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1.
BMC Microbiol ; 24(1): 299, 2024 Aug 10.
Artículo en Inglés | MEDLINE | ID: mdl-39127645

RESUMEN

The fungus Parastagonospora nodorum causes septoria nodorum blotch on wheat. The role of the fungal Velvet-family transcription factor VeA in P. nodorum development and virulence was investigated here. Deletion of the P. nodorum VeA ortholog, PnVeA, resulted in growth abnormalities including pigmentation, abolished asexual sporulation and highly reduced virulence on wheat. Comparative RNA-Seq and RT-PCR analyses revealed that the deletion of PnVeA also decoupled the expression of major necrotrophic effector genes. In addition, the deletion of PnVeA resulted in an up-regulation of four predicted secondary metabolite (SM) gene clusters. Using liquid-chromatography mass-spectrometry, it was observed that one of the SM gene clusters led to an accumulation of the mycotoxin alternariol. PnVeA is essential for asexual sporulation, full virulence, secondary metabolism and necrotrophic effector regulation.


Asunto(s)
Ascomicetos , Proteínas Fúngicas , Regulación Fúngica de la Expresión Génica , Enfermedades de las Plantas , Metabolismo Secundario , Factores de Transcripción , Triticum , Triticum/microbiología , Ascomicetos/genética , Ascomicetos/metabolismo , Ascomicetos/patogenicidad , Ascomicetos/crecimiento & desarrollo , Enfermedades de las Plantas/microbiología , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Virulencia/genética , Factores de Transcripción/genética , Factores de Transcripción/metabolismo , Esporas Fúngicas/genética , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/metabolismo , Micotoxinas/metabolismo , Micotoxinas/genética , Familia de Multigenes , Lactonas
2.
Sci Rep ; 14(1): 15404, 2024 07 04.
Artículo en Inglés | MEDLINE | ID: mdl-38965323

RESUMEN

Nowadays, the use of qPCR for the diagnosis of intestinal microsporidiosis is increasing. There are several studies on the evaluation of qPCR performance but very few focus on the stool pretreatment step before DNA extraction, which is nevertheless a crucial step. This study focuses on the mechanical pretreatment of stools for Enterocytozoon bieneusi spores DNA extraction. Firstly, a multicenter comparative study was conducted evaluating seven extraction methods (manual or automated) including various mechanical pretreatment. Secondly, several durations and grinding speeds and types of beads were tested in order to optimize mechanical pretreatment. Extraction methods of the various centers had widely-varying performances especially for samples with low microsporidia loads. Nuclisens® easyMAG (BioMérieux) and Quick DNA Fecal/Soil Microbe Microprep kit (ZymoResearch) presented the best performances (highest frequencies of detection of low spore concentrations and lowest Ct values). Optimal performances of mechanical pretreatment were obtained by applying a speed of 30 Hz during 60 s with the TissueLyser II (Qiagen) using commercial beads of various materials and sizes (from ZymoResearch or MP Biomedicals). Overall, the optimal DNA extraction method for E. bieneusi spores contained in stool samples was obtained with a strong but short bead beating using small-sized beads from various materials.


Asunto(s)
ADN de Hongos , Enterocytozoon , Heces , Microsporidiosis , Heces/microbiología , Enterocytozoon/aislamiento & purificación , Enterocytozoon/genética , Humanos , Microsporidiosis/diagnóstico , Microsporidiosis/microbiología , ADN de Hongos/aislamiento & purificación , ADN de Hongos/genética , ADN de Hongos/análisis , Manejo de Especímenes/métodos , Esporas Fúngicas/aislamiento & purificación , Esporas Fúngicas/genética , Reacción en Cadena en Tiempo Real de la Polimerasa/métodos
3.
Curr Microbiol ; 81(8): 249, 2024 Jul 01.
Artículo en Inglés | MEDLINE | ID: mdl-38951199

