracts) in the media promoted the production of fengycin and surfactin by FJAT-46737. The secretion of these two lipopeptides was related to temperature fluctuations, with the fengycin content decreasing by 96.6% and the surfactins content increasing by 59.9% from 20 °C to 40 °C. The optimal temperature for lipopeptide production by FJAT-46737 varied between 20 °C and 25 °C. CONCLUSIONS: The B. velezensis strain FJAT-46737 and its secreted lipopeptides could be used as new sources of potential biocontrol agents against several plant pathogens, and especially the bacterial wilt pathogen R. solanacearum.


Assuntos
Bacillus/fisiologia , Doenças das Plantas/prevenção & controle , Solanum lycopersicum/crescimento & desenvolvimento , Sequenciamento Completo do Genoma/métodos , Cromatografia Líquida , Escherichia coli/efeitos dos fármacos , Escherichia coli/patogenicidade , Fusarium/efeitos dos fármacos , Fusarium/patogenicidade , Genoma Bacteriano , Lipopeptídeos/isolamento & purificação , Lipopeptídeos/farmacologia , Solanum lycopersicum/microbiologia , Nitrogênio/metabolismo , Ralstonia solanacearum/efeitos dos fármacos , Ralstonia solanacearum/patogenicidade , Espectrometria de Massas em Tandem
10.
Microb Cell Fact ; 19(1): 205, 2020 Nov 10.
Artigo em Inglês | MEDLINE | ID: mdl-33167976

RESUMO

BACKGROUND: Plipastatin is a potent Bacillus antimicrobial lipopeptide with the prospect to replace conventional antifungal chemicals for controlling plant pathogens. However, the application of this lipopeptide has so far been investigated in a few cases, principally because of the yield in low concentration and unknown regulation of biosynthesis pathways. B. subtilis synthesizes plipastatin by a non-ribosomal peptide synthetase encoded by the ppsABCDE operon. In this study, B. subtilis 3NA (a non-sporulation strain) was engineered to gain more insights about plipastatin mono-production. RESULTS: The 4-phosphopantetheinyl transferase Sfp posttranslationally converts non-ribosomal peptide synthetases from inactive apoforms into their active holoforms. In case of 3NA strain, sfp gene is inactive. Accordingly, the first step was an integration of a repaired sfp version in 3NA to construct strain BMV9. Subsequently, plipastatin production was doubled after integration of a fully expressed degQ version from B. subtilis DSM10T strain (strain BMV10), ensuring stimulation of DegU-P regulatory pathway that positively controls the ppsABSDE operon. Moreover, markerless substitution of the comparably weak native plipastatin promoter (Ppps) against the strong constitutive promoter Pveg led to approximately fivefold enhancement of plipastatin production in BMV11 compared to BMV9. Intriguingly, combination of both repaired degQ expression and promoter exchange (Ppps::Pveg) did not increase the plipastatin yield. Afterwards, deletion of surfactin (srfAA-AD) operon by the retaining the regulatory comS which is located within srfAB and is involved in natural competence development, resulted in the loss of plipastatin production in BMV9 and significantly decreased the plipastatin production of BMV11. We also observed that supplementation of ornithine as a precursor for plipastatin formation caused higher production of plipastatin in mono-producer strains, albeit with a modified pattern of plipastatin composition. CONCLUSIONS: This study provides evidence that degQ stimulates the native plipastatin production. Moreover, a full plipastatin production requires surfactin synthetase or some of its components. Furthermore, as another conclusion of this study, results point towards ornithine provision being an indispensable constituent for a plipastatin mono-producer B. subtilis strain. Therefore, targeting the ornithine metabolic flux might be a promising strategy to further investigate and enhance plipastatin production by B. subtilis plipastatin mono-producer strains.


