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1.
World J Microbiol Biotechnol ; 40(3): 80, 2024 Jan 28.
Artigo em Inglês | MEDLINE | ID: mdl-38281212

RESUMO

Pseudomonas fluorescens complex consists of environmental and some human opportunistic pathogenic bacteria. It includes mainly beneficial and few phytopathogenic species that are common inhabitants of soil and plant rhizosphere. Many members of the group are in fact known as effective biocontrol agents of plant pathogens and as plant growth promoters and for these attitudes they are of great interest for biotechnological applications. The antagonistic activity of fluorescent Pseudomonas is mainly related to the production of several antibiotic compounds, lytic enzymes, lipopeptides and siderophores. Several volatile organic compounds are also synthesized by fluorescent Pseudomonas including different kinds of molecules that are involved in antagonistic interactions with other organisms and in the induction of systemic responses in plants. This review will mainly focus on the volatile compounds emitted by some members of P. fluorescens complex so far identified, with the aim to highlight the role played by these molecules in the interaction of the bacteria with phytopathogenic micro and macro-organisms and plants.


Assuntos
Pseudomonas fluorescens , Pseudomonas , Humanos , Plantas/microbiologia , Rizosfera , Desenvolvimento Vegetal/fisiologia , Doenças das Plantas/prevenção & controle , Doenças das Plantas/microbiologia
2.
Front Plant Sci ; 14: 1235669, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37849842

RESUMO

The bacterium Stenotrophomonas rhizophila is known to be beneficial for plants and has been frequently isolated from the rhizosphere of crops. In the present work, we isolated from the phyllosphere of an ornamental plant an epiphytic strain of S. rhizophila that we named Ep2.2 and investigated its possible application in crop protection. Compared to S. maltophilia LMG 958, a well-known plant beneficial species which behaves as opportunistic human pathogen, S. rhizophila Ep2.2 showed distinctive features, such as different motility, a generally reduced capacity to use carbon sources, a greater sensitivity to fusidic acid and potassium tellurite, and the inability to grow at the human body temperature. S. rhizophila Ep2.2 was able to inhibit in vitro growth of the plant pathogenic fungi Alternaria alternata and Botrytis cinerea through the emission of volatile compounds. Simultaneous PTR-MS and GC-MS analyses revealed the emission, by S. rhizophila Ep2.2, of volatile organic compounds (VOCs) with well-documented antifungal activity, such as furans, sulphur-containing compounds and terpenes. When sprayed on tomato leaves and plants, S. rhizophila Ep2.2 was able to restrict B. cinerea infection and to prime the expression of Pti5, GluA and PR1 plant defense genes.

3.
Curr Microbiol ; 80(5): 154, 2023 Mar 29.
Artigo em Inglês | MEDLINE | ID: mdl-36988726

RESUMO

The endophyte EHF3 strain was isolated in Algeria from an Euphorbia helioscopia plant growing in a fallow field. The strain was characterized by biochemical and physiological tests and assayed for the production of secondary metabolites involved in biocontrol, for plant growth promotion ability and for pathogenicity. The strain was identified by BIOLOG test as Curtobacterium flaccumfaciens. Biochemical and physiological characterization revealed that the strain was able to secrete protease, caseinase and amylase enzymes, to grow up to 37 °C and at pH values 5 to 9. C. flaccumfaciens EHF3 strain was incapable of solubilizing phosphorus and to produce IAA, HCN siderophores and phenazine compounds. The strain showed a moderate swimming and swarming motility and produced biofilm. EHF3 strain was positive at the hypersensitivity test on tobacco plants and induced symptoms on three varieties of bean resembling to those of the bacterial wilt disease induced by C. flaccumfaciens pv. flaccumfaciens. The preliminary data reported in this study, regarding the detection of a pathogenic C. flaccumfaciens strain, as endophyte of a E. helioscopia plant, highlight the role of non-host plants as reservoir of this bacterial pathogen.