RESUMEN

Beauveria bassiana, the causative agent of arthropod, proliferates in the host hemolymph (liquid environment) and shits to saprotrophic growth on the host cadaver (aerial surface). In this study, we used transcriptomic analysis to compare the gene expression modes between these two growth phases. Of 10,366 total predicted genes in B. bassiana, 10,026 and 9985 genes were expressed in aerial (AM) and submerged (SM) mycelia, respectively, with 9853 genes overlapped. Comparative analysis between two transcriptomes indicated that there were 1041 up-regulated genes in AM library when compared with SM library, and 1995 genes were down-regulated, in particular, there were 7085 genes without significant change in expression between two transcriptomes. Furthermore, of 25 amidase genes (AMD), BbAMD5 has high expression level in both transcriptomes, and its protein product was associated with cell wall in aerial and submerged mycelia. Disruption of BbAMD5 significantly reduced mycelial hydrophobicity, hydrophobin translocation, and conidiation on aerial plate. Functional analysis also indicated that BbAmd5 was involved in B. bassiana blastospore formation in broth, but dispensable for fungal virulence. This study revealed the high similarity in global expression mode between mycelia grown under two cultivation conditions.


Asunto(s)
Beauveria , Proteínas Fúngicas , Perfilación de la Expresión Génica , Regulación Fúngica de la Expresión Génica , Micelio , Transcriptoma , Beauveria/genética , Beauveria/crecimiento & desarrollo , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Micelio/crecimiento & desarrollo , Micelio/genética , Animales , Virulencia/genética , Esporas Fúngicas/genética , Esporas Fúngicas/crecimiento & desarrollo
4.
Fungal Genet Biol ; 173: 103911, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38960372

RESUMEN

Coprinopsis cinerea, a model fungus, is utilized for investigating the developmental mechanisms of basidiomycetes. The development of basidiomycetes is a highly organized process that requires coordination among genetic, environmental, and physiological factors. Oxylipins, a class of widely distributed signaling molecules, play crucial roles in fungal biology. Among oxylipins, the sexual pheromone-inducing factors (psi factors) have been identified as key regulators of the balance between asexual and sexual spore development in Ascomycetes. Linoleate dioxygenases are enzymes involved in the biosynthesis of psi factors, yet their specific physiological functions in basidiomycete development remain unclear. In this study, linoleate dioxygenases in basidiomycetes were identified and characterized. Phylogenetic analysis revealed that linoleate dioxygenases from Basidiomycota formed a distinct clade, with linoleate dioxygenases from Agaricomycetes segregating into three groups and those from Ustilaginomycetes forming a separate group. Both basidiomycete and ascomycete linoleate dioxygenases shared two characteristic domains: the N-terminal of linoleate dioxygenase domain and the C-terminal of cytochrome P450 domain. While the linoleate dioxygenase domains exhibited similarity between basidiomycetes and ascomycetes, the cytochrome P450 domains displayed high diversity in key sites. Furthermore, the gene encoding the linoleate dioxygenase Ccldo1 in C. cinerea was knocked out, resulting in a significant increase in fruiting body formation without affecting asexual conidia production. This observation suggests that secondary metabolites synthesized by CcLdo1 negatively regulate the sexual reproduction process in C. cinerea while not influencing the asexual reproductive process. This study represents the first identification of a gene involved in secondary metabolite synthesis that regulates basidiocarp development in a basidiomycete.


Asunto(s)
Basidiomycota , Cuerpos Fructíferos de los Hongos , Proteínas Fúngicas , Filogenia , Cuerpos Fructíferos de los Hongos/genética , Cuerpos Fructíferos de los Hongos/crecimiento & desarrollo , Cuerpos Fructíferos de los Hongos/enzimología , Basidiomycota/genética , Basidiomycota/enzimología , Basidiomycota/crecimiento & desarrollo , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Dioxigenasas/genética , Dioxigenasas/metabolismo , Agaricales/genética , Agaricales/enzimología , Agaricales/crecimiento & desarrollo , Agaricales/metabolismo , Regulación Fúngica de la Expresión Génica , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/genética , Esporas Fúngicas/enzimología
5.
Antonie Van Leeuwenhoek ; 117(1): 109, 2024 Jul 31.
Artículo en Inglés | MEDLINE | ID: mdl-39083124