Assuntos
Bacillus subtilis/metabolismo , Ácidos Graxos/biossíntese , Engenharia Metabólica/métodos , Oligopeptídeos/biossíntese , Peptídeos Cíclicos/biossíntese , Anti-Infecciosos/metabolismo , Bacillus subtilis/genética , Proteínas de Bactérias/metabolismo , Lipopeptídeos/biossíntese , Óperon , Peptídeo Sintases/metabolismo , Regiões Promotoras Genéticas
11.
Appl Microbiol Biotechnol ; 104(17): 7467-7481, 2020 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-32696296

RESUMO

Potato late blight caused by Phytophthora infestans is one of the most serious plant diseases worldwide. Cyclic lipopeptides (CLPs) extracted from Bacillus strains exhibit a promising effect in the biocontrol of a variety of phytopathogens. However, the specific inhibitory effects and underlying mechanisms of CLPs against P. infestans are poorly understood. In this study, we showed that Bacillus pumilus W-7 can inhibit the growth of P. infestans mycelium. Two metabolites from W-7, surfactin and fengycin B, were identified using MS/MS. Fengycin B inhibited mycelium growth by inducing mycelium deformations, oxidative damage, and mitochondrial dysfunction. Surfactin induced potato plant defense responses by increasing the expression of the biocontrol genes (pod, pal, and cat) and their enzyme activities (POD, PAL, and CAT). Also, surfactin and fengycin B could exhibit a synergistic inhibitory effect on P. infestans. Taken together, our findings indicate that B. pumilus W-7 and its CLPs are potential environmentally friendly and effective biocontrol agents for the preservation of potato crops. KEY POINTS: • Lipopeptides of surfactin and fengycin B are extracted from Bacillus pumilus W-7. • Fengycin B inhibits Phytophthora infestans mycelium growth in a direct manner. • Surfactin induces potato plant defense responses to control late blight.


Assuntos
Bacillus pumilus , Phytophthora infestans , Solanum tuberosum , Lipopeptídeos/farmacologia , Peptídeos Cíclicos , Doenças das Plantas/prevenção & controle , Sulfonamidas , Espectrometria de Massas em Tandem
12.
Appl Microbiol Biotechnol ; 104(19): 8077-8087, 2020 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-32813066

RESUMO

Lipopeptides are a group of second metabolites of Bacillus and have multiple activities such as inhibiting fungi, bacteria, viruses, and tumors, showing a great potential application in agricultural and biomedical fields. However, low production severely restrained their application in practice. Deeply understanding the key elements of lipopeptide synthesis and the regulatory strategies is essential to target the improvement of lipopeptide production. The synthetic pathways of different lipopeptides are different, but closely and mutually interfered. The loading of fatty acid chains and the extension of peptide chains are two key steps for the synthesis of different lipopeptides by Bacillus. The selection of fatty acid chains, the loading order of amino acids, and the recognition of the final cyclization site are the critical steps to determine the end products of different lipopeptides. In order to find the key elements for precisely directing the formation of different lipopeptides by Bacillus, the key structural elements and possible regulatory strategies that have been reported in the production of different lipopeptides, mainly surfactin, iturin, and fengycin by Bacillus, were summarized and compared. The possible ways to improve the production of different targeted lipopeptides were proposed. KEY POINTS: • The selectivity of fatty acids is determined by specific domains. • The COM domain and the PKS docking domain determine the order of amino acids. • The regulation patterns of different domains for lipopeptide synthesis are different. • The regulation of different lipopeptide products overlaps each other.


Assuntos
Bacillus , Aminoácidos , Bacillus subtilis , Ácidos Graxos , Lipopeptídeos , Peptídeos Cíclicos
13.
J Membr Biol ; 252(6): 627-638, 2019 12.
Artigo em Inglês | MEDLINE | ID: mdl-31612244

RESUMO

Fengycins are compounds produced by bacteria of the Bacillus genus with strong antifungal activity. In this work, lipids extracted from fungal and oomycetal molds were used to assess the ability of fengycin to bind and insert into complex membrane models prepared as Langmuir lipid monolayers. In addition, fengycin-induced leakage in liposomes prepared from these complex lipid extracts was also evaluated. Fengycin's ability to bind and incorporate into these membranes seemed to be mainly related to ergosterol content. Other membrane characteristics such as phospholipid fatty acyl chain length played a more peripheral role. A high ergosterol concentration appeared to allow other membrane characteristics generally associated with fengycin binding and/or insertion, such as higher proportion of phosphatidylcholine head groups or increased fatty acyl unsaturation, to be present without adversely affecting membrane integrity. Increased membrane leakage was also generally associated with the presence of low or no ergosterol. Leakage was also correlated with the previously reported biological activity of fengycin on these molds.