Assuntos
Actinobacteria , Actinomycetales , Euphorbia , Fabaceae , Fabaceae/microbiologia , Plantas
4.
Plants (Basel) ; 11(17)2022 Aug 29.
Artigo em Inglês | MEDLINE | ID: mdl-36079627

RESUMO

Plant growth promoting (PGP) bacteria are known to enhance plant growth and protect them from environmental stresses through different pathways. The rhizosphere of perennial plants, including olive, may represent a relevant reservoir of PGP bacteria. Here, seven bacterial strains isolated from olive rhizosphere have been characterized taxonomically by 16S sequencing and biochemically, to evaluate their PGP potential. Most strains were identified as Pseudomonas or Bacillus spp., while the most promising ones belonged to genera Pseudomonas and Curtobacterium. Those strains have been tested for their capacity to grow under osmotic or salinity stress and to improve the germination and early development of Triticum durum subjected or not to those stresses. The selected strains had the ability to grow under severe stress, and a positive effect has been observed in non-stressed seedlings inoculated with one of the Pseudomonas strains, which showed promising characteristics that should be further evaluated. The biochemical and taxonomical characterization of bacterial strains isolated from different niches and the evaluation of their interaction with plants under varying conditions will help to increase our knowledge on PGP microorganisms and their use in agriculture.

5.
Methods Mol Biol ; 2536: 475-493, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35819622

RESUMO

Essential oils (EOs) and oleoresins are complex mixtures mainly made up of terpenes, synthesized by a wide variety of plants. Individual terpenes may show broad-spectrum activity against different plant pathogens, and their combination into EO and oleoresin mixtures enhances plant chemical defense. The interest in EOs has significantly increased due to the trend of using natural products as herbicides, insecticidal and antimicrobial agents. In addition, the use of plant mixtures is an emerging approach to face the problem of antimicrobial resistance in agriculture. This chapter reports guidelines about plant sample collection for the production of EOs and provides protocols to test their activity as antimicrobial agents against bacteria and fungi. It also describes a solvent-free method for the inclusion of EOs into ß-cyclodextrins. This type of formulate is prepared to turn liquid EOs into easily manageable water-soluble powders, and to control the release of volatile compounds, aiming to increase EOs' applications in agriculture.


Assuntos
Anti-Infecciosos , Óleos Voláteis , Anti-Infecciosos/farmacologia , Bactérias , Fungos , Óleos Voláteis/química , Óleos Voláteis/farmacologia , Plantas/química , Terpenos/farmacologia
6.
Molecules ; 26(11)2021 Jun 05.
Artigo em Inglês | MEDLINE | ID: mdl-34198771

RESUMO

This study investigated within-plant variability of the main bioactive compounds in rosemary (Rosmarinus officinalis L.). Volatile terpenes, including the enantiomeric distribution of monoterpenes, and phenols were analyzed in young and mature foliar, cortical and xylem tissues. In addition, antimicrobial activity of rosmarinic acid and selected terpenes was evaluated against two rosemary pathogens, Alternaria alternata and Pseudomonas viridiflava. Data showed that total concentration and relative contents of terpenes changed in relation to tissue source and age. Their highest total concentration was observed in the young leaves, followed by mature leaves, cortical and xylem tissues. Rosmarinic acid and carnosic acid contents did not show significant differences between leaf tissues of different ages, while young and mature samples showed variations in the content of four flavonoids. These results are useful for a more targeted harvesting of rosemary plants, in order to produce high-quality essential oils and phenolic extracts. Microbial tests showed that several terpenes and rosmarinic acid significantly inhibited the growth of typical rosemary pathogens. Overall, results on antimicrobial activity suggest the potential application of these natural compounds as biochemical markers in breeding programs aimed to select new chemotypes less susceptible to pathogen attacks, and as eco-friendly chemical alternatives to synthetic pesticides.


Assuntos
Anti-Infecciosos/farmacologia , Fenóis/farmacologia , Rosmarinus/química , Terpenos/farmacologia , Alternaria/efeitos dos fármacos , Alternaria/crescimento & desenvolvimento , Anti-Infecciosos/química , Cinamatos/farmacologia , Depsídeos/farmacologia , Cromatografia Gasosa-Espectrometria de Massas , Testes de Sensibilidade Microbiana , Viabilidade Microbiana/efeitos dos fármacos , Óleos Voláteis/química , Óleos Voláteis/farmacologia , Especificidade de Órgãos , Fenóis/química , Pseudomonas/efeitos dos fármacos , Pseudomonas/crescimento & desenvolvimento , Rosmarinus/microbiologia , Terpenos/química , Ácido Rosmarínico
7.
World J Microbiol Biotechnol ; 37(6): 99, 2021 May 12.
Artigo em Inglês | MEDLINE | ID: mdl-33978868