RESUMEN

The genetic variety and habitats of Camptophora species, generally known as black yeast, have not been clarified. In this study, we re-evaluated Camptophora based on morphological observations and phylogenetic analyses. Because prior investigations on Camptophora only included a few strains/specimens, 24 Camptophora-related strains were newly obtained from 13 leaf samples of various plant species to redefine the genetic and species concepts of Camptophora. Their molecular phylogenetic relationships were examined using small subunit nuclear ribosomal DNA (nSSU, 18S rDNA), the internal transcribed spacer (ITS) rDNA operon, the large subunit nuclear ribosomal DNA (LSU, 28S rDNA), ß-tubulin, the second largest subunit of RNA polymerase II (rpb2), and mitochondrial small subunit DNA (mtSSU). Single- and multi-locus analyses using nSSU-ITS-LSU-rpb2-mtSSU revealed a robust phylogenetic relationship among Camptophora species within Chaetothyriaceae. Camptophora species could be distinguished from other chaetothyriaceous genera by their snake-shaped conidia with microcyclic conidiation and loosely interwoven mycelial masses. Based on the results of phylogenetic analyses, two undescribed lineages were recognized, and Ca. schimae was excluded from the genus. ITS sequence comparison with environmental DNA sequences revealed that the distribution of the genus is restricted to the Asia-Pacific region. Camptophora has been isolated or detected from abrupt sources, and this was attributed to its microcycle. The mechanisms driving genetic diversity within species are discussed with respect to their phyllosphere habitats.


Asunto(s)
ADN de Hongos , Filogenia , ADN de Hongos/genética , ADN Ribosómico/genética , ADN Espaciador Ribosómico/genética , Esporas Fúngicas/genética , Esporas Fúngicas/citología , Esporas Fúngicas/clasificación , Análisis de Secuencia de ADN , Hojas de la Planta/microbiología , ARN Polimerasa II/genética , Ascomicetos/genética , Ascomicetos/clasificación , Tubulina (Proteína)/genética
6.
Virulence ; 15(1): 2387172, 2024 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-39082211

RESUMEN

The Eaf6 protein, a conserved component of the NuA4 and NuA3 complexes in yeast and MOZ/MORF complexes in humans, plays crucial roles in transcriptional activation, gene regulation, and cell cycle control. Despite its significance in other organisms, the functional role of Eaf6 in entomopathogenic fungi (EPF) remained unexplored. Here, we investigate the function of BbEaf6, the Eaf6 homolog in the entomopathogenic fungus Beauveria bassiana. We demonstrate that BbEaf6 is predominantly localized in nuclei, similar to its counterpart in other fungi. Deletion of BbEaf6 resulted in delayed conidiation, reduced conidial yield, and altered conidial properties. Transcriptomic analysis revealed dysregulation of the genes involved in asexual development and cell cycle progression in the ΔBbEaf6 mutant. Furthermore, the ΔBbEaf6 mutant exhibited decreased tolerance to various stresses, including ionic stress, cell wall perturbation, and DNA damage stress. Notably, the ΔBbEaf6 mutant displayed attenuated virulence in insect bioassays, accompanied by dysregulation of genes associated with cuticle penetration and haemocoel infection. Overall, our study elucidates the multifaceted role of BbEaf6 in stress response, development, and virulence in B. bassiana, providing valuable insights into the molecular mechanisms governing fungal pathogenesis and potential targets for pest management strategies.


Asunto(s)
Beauveria , Proteínas Fúngicas , Regulación Fúngica de la Expresión Génica , Esporas Fúngicas , Estrés Fisiológico , Beauveria/genética , Beauveria/patogenicidad , Beauveria/fisiología , Virulencia/genética , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Animales , Esporas Fúngicas/genética , Perfilación de la Expresión Génica , Eliminación de Gen , Insectos/microbiología
7.
Microbiology (Reading) ; 170(7)2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-39073411