Assuntos
Lipopeptídeos/química , Lipopeptídeos/farmacologia , Lipossomos/química , Alternaria/química , Bacillus subtilis/efeitos dos fármacos , Ergosterol/química , Cinética , Bicamadas Lipídicas/química
14.
World J Microbiol Biotechnol ; 35(3): 52, 2019 Mar 13.
Artigo em Inglês | MEDLINE | ID: mdl-30868269

RESUMO

Several Bacillus strains are used as biocontrol agents, as they frequently have strong antagonistic effects against microbial plant pathogens. Bacillus strain SZMC 6179J, isolated from tomato rhizosphere, was previously shown to have excellent in vitro antagonistic properties against the most important fungal pathogens of tomato (Alternaria solani, Botrytis cinerea, Phytophthora infestans and Sclerotinia sclerotiorum) as well as several Fusarium species. Taxonomic investigations revealed that it is a member of the B. subtilis subsp. subtilis group and very closely related with the reference type strain B. subtilis subsp. subtilis 168. The sequenced genome of strain SZMC 6179J contains the genes responsible for the synthesis of the extracellular antibiotics surfactin, fengycin and bacilysin. Compared to strain 168, a prophage-like region is missing from the genome of SZMC 6179J, while there are 106 single nucleotide polymorphisms and 23 deletion-insertion polymorphisms. The high biocontrol potential of strain SZMC 6179J may results from a single base deletion in the sfp gene encoding the transcription factor of the surfactin and fengycin operons. Hypermutated regions reflecting short-time evolutionary processes could be detected in SZMC 6179J. The deletion-insertion polymorphism in the sfp gene and the detected hypermutations can be suggested as genetic determinants of biocontrol features in B. subtilis.


Assuntos
Bacillus subtilis/genética , Bacillus subtilis/metabolismo , Agentes de Controle Biológico/metabolismo , Mutação , Sequência de Aminoácidos , Antibacterianos/metabolismo , Antifúngicos/metabolismo , Bacillus subtilis/classificação , Toxinas Bacterianas/genética , Toxinas Bacterianas/metabolismo , Dipeptídeos/genética , Dipeptídeos/metabolismo , Fungos/efeitos dos fármacos , Fungos/patogenicidade , Genes Bacterianos/genética , Lipopeptídeos/genética , Lipopeptídeos/metabolismo , Solanum lycopersicum/microbiologia , Família Multigênica , Tipagem de Sequências Multilocus , Peptídeos Cíclicos/genética , Filogenia , Doenças das Plantas/microbiologia , Polimorfismo de Nucleotídeo Único , Metabolismo Secundário/genética , Fatores de Transcrição/genética , Sequenciamento Completo do Genoma
15.
Appl Environ Microbiol ; 84(18)2018 09 15.
Artigo em Inglês | MEDLINE | ID: mdl-29980550