RESUMO

The Pseudomonas fluorescens complex contains at least eight phylogenetic groups and each of these includes several bacterial species sharing ecological and physiological traits. Pseudomonas chlororaphis classified in a separate group is represented by three different subspecies that show distinctive traits exploitable for phytostimulation and biocontrol of phytopathogens. The high level of microbial competitiveness in soil as well as the effectiveness in controlling several plant pathogens and pests can be related to the P. chlororaphis ability to implement different stimulating and toxic mechanisms in its interaction with plants and the other micro- and macroorganisms. Pseudomonas chlororaphis strains produce antibiotics, such as phenazines, pyrrolnitrine, 2-hexyl, 5-propyl resorcinol and hydrogen cyanide, siderophores such as pyoverdine and achromobactine and a complex blend of volatile organic compounds (VOCs) that effectively contribute to the control of several plant pathogens, nematodes and insects. Phenazines and some VOCs are also involved in the induction of systemic resistance in plants. This complex set of beneficial strategies explains the high increasing interest in P. chlororaphis for commercial and biotechnological applications. The aim of this review is to highlight the role of the different mechanisms involved in the biocontrol activity of P. chlororaphis strains.


Assuntos
Agentes de Controle Biológico/farmacologia , Desenvolvimento Vegetal/efeitos dos fármacos , Pseudomonas chlororaphis/química , Resistência à Doença , Filogenia , Metabolismo Secundário
8.
Microbiol Res ; 239: 126517, 2020 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-32535393

RESUMO

Three morphological mutants (M71a, M71b, M71c) of the antagonist Pseudomonas chlororaphis M71, naturally arose during a biocontrol trial against the phytopathogenic fungus Fusarium oxysporum f.sp. radicis-lycopersisci. In this study, the three mutants were investigated to elucidate their role in the biocontrol of plant pathogens. M71a and M71b phenotypes were generated by a mutation in the two-component system GacS/GacA. The mutation determined an increase in siderophore production and an impaired ability to release proteases, to swarm, to produce phenazine and AHLs and to colonize tomato roots. In vitro antagonistic activity against different plant pathogens was partially reduced in M71a, while M71b resulted effective only against Pythium ultimum. Biocontrol efficacy against Fusarium oxysporum f.sp. radicis-lycopersisci, was partially reduced in M71a and completely lost in M71b. M71c phenotype was impaired in swarming motility, did not produce biofilms and its antagonistic activity was similar to the parental M71 strain. M71c showed an enhanced ability to colonize tomato roots, on which its progeny in part reverted to the M71 parental phenotype. Volatile organic compounds (VOCs) emitted by all four strains, inhibited the growth of Clavibacter michiganensis subsp. michiganensis and Seiridium cardinale in vitro. Real-time screening of VOCs by PTR-MS combined with GC-MS analysis, showed that methanethiol was the main component of the blend produced by all four M71 strains. However, the emissions of hydrogen cyanide, dimethyl disulfide, 1,3-butadiene and acetone were significantly affected by the three different mutations. These findings highlight that the simultaneous presence of different M71 phenotypes may improve, through the integration of different mechanisms, the ecological fitness and biocontrol efficacy of P. chlororaphis M71.


Assuntos
Agentes de Controle Biológico/metabolismo , Mutação , Pseudomonas chlororaphis/genética , Pseudomonas chlororaphis/fisiologia , Proteínas de Bactérias/genética , Agentes de Controle Biológico/farmacologia , Fusarium/efeitos dos fármacos , Solanum lycopersicum/microbiologia , Controle Biológico de Vetores , Fenazinas/metabolismo , Fenazinas/farmacologia , Fenótipo , Doenças das Plantas/microbiologia , Raízes de Plantas/microbiologia , Pseudomonas chlororaphis/química , Sideróforos/fisiologia , Compostos Orgânicos Voláteis/metabolismo , Compostos Orgânicos Voláteis/farmacologia
9.
Appl Microbiol Biotechnol ; 103(19): 8215-8227, 2019 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-31402424