RESUMEN

Mucormycosis is an emerging and deadly invasive fungal infection caused by fungi belonging to the Mucorales order. We investigated the myosin superfamily, which encompasses diverse actin-based motor proteins with various cellular functions. Specifically, the role of the Myo5B (ID 179665) protein from the myosin class V family in Mucor lusitanicus was explored by generating silencing phenotypes and null mutants corresponding to the myo5B gene. Silencing fungal transformants exhibited a markedly reduced growth rate and a nearly complete absence of sporulation compared to the wild-type strain. The myo5BΔ null mutant strain displayed atypical characteristics, including abnormally short septa and inflated hyphae. Notably, there were a majority of small yeast-like cells instead of filamentous hyphae in the mutant. These yeast-like cells cannot germinate normally, resulting in a loss of polarity. In vivo virulence assays conducted in the Galleria mellonella invertebrate model revealed that the myo5BΔ mutant strain was avirulent. These findings shed light on the crucial contributions of the Myo5B protein to the dimorphism and pathogenicity of M. lusitanicus. Therefore, the myosin V family is a potential target for future therapeutic interventions aimed at treating mucormycosis.


Asunto(s)
Proteínas Fúngicas , Hifa , Mucor , Hifa/crecimiento & desarrollo , Hifa/genética , Mucor/genética , Mucor/patogenicidad , Mucor/crecimiento & desarrollo , Virulencia , Animales , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Miosina Tipo V/genética , Miosina Tipo V/metabolismo , Mucormicosis/microbiología , Mariposas Nocturnas/microbiología , Humanos , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/genética
8.
World J Microbiol Biotechnol ; 40(9): 282, 2024 Jul 27.
Artículo en Inglés | MEDLINE | ID: mdl-39060812

RESUMEN

Nucleic acid demethylases of α-ketoglutarate-dependent dioxygenase (AlkB) family can reversibly erase methyl adducts from nucleobases, thus dynamically regulating the methylation status of DNA/RNA and playing critical roles in multiple cellular processes. But little is known about AlkB demethylases in filamentous fungi so far. The present study reports that Monascus purpureus genomes contain a total of five MpAlkB genes. The MpAlkB1 gene was disrupted and complemented through homologous recombination strategy to analyze its biological functions in M. purpureus. MpAlkB1 knockout significantly accelerated the growth of strain, increased biomass, promoted sporulation and cleistothecia development, reduced the content of Monascus pigments (Mps), and strongly inhibited citrinin biosynthesis. The downregulated expression of the global regulator gene LaeA, and genes of Mps biosynthesis gene cluster (BGC) or citrinin BGC in MpAlkB1 disruption strain supported the pleiotropic trait changes caused by MpAlkB1 deletion. These results indicate that MpAlkB1-mediated demethylation of nucleic acid plays important roles in regulating the growth and development, and secondary metabolism in Monascus spp.


Asunto(s)
Citrinina , Proteínas Fúngicas , Regulación Fúngica de la Expresión Génica , Monascus , Metabolismo Secundario , Monascus/genética , Monascus/metabolismo , Monascus/crecimiento & desarrollo , Monascus/enzimología , Metabolismo Secundario/genética , Citrinina/biosíntesis , Citrinina/metabolismo , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Pigmentos Biológicos/biosíntesis , Pigmentos Biológicos/metabolismo , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/genética , Técnicas de Inactivación de Genes , Familia de Multigenes , Enzimas AlkB/genética , Enzimas AlkB/metabolismo , Metilación de ADN
9.
Sci Rep ; 14(1): 16061, 2024 07 11.
Artículo en Inglés | MEDLINE | ID: mdl-38992190

RESUMEN

Rhizome rot is a destructive soil-borne disease of Polygonatum kingianum and adversely affects the yield and sustenance of the plant. Understanding how the causal fungus Fusarium oxysporum infects P. kingianum may suggest effective control measures against rhizome rot. In germinating conidia of infectious F. oxysporum, expression of the zinc finger transcription factor gene Zfp1, consisting of two C2H2 motifs, was up-regulated. To characterize the critical role of ZFP1, we generated independent deletion mutants (zfp1) and complemented one mutant with a transgenic copy of ZFP1 (zfp1 tZFP1). Mycelial growth and conidial production of zfp1 were slower than those of wild type (ZFP1) and zfp1 tZFP1. Additionally, a reduced inhibition of growth suggested zfp1 was less sensitive to conditions promoting cell wall and osmotic stresses than ZFP1 and zfp1 tZFP1. Furthermore pathogenicity tests suggested a critical role for growth of zfp1 in infected leaves and rhizomes of P. kingianum. Thus ZFP1 is important for mycelial growth, conidiation, osmoregulation, and pathogenicity in P. kingianum.