RESUMO

Rice blast caused by the phytopathogen Magnaporthe grisea poses a serious threat to global food security and is difficult to control. Bacillus species have been extensively explored for the biological control of many fungal diseases. In the present study, the marine bacterium Bacillus subtilis BS155 showed a strong antifungal activity against M. grisea The active metabolites were isolated and identified as cyclic lipopeptides (CLPs) of the fengycin family, named fengycin BS155, by the combination of high-performance liquid chromatography (HPLC) and electrospray ionization mass spectrometry (ESI-MS) and tandem mass spectrometry (ESI-MS/MS). Analyses using scanning and transmission electron microscopy revealed that fengycin BS155 caused morphological changes in the plasma membrane and cell wall of M. grisea hyphae. Using comparative proteomic and biochemical assays, fengycin BS155 was demonstrated to reduce the mitochondrial membrane potential (MMP), induce bursts of reactive oxygen species (ROS), and downregulate the expression level of ROS-scavenging enzymes. Simultaneously, fengycin BS155 caused chromatin condensation in fungal hyphal cells, which led to the upregulation of DNA repair-related protein expression and the cleavage of poly(ADP-ribose) polymerase (PARP). Altogether, our results indicate that fengycin BS155 acts by inducing membrane damage and dysfunction of organelles, disrupting MMP, oxidative stress, and chromatin condensation, resulting in M. grisea hyphal cell death. Therefore, fengycin BS155 and its parent bacterium are very promising candidates for the biological control of M. grisea and the associated rice blast and should be further investigated as such.IMPORTANCE Rice (Oryza sativa L.) is the most important crop and a primary food source for more than half of the world's population. Notably, scientists in China have developed several types of rice that can be grown in seawater, avoiding the use of precious freshwater resources and potentially creating enough food for 200 million people. The plant-affecting fungus Magnaporthe grisea is the causal agent of rice blast disease, and biological rather than chemical control of this threatening disease is highly desirable. In this work, we discovered fengycin BS155, a cyclic lipopeptide material produced by the marine bacterium Bacillus subtilis BS155, which showed strong activity against M. grisea Our results elucidate the mechanism of fengycin BS155-mediated M. grisea growth inhibition and highlight the potential of B. subtilis BS155 as a biocontrol agent against M. grisea in rice cultivation under both fresh- and saltwater conditions.


Assuntos
Bacillus subtilis/química , Cromatina/metabolismo , Proteínas Fúngicas/metabolismo , Lipopeptídeos/farmacologia , Magnaporthe/efeitos dos fármacos , Magnaporthe/metabolismo , Espécies Reativas de Oxigênio/metabolismo , Água do Mar/microbiologia , Bacillus subtilis/isolamento & purificação , Bacillus subtilis/metabolismo , Cromatina/genética , Cromatografia Líquida de Alta Pressão , Proteínas Fúngicas/genética , Hifas/genética , Hifas/metabolismo , Lipopeptídeos/química , Lipopeptídeos/isolamento & purificação , Lipopeptídeos/metabolismo , Magnaporthe/genética , Oryza/microbiologia , Doenças das Plantas/microbiologia , Espectrometria de Massas por Ionização por Electrospray
16.
Arch Microbiol ; 200(5): 783-791, 2018 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-29423562

RESUMO

Bacillus subtilis is a wealth source of lipopeptide molecules such as iturins, surfactins and fengycins or plipastatins endowed with a range of biological activities. These molecules, designated secondary metabolites, are synthesized via non-ribosomal peptides synthesis (NRPS) machinery and are most often subjected to a complex regulation with involvement of several regulatory factors. To gain novel insights on mechanism regulating fengycin production, we investigated the effect of the fascinating polynucleotide phosphorylase (PNPase), as well as the effect of lipopeptide surfactin. Compared to the wild type, the production of fengycin in the mutant strains B. subtilis BBG235 and BBG236 altered for PNPase has not only decreased to about 70 and 40%, respectively, but also hampered its antifungal activity towards the plant pathogen Botrytis cinerea. On the other hand, mutant strains BBG231 (srfAA-) and BBG232 (srfAC-) displayed different levels of fengycin production. BBG231 had registered an important decrease in fengycin production, comparable to that observed for BBG235 or BBG236. This study permitted to establish that the products of pnpA gene (PNPase), and srfAA- (surfactin synthetase) are involved in fengycin production.