RESUMO

Pollution affects most of the urban and forest environments at different levels causing well-known effects on human and plant health. The influence that pollutants exert on plant-associated microbiota might direct plant health and, in some cases, also the removal of pollutants by plants. With the advent of nanotechnologies, an increasing amount of engineered nanoparticles are being introduced into the environment, and consequently, their impact on plant-associated microorganisms needs to be investigated. In this context, silver nanoparticles (Ag-NPs) were experimentally supplied at leaf and root level of poplar plants to assess Ag-NPs effects on plant microbiota. Leaf Ag-NP treatment increased bacteria and fungi evenness and determined a significant reduction in both microbial groups, while root Ag-NP treatment reduced the bacterial and fungal biodiversity. Bioinformatics functional analysis showed that Ag-NP treatment reduced the aerobic and stimulated facultative anaerobic and oxidative stress-tolerant bacteria. Our study offers new insights into the effects of Ag-NPs on both phyllosphere and rhizosphere poplar-associated microbiota and may represent a first attempt to understand the behavior of microbial communities of a tree species growing in a polluted environment.


Assuntos
Anti-Infecciosos/farmacologia , Biota/efeitos dos fármacos , Poluentes Ambientais/farmacologia , Nanopartículas Metálicas , Populus/microbiologia , Prata/farmacologia , Bactérias/classificação , Bactérias/isolamento & purificação , Fungos/classificação , Fungos/isolamento & purificação , Folhas de Planta/microbiologia , Raízes de Plantas/microbiologia
10.
AMB Express ; 9(1): 50, 2019 Apr 24.
Artigo em Inglês | MEDLINE | ID: mdl-31016406

RESUMO

An effective framework for early warning and rapid response is a crucial element to prevent or mitigate the impact of biological invasions of plant pathogens, especially at ports of entry. Molecular detection of pathogens by using PCR-based methods usually requires a well-equipped laboratory. Rapid detection tools that can be applied as point-of-care diagnostics are highly desirable, especially to intercept quarantine plant pathogens such as Xylella fastidiosa, Ceratocystis platani and Phytophthora ramorum, three of the most devastating pathogens of trees and ornamental plants in Europe and North America. To this aim, in this study we developed three different loop mediated isothermal amplification (LAMP) assays able to detect each target pathogen both in DNA extracted from axenic culture and in infected plant tissues. By using the portable instrument Genie® II, the LAMP assay was able to recognize X. fastidiosa, C. platani and P. ramorum DNA within 30 min of isothermal amplification reaction, with high levels of specificity and sensitivity (up to 0.02 pg µL-1 of DNA). These new LAMP-based tools, allowing an on-site rapid detection of pathogens, are especially suited for being used at ports of entry, but they can be also profitably used to monitor and prevent the possible spread of invasive pathogens in natural ecosystems.

11.
J Plant Physiol ; 232: 82-93, 2019 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-30537616

RESUMO

Previous research demonstrated that Pseudomonas chlororaphis subsp. aureofaciens strain M71, a plant growth promoting bacterium (PGPB), exerts beneficial effects on plant metabolism and primes tolerance mechanisms against biotic stresses in tomatoes. We designed an experiment to assess whether root colonization with P. chlororaphis is also able to improve tolerance to water stress in tomatoes. Our results show that inoculation with P. chlororaphis stimulates the antioxidant activity of well-watered tomatoes while maintaining a steady-state level of reactive oxygen species (ROS), increases the expression of genes encoding for the biosynthesis of leaf terpenes, stimulates the production of both the phytohormones ABA and IAA, in turn affecting plant shape (number of leaves) and height (length of internodes), without altering photosynthesis. Upon exposure to mild water stress conditions, an improved antioxidant activity in tomatoes 'primed' by P. chlororaphis inoculation limited the accumulation of reactive oxygen species (ROS) in leaves and thus enhanced tolerance, also through increase of the (osmolyte) proline content. Moreover, P. chlororaphis inoculation further enhanced the ABA level in leaves of water-stressed tomatoes allowing a more efficient modulation of stomatal closure that resulted in an improved water use efficiency (WUE) and biomass accumulation.