Asunto(s)
Proteínas Fúngicas , Fusarium , Osmorregulación , Enfermedades de las Plantas , Polygonatum , Esporas Fúngicas , Factores de Transcripción , Dedos de Zinc , Fusarium/patogenicidad , Fusarium/genética , Fusarium/crecimiento & desarrollo , Fusarium/fisiología , Factores de Transcripción/genética , Factores de Transcripción/metabolismo , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/genética , Virulencia/genética , Enfermedades de las Plantas/microbiología , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Polygonatum/microbiología , Regulación Fúngica de la Expresión Génica
10.
Appl Microbiol Biotechnol ; 108(1): 398, 2024 Jun 28.
Artículo en Inglés | MEDLINE | ID: mdl-38940906

RESUMEN

Grey mould caused by Botrytis cinerea is a devastating disease responsible for large losses to agricultural production, and B. cinerea is a necrotrophic model fungal plant pathogen. Membrane proteins are important targets of fungicides and hotspots in the research and development of fungicide products. Wuyiencin affects the permeability and pathogenicity of B. cinerea, parallel reaction monitoring revealed the association of membrane protein Bcsdr2, and the bacteriostatic mechanism of wuyiencin was elucidated. In the present work, we generated and characterised ΔBcsdr2 deletion and complemented mutant B. cinerea strains. The ΔBcsdr2 deletion mutants exhibited biofilm loss and dissolution, and their functional activity was illustrated by reduced necrotic colonisation on strawberry and grape fruits. Targeted deletion of Bcsdr2 also blocked several phenotypic defects in aspects of mycelial growth, conidiation and virulence. All phenotypic defects were restored by targeted gene complementation. The roles of Bcsdr2 in biofilms and pathogenicity were also supported by quantitative real-time RT-PCR results showing that phosphatidylserine decarboxylase synthesis gene Bcpsd and chitin synthase gene BcCHSV II were downregulated in the early stages of infection for the ΔBcsdr2 strain. The results suggest that Bcsdr2 plays important roles in regulating various cellular processes in B. cinerea. KEY POINTS: • The mechanism of wuyiencin inhibits B. cinerea is closely associated with membrane proteins. • Wuyiencin can downregulate the expression of the membrane protein Bcsdr2 in B. cinerea. • Bcsdr2 is involved in regulating B. cinerea virulence, growth and development.


Asunto(s)
Biopelículas , Botrytis , Fragaria , Proteínas Fúngicas , Hifa , Proteínas de la Membrana , Enfermedades de las Plantas , Botrytis/patogenicidad , Botrytis/genética , Botrytis/crecimiento & desarrollo , Botrytis/efectos de los fármacos , Biopelículas/crecimiento & desarrollo , Biopelículas/efectos de los fármacos , Virulencia , Hifa/crecimiento & desarrollo , Hifa/efectos de los fármacos , Enfermedades de las Plantas/microbiología , Fragaria/microbiología , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Proteínas de la Membrana/genética , Proteínas de la Membrana/metabolismo , Vitis/microbiología , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/efectos de los fármacos , Esporas Fúngicas/genética , Eliminación de Gen
11.
Appl Environ Microbiol ; 90(7): e0027124, 2024 Jul 24.
Artículo en Inglés | MEDLINE | ID: mdl-38842339