Assuntos
Bacillus subtilis/metabolismo , Proteínas de Bactérias/fisiologia , Lipopeptídeos/biossíntese , Polirribonucleotídeo Nucleotidiltransferase/fisiologia , Bacillus subtilis/genética , Expressão Gênica , Regulação Bacteriana da Expressão Gênica , Lipopeptídeos/genética , Mutação , Óperon
17.
Arch Microbiol ; 200(8): 1205-1216, 2018 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-29947835

RESUMO

Several Bacillus strains have been well studied for their ability to control soil-borne plant diseases. This property is linked to the production of several families of lipopeptides. Depending of their structure, these compounds show antifungal and/or plant systemic resistance inducing activities. In this work, the biodiversity of lipopeptides produced by different antifungal Bacillus strains isolated from seeds, rhizospheric, and non-rhizospheric soils in Algeria was analyzed. Sixteen active strains were characterized by PCR for their content in genes involved in lipopeptide biosynthesis and by MALDI-ToF for their lipopeptide production, revealing a high biodiversity of products. The difficulty to detect kurstakin genes led us to design two new sets of specific primers. An interesting potential of antifungal activity and the synthesis of two forms of fengycins differing in the eighth amino acid (Gln/Glu) were found from the strain 8. Investigation of its genome led to the finding of an adenylation domain of the fengycin synthetase predicted to activate the glutamate residue instead of the glutamine one. According to the comparison of both the results of MALDI-ToF-MS and genome analysis, it was concluded that this adenylation domain could activate both residues at the same time. This study highlighted that the richness of the Algerian ecosystems in Bacillus strains is able to produce: surfactin, pumilacidin, lichenysin, kurstakin, and different types of fengycins.


Assuntos
Antibiose/fisiologia , Antifúngicos/química , Bacillus/classificação , Bacillus/genética , Agentes de Controle Biológico/química , Lipopeptídeos/biossíntese , Lipopeptídeos/química , Argélia , Bacillus/isolamento & purificação , Biodiversidade , Primers do DNA , Genoma Bacteriano/genética , Peptídeo Sintases/genética , Peptídeos Cíclicos/metabolismo , Doenças das Plantas/microbiologia , Sementes/microbiologia , Microbiologia do Solo
18.
Anal Bioanal Chem ; 410(26): 6827-6836, 2018 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-30074087

RESUMO

The rapid and accurate quantification of lipopeptide families in biological samples are challenging. We present the development and validation of a method for simultaneous quantification of three families of lipopeptides (iturins, fengycins, and surfactins) and their isoforms, as well as the homologous series. The method was optimized in UPLC-MS for a column temperature at 65 °C, injection volume of 5 µL, and sample temperature of 10 °C. The SIM mode was used for detection and quantification of lipopeptides exhibiting ions [M + H]+ and [M + 2H]2+. Since the maximum mass detection threshold of the equipment is 1250 Da and the fengycins have ions between 1435 and 1505 Da, the ions [M + 2H]2+ were chosen for fengycin identification. The monitored ions were as follows: m/z 1043.5, 1057.5, 1071.5, 718.3, 725.4, 739.4, 732.4, 746.4, 753.4, 1008.6, 1022.6, and 1036.6. The compounds were separated by reverse-phase chromatography using a C18 analytical column in a total time of 19 min. Standard curves were linear with rw 0.99 for all analytes. Intra- and inter-day precision for samples (50, 250, and 750 µg L-1) were within recommended limits. The proposed analytical method was capable of simultaneously quantifying 12 isoforms and homologous series of lipopeptide families in biological samples, thus making it an important industrial tool in the evaluation of lipopeptide production processes. Graphical abstract ᅟ.


Assuntos
Bacillus subtilis/metabolismo , Fermentação , Lipopeptídeos/análise , Isoformas de Proteínas/metabolismo , Cromatografia de Fase Reversa/métodos , Meios de Cultura , Limite de Detecção , Espectrometria de Massas/métodos , Padrões de Referência , Reprodutibilidade dos Testes , Temperatura
19.
J Appl Microbiol ; 125(3): 867-875, 2018 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-29729222