Assuntos
Raízes de Plantas/microbiologia , Pseudomonas chlororaphis/metabolismo , Solanum lycopersicum/microbiologia , Desidratação , Solanum lycopersicum/fisiologia , Fotossíntese , Reguladores de Crescimento de Plantas/metabolismo , Raízes de Plantas/fisiologia , Transpiração Vegetal , Reação em Cadeia da Polimerase em Tempo Real
12.
PLoS One ; 13(2): e0191218, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29447189

RESUMO

Drought is one of the major constraints limiting agricultural production worldwide and is expected to increase in the future. Limited water availability causes significant effects to plant growth and physiology. Plants have evolved different traits to mitigate the stress imposed by drought. The presence of plant growth-promoting rhizobacteria (PGPR) could play an important role in improving plant performances and productivity under drought. These beneficial microorganisms colonize the rhizosphere of plants and increase drought tolerance by lowering ethylene formation. In the present study, we demonstrate the potential to improve the growth of velvet bean under water deficit conditions of two different strains of PGPR with ACCd (1-Aminocyclopropane-1-Carboxylate deaminase) activity isolated from rainfed farming system. We compared uninoculated and inoculated plants with PGPR to assess: a) photosynthetic performance and biomass; b) ACC content and ethylene emission from leaves and roots; c) leaf isoprene emission. Our results provided evidence that under drought conditions inoculation with PGPR containing the ACCd enzyme could improve plant growth compared to untreated plants. Ethylene emission from roots and leaves of inoculated velvet bean plants was significantly lower than uninoculated plants. Moreover, isoprene emission increased with drought stress progression and was higher in inoculated plants compared to uninoculated counterparts. These findings clearly illustrate that selected PGPR strains isolated from rainfed areas could be highly effective in promoting plant growth under drought conditions by decreasing ACC and ethylene levels in plants.


Assuntos
Mucuna/metabolismo , Reguladores de Crescimento de Plantas/metabolismo , Rhizobiaceae/metabolismo , Biomassa , Carbono-Carbono Liases/metabolismo , Secas , Etilenos/biossíntese , Mucuna/fisiologia , Fotossíntese , Desenvolvimento Vegetal , Reguladores de Crescimento de Plantas/fisiologia , Raízes de Plantas/crescimento & desenvolvimento , Rhizobiaceae/genética , Rizosfera , Microbiologia do Solo , Água/fisiologia
13.
Microbiol Res ; 199: 49-56, 2017 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-28454709

RESUMO

Pseudomonas chlororaphis subsp. aureofaciens encompasses bacterial strains that effectively control phytopathogenic fungi through the production of the natural antibiotics named phenazines. In this work, the involvement of phenazine production in the interaction between the biological control agent P. chlororaphis subsp. aureofaciens M71 and the fungus Seiridium cardinale, a serious cypress pathogen, was investigated. Field trials were carried out to assess the role of phenazines in the control of S. cardinale in vivo. Results showed that P. chlororaphis subsp. aureofaciens M71 and 30-84, both able to produce phenazine-1-carboxylic acid (PCA), drastically reduced the canker development incited by S. cardinale. Conversely, strain M71b, a natural gacA mutant of P. chlororaphis subsp. aureofaciens M71, showed a decrease in PCA production and a reduction in controlling S. cardinale. These results were enforced by the reduction of canker size higher than 94% registered when 6µg of pure PCA was directly applied on each cypress wound. Furthermore, PCA was detected in cypress plant tissues only when P. chlororaphis subsp. aureofaciens M71 was interacting with S. cardinale for 30 days. All these data support that the biological control of S. cardinale achieved by the application of P. chlororaphis subsp. aureofaciens M71 relies mainly on the ability of the bacterial strain to produce PCA in planta.