RESUMEN

Airborne triazole-resistant spores of the human fungal pathogen Aspergillus fumigatus are a significant human health problem as the agricultural use of triazoles has been selecting for cross-resistance to life-saving clinical triazoles. However, how to quantify exposure to airborne triazole-resistant spores remains unclear. Here, we describe a method for cost-effective wide-scale outdoor air sampling to measure both spore abundance as well as antifungal resistance fractions. We show that prolonged outdoor exposure of sticky seals placed in delta traps, when combined with a two-layered cultivation approach, can regionally yield sufficient colony-forming units (CFUs) for the quantitative assessment of aerial resistance levels at a spatial scale that was up to now unfeasible. When testing our method in a European pilot sampling 12 regions, we demonstrate that there are significant regional differences in airborne CFU numbers, and the triazole-resistant fraction of airborne spores is widespread and varies between 0 and 0.1 for itraconazole (∼4 mg/L) and voriconazole (∼2 mg/L). Our efficient and accessible air sampling protocol opens up extensive options for fine-scale spatial sampling and surveillance studies of airborne A. fumigatus.IMPORTANCEAspergillus fumigatus is an opportunistic fungal pathogen that humans and other animals are primarily exposed to through inhalation. Due to the limited availability of antifungals, resistance to the first choice class of antifungals, the triazoles, in A. fumigatus can make infections by this fungus untreatable and uncurable. Here, we describe and validate a method that allows for the quantification of airborne resistance fractions and quick genotyping of A. fumigatus TR-types. Our pilot study provides proof of concept of the suitability of the method for use by citizen-scientists for large-scale spatial air sampling. Spatial air sampling can open up extensive options for surveillance, health-risk assessment, and the study of landscape-level ecology of A. fumigatus, as well as investigating the environmental drivers of triazole resistance.


Asunto(s)
Microbiología del Aire , Antifúngicos , Aspergillus fumigatus , Farmacorresistencia Fúngica , Triazoles , Aspergillus fumigatus/efectos de los fármacos , Aspergillus fumigatus/genética , Triazoles/farmacología , Antifúngicos/farmacología , Esporas Fúngicas/efectos de los fármacos , Esporas Fúngicas/genética , Monitoreo del Ambiente/métodos
12.
Int J Mol Sci ; 25(12)2024 Jun 10.
Artículo en Inglés | MEDLINE | ID: mdl-38928117

RESUMEN

Cla4, an orthologous p21-activated kinase crucial for non-entomopathogenic fungal lifestyles, has two paralogs (Cla4A/B) functionally unknown in hypocrealean entomopathogens. Here, we report a regulatory role of Cla4A in gene expression networks of Beauveria bassiana required for asexual and entomopathogenic lifecycles while Cla4B is functionally redundant. The deletion of cla4A resulted in severe growth defects, reduced stress tolerance, delayed conidiation, altered conidiation mode, impaired conidial quality, and abolished pathogenicity through cuticular penetration, contrasting with no phenotype affected by cla4B deletion. In ∆cla4A, 5288 dysregulated genes were associated with phenotypic defects, which were restored by targeted gene complementation. Among those, 3699 genes were downregulated, including more than 1300 abolished at the transcriptomic level. Hundreds of those downregulated genes were involved in the regulation of transcription, translation, and post-translational modifications and the organization and function of the nuclear chromosome, chromatin, and protein-DNA complex. DNA-binding elements in promoter regions of 130 dysregulated genes were predicted to be targeted by Cla4A domains. Samples of purified Cla4A extract were proven to bind promoter DNAs of 12 predicted genes involved in multiple stress-responsive pathways. Therefore, Cla4A acts as a novel regulator of genomic expression and stability and mediates gene expression networks required for insect-pathogenic fungal adaptations to the host and environment.


Asunto(s)
Beauveria , Proteínas Fúngicas , Regulación Fúngica de la Expresión Génica , Redes Reguladoras de Genes , Beauveria/genética , Beauveria/patogenicidad , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Animales , Insectos/microbiología , Esporas Fúngicas/genética , Regiones Promotoras Genéticas
13.
Int J Food Microbiol ; 421: 110746, 2024 Aug 16.
Artículo en Inglés | MEDLINE | ID: mdl-38917488

RESUMEN

Alternaria alternata is part of a genus comprised of over 600 different species that occur all over the world and cause damage to humans, plants and thereby to the economy. Yet, even though some species are causing tremendous issues, the past years have shown that assigning newly found isolates to known species was rather inconsistent. Most identifications are usually done on the basis of spore morphology, chemotype and molecular markers. In this work we used strains isolated from the wild as well as commercial strains of the DSMZ (German collection of microorganisms and cell cultures) as a reference, to show, that the variation within the Alternaria alternata species is comparable to the variation between different species of the genus Alternaria in regards to spore morphology and chemotype. We compared the different methods of identification and discerned the concatenation of multiple molecular markers as the deciding factor for better identification. Up until this point, usually a concatenation of two or three traditional molecular markers was used. Some of those markers being stronger some weaker. We show that the concatenation of five molecular markers improves the likeliness of a correct assignment, thus a better distinction between the different Alternaria species.