RESUMO

AIMS: Biofilms are composed of micro-organisms within a matrix of chemically complex polymer compounds and from these structures many unknown competitive factors are suggested that many considered are important consequences for biological control. This research was undertaken to study further the endophyte, Bacillus mojavensis and its relationships to biofilm and two classes of lipopeptides considered relevant for biocontrol of plant pathogens. METHODS AND RESULTS: Laser ablation electrospray ionization mass spectrometry and conventional MS/MS were used to study in situ biofilm production and the production of lipopeptides fengycin and surfactin in different strains of B. mojavensis in plate and test tube culture on two media. All strains were capable of producing biofilm in vitro along with the accumulation of surfactin and fengycin although no concentration-dependent relationship between lipopeptide accumulation and biofilm was observed. CONCLUSION: All strains studied produce biofilms in culture with the accumulated surfactin and fengycin, demonstrating that endophytic bacteria also produced biofilms. SIGNIFICANCE AND IMPACT OF THE STUDY: This study demonstrates that this endophytic species produced biofilms along with two biocontrol compounds of which one, surfactin, considered by others as a quorum sensor, highlighting its ecological role as a signalling mechanism in planta.


Assuntos
Bacillus/química , Biofilmes , Lipopeptídeos , Peptídeos Cíclicos , Espectrometria de Massas por Ionização por Electrospray/métodos , Lipopeptídeos/análise , Lipopeptídeos/química , Peptídeos Cíclicos/análise , Peptídeos Cíclicos/química
20.
J Chem Ecol ; 44(4): 374-383, 2018 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-29492723

RESUMO

Bacillus subtilis has shown success in antagonizing plant pathogens where strains of the bacterium produce antimicrobial cyclic lipopeptides (CLPs) in response to microbial competitors in their ecological niche. To gain insight into the inhibitory role of these CLPs, B. subtilis strain B9-5 was co-cultured with three pathogenic fungi. Inhibition of mycelial growth and spore germination was assessed and CLPs produced by B. subtilis B9-5 were quantified over the entire period of microbial interaction. B. subtilis B9-5 significantly inhibited mycelial growth and spore germination of Fusarium sambucinum and Verticillium dahliae, but not Rhizopus stolonifer. LC-MS analysis revealed that B. subtilis differentially produced fengycin and surfactin homologs depending on the competitor. CLP quantification suggested that the presence of Verticillium dahliae, a fungus highly sensitive to the compounds, caused an increase followed by a decrease in CLP production by the bacterium. In co-cultures with Fusarium sambucinum, a moderately sensitive fungus, CLP production increased more gradually, possibly because of its slower rate of spore germination. With co-cultures of the tolerant fungus Rhizopus stolonifer, B. subtilis produced high amounts of CLPs (per bacterial cell) for the duration of the interaction. Variations in CLP production could be explained, in part, by the pathogens' overall sensitivities to the bacterial lipopeptides and/or the relative growth rates between the plant pathogen and B. subtilis. CLP production varied substantially temporally depending on the targeted fungus, which provides valuable insight concerning the effectiveness of B. subtilis B9-5 protecting its ecological niche against the ingress of these pathogens.


Assuntos
Peptídeos Catiônicos Antimicrobianos/química , Bacillus subtilis/metabolismo , Fusarium/fisiologia , Lipopeptídeos/química , Peptídeos Catiônicos Antimicrobianos/isolamento & purificação , Peptídeos Catiônicos Antimicrobianos/farmacologia , Cromatografia Líquida de Alta Pressão , Fusarium/efeitos dos fármacos , Fusarium/isolamento & purificação , Lipopeptídeos/isolamento & purificação , Lipopeptídeos/farmacologia , Espectrometria de Massas , Peptídeos Cíclicos/química , Peptídeos Cíclicos/isolamento & purificação , Peptídeos Cíclicos/farmacologia , Doenças das Plantas/microbiologia , Doenças das Plantas/prevenção & controle , Rhizopus/efeitos dos fármacos , Rhizopus/isolamento & purificação , Rhizopus/fisiologia , Esporos Fúngicos/efeitos dos fármacos , Esporos Fúngicos/crescimento & desenvolvimento , Verticillium/efeitos dos fármacos , Verticillium/isolamento & purificação , Verticillium/fisiologia
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