Assuntos
Antifúngicos/farmacologia , Interações Microbianas , Pseudomonas chlororaphis/metabolismo , Xylariales/efeitos dos fármacos , Xylariales/patogenicidade , Antifúngicos/metabolismo , Proteínas de Bactérias/genética , Agentes de Controle Biológico/farmacologia , Cupressus/microbiologia , DNA Bacteriano , Genes Bacterianos/genética , Mutação , Peptídeo Hidrolases/metabolismo , Controle Biológico de Vetores , Fenazinas/metabolismo , Fenazinas/farmacologia , Fenótipo , Doenças das Plantas/microbiologia , Pseudomonas chlororaphis/genética , RNA Ribossômico 16S/genética , Sideróforos/metabolismo
14.
Nat Prod Res ; 27(11): 956-66, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-22724439

RESUMO

Pseudomonas chlororaphis subsp. aureofaciens strain M71 produced two phenazine compounds as main secondary metabolites. These metabolites were identified as phenazine-1-carboxylic acid (PCA) and 2-hydroxyphenazine (2-OH P). In this study, the spectrum of the activity of PCA and 2-OH P was evaluated against a group of crop and forestal plant pathogenic fungi by an agar plate bioassay. PCA was active against most of the tested plant pathogens, while 2-OH P slightly inhibited a few fungal species. Furthermore, four semisynthesised derivatives of PCA (phenazine-1-carboxymethyl, phenazine-1-carboxamide, phenazine-1-hydroxymethyl and phenazine-1-acetoxymethyl) were assayed for their antifungal activity against 11 phytopathogenic species. Results showed that the carboxyl group is a structural feature important for the antifungal activity of PCA. Since the activity of phenazine-1-carboxymethyl and phenazine-1-carboxamide, the two more lipophilic and reversible PCA derivatives remained substantially unaltered compared with PCA.


Assuntos
Fungos/efeitos dos fármacos , Plantas/microbiologia , Pseudomonas/metabolismo , Fenazinas/toxicidade , Análise de Componente Principal , Análise Espectral
15.
Nat Prod Res ; 22(10): 825-32, 2008.
Artigo em Inglês | MEDLINE | ID: mdl-18626815

RESUMO

The volatile constituents of the flowerheads of Centaurea nicaeensis All., C. parlatoris Helder and C. solstitialis L. ssp. schouwii (DC.) Dostál were extracted by hydrodistillation and analysed by GC and GC-MS. Altogether 113 components were identified. Fatty acids and hydrocarbons were the most abundant components in the oils. Caryophyllene and caryophyllene oxide were the main compounds of the sesquiterpene fraction. The study on the biological activity of the oils shows no significant activity.


Assuntos
Centaurea/química , Flores/química , Óleos Voláteis/química , Extratos Vegetais/química , Bacillus subtilis/efeitos dos fármacos , Candida albicans/efeitos dos fármacos , Cromatografia Gasosa , Fusarium/efeitos dos fármacos , Cromatografia Gasosa-Espectrometria de Massas , Itália , Testes de Sensibilidade Microbiana , Óleos Voláteis/farmacologia , Ácido Palmítico/química , Extratos Vegetais/farmacologia , Óleos de Plantas/química , Óleos de Plantas/farmacologia , Sesquiterpenos Policíclicos , Pseudomonas aeruginosa/efeitos dos fármacos , Saccharomyces cerevisiae/efeitos dos fármacos , Sesquiterpenos/química , Terpenos/química
16.
Carbohydr Res ; 338(23): 2721-30, 2003 Nov 14.
Artigo em Inglês | MEDLINE | ID: mdl-14670730

RESUMO

Agrobacterium larrymoorei is a Gram-negative phytopathogenic bacterium, which produces tumours on Ficus benjamina plants and differs from other Agrobacteria both genetically and biochemically. The lipopolysaccharide (LPS) plays an important role in the pathogenesis of Agrobacteria. The present paper is the first report on the molecular primary structure of the core region of an Agrobacterium LPS. The following structure of the core and lipid A carbohydrate backbone of an R-form LPS of A. larrymoorei was determined by chemical degradations and 1D and 2D NMR spectroscopy: [carbohydrate structure: see text] All sugars are alpha-D-pyranoses if not stated otherwise, Kdo is 3-deoxy-D-manno-oct-2-ulosonic acid, Qui3NAcyl is 3,6-dideoxy-3-(3-hydroxy-2,3-dimethyl-5-oxoprolylamino)glucose, GlcAN and GalAN are amides of GlcA and GalA.


Assuntos
Lipopolissacarídeos/química , Oligossacarídeos/química , Rhizobium/metabolismo , Sequência de Carboidratos , Carboidratos/química , Lipídeo A/química , Espectroscopia de Ressonância Magnética , Dados de Sequência Molecular , Polissacarídeos Bacterianos/química
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