Asunto(s)
Alternaria , Alternaria/genética , Alternaria/clasificación , Alternaria/aislamiento & purificación , Esporas Fúngicas/genética , ADN de Hongos/genética , Marcadores Genéticos , Técnicas de Tipificación Micológica/métodos , Filogenia
14.
Virulence ; 15(1): 2362748, 2024 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-38860453

RESUMEN

Rad6 functions as a ubiquitin-conjugating protein that regulates cellular processes in many fungal species. However, its role in filamentous entomopathogenic fungi remains poorly understood. This study characterizes Rad6 in Beauveria bassiana, a filamentous fungus widely employed as a critical fungicide globally. The results demonstrate a significant association between Rad6 and conidial properties, heat shock response, and UV-B tolerance. Concurrently, the mutant strain exhibited heightened sensitivity to oxidative stress, cell wall interfering agents, DNA damage stress, and prolonged heat shock. Furthermore, the absence of Rad6 significantly extended the median lethal time (LT50) of Galleria mellonella infected by B. bassiana. This delay could be attributed to reduced Pr1 proteases and extracellular cuticle-degrading enzymes, diminished dimorphic transition rates, and dysregulated antioxidant enzymes. Additionally, the absence of Rad6 had a more pronounced effect on genetic information processing, metabolism, and cellular processes under normal conditions. However, its impact was limited to metabolism in oxidative stress. This study offers a comprehensive understanding of the pivotal roles of Rad6 in conidial and hyphal stress tolerance, environmental adaptation, and the pathogenesis of Beauveria bassiana.


Asunto(s)
Beauveria , Proteínas Fúngicas , Esporas Fúngicas , Animales , Beauveria/patogenicidad , Beauveria/genética , Beauveria/fisiología , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Respuesta al Choque Térmico , Hifa/crecimiento & desarrollo , Mariposas Nocturnas/microbiología , Estrés Oxidativo , Esporas Fúngicas/genética , Estrés Fisiológico , Enzimas Ubiquitina-Conjugadoras/metabolismo , Enzimas Ubiquitina-Conjugadoras/genética , Virulencia
15.
Microb Pathog ; 193: 106756, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38901752

RESUMEN

Eucalyptus spp. are undoubtedly one of the most favored plantation trees globally. Accurately identifying Eucalyptus pathogens is therefore crucial for timely disease prevention and control. Recently, symptoms of a leaf blight disease were observed on Eucalyptus trees in plantations at Jhajjar and Karnal in the state of Haryana, northern India. Asexual morphs resembling the features of the Botryosphaeriaceae were consistently isolated from the symptomatic leaves. Morphological features coupled with DNA sequence analysis confirmed a novel species, which is described and illustrated here as Botryosphaeria eucalypti sp. nov. Conidia of the new taxon are longer and wider than those of its phylogenetic neighbors. A distinct phylogenetic position for the new taxon was established through combined analysis of the internal transcribed spacer (ITS), partial translation elongation factor-1α (tef1) and partial ß-tubulin (tub2) regions. Recombination analysis provided additional support for the new species hypothesis. The pathogenicity of the novel species was proved on Eucalyptus leaves, and Koch's postulates were fulfilled. The discovery of new Botryosphaeria species is important because it will help in understanding the species diversity, host range, possible threats and disease control in the long run.


Asunto(s)
Ascomicetos , ADN de Hongos , Eucalyptus , Filogenia , Enfermedades de las Plantas , Hojas de la Planta , Análisis de Secuencia de ADN , Tubulina (Proteína) , Eucalyptus/microbiología , Enfermedades de las Plantas/microbiología , Ascomicetos/genética , Ascomicetos/aislamiento & purificación , Ascomicetos/clasificación , Hojas de la Planta/microbiología , India , ADN de Hongos/genética , Tubulina (Proteína)/genética , Factor 1 de Elongación Peptídica/genética , Esporas Fúngicas/genética , ADN Espaciador Ribosómico/genética
16.
Nat Commun ; 15(1): 4984, 2024 Jun 11.
Artículo en Inglés | MEDLINE | ID: mdl-38862481

RESUMEN

More than 10 million people suffer from lung diseases caused by the pathogenic fungus Aspergillus fumigatus. Azole antifungals represent first-line therapeutics for most of these infections but resistance is rising, therefore the identification of antifungal targets whose inhibition synergises with the azoles could improve therapeutic outcomes. Here, we generate a library of 111 genetically barcoded null mutants of Aspergillus fumigatus in genes encoding protein kinases, and show that loss of function of kinase YakA results in hypersensitivity to the azoles and reduced pathogenicity. YakA is an orthologue of Candida albicans Yak1, a TOR signalling pathway kinase involved in modulation of stress responsive transcriptional regulators. We show that YakA has been repurposed in A. fumigatus to regulate blocking of the septal pore upon exposure to stress. Loss of YakA function reduces the ability of A. fumigatus to penetrate solid media and to grow in mouse lung tissue. We also show that 1-ethoxycarbonyl-beta-carboline (1-ECBC), a compound previously shown to inhibit C. albicans Yak1, prevents stress-mediated septal spore blocking and synergises with the azoles to inhibit A. fumigatus growth.


Asunto(s)
Antifúngicos , Aspergillus fumigatus , Quinasas DyrK , Proteínas Fúngicas , Proteínas Serina-Treonina Quinasas , Proteínas Tirosina Quinasas , Aspergillus fumigatus/genética , Aspergillus fumigatus/efectos de los fármacos , Aspergillus fumigatus/enzimología , Animales , Antifúngicos/farmacología , Proteínas Serina-Treonina Quinasas/genética , Proteínas Serina-Treonina Quinasas/metabolismo , Proteínas Serina-Treonina Quinasas/antagonistas & inhibidores , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Proteínas Fúngicas/antagonistas & inhibidores , Ratones , Proteínas Tirosina Quinasas/genética , Proteínas Tirosina Quinasas/metabolismo , Proteínas Tirosina Quinasas/antagonistas & inhibidores , Azoles/farmacología , Aspergilosis/microbiología , Aspergilosis/tratamiento farmacológico , Pulmón/microbiología , Esporas Fúngicas/efectos de los fármacos , Esporas Fúngicas/genética , Femenino
17.
Mol Biol Rep ; 51(1): 726, 2024 Jun 10.
Artículo en Inglés | MEDLINE | ID: mdl-38856802

RESUMEN

BACKGROUND: Karnal bunt of wheat is an important quarantine disease, incited by Tilletia indica. It limits India's trade in wheat export. The teliospores are major source of inoculum to initiate and spread the Karnal bunt disease. The study aimed to identify the germination-related genes in the teliospores of T. indica. METHODS AND RESULTS: The candidate genes in the teliospores germination were identified through the differential gene expression analysis with suitable bioinformatics analysis. Keeping in soil-borne nature of fungi, the teliospores of T. indica (2015 and 2018) were subjected to the qPCR analysis. 20 candidate genes were identified having role in germination of teliospores of T. indica. Twenty genes, viz. Ti9297 (9.31, 7.87-fold), Ti8696 (5.13, 6.54-fold), Ti7699 (8.9, 7.7-fold), Ti7858 (10.33, 6.21-fold), Ti7954 (7.46, 5.54-fold), Ti7739 (5.46, 6.46-fold), Ti9665 (10.74, 7.64-fold), Ti9335 (6.75, 4.36-fold), Ti8396 (9.35, 7.72-fold), Ti8126 (8.87, 11.31-fold), Ti7326 (6.04, 7.7-fold), Ti10208 (13.83, 5.81-fold), Ti12356 (7.83, 8.02-fold), Ti14271 (9.98, 6.32-fold), Ti9234 (11.2, 8.72-fold), Ti 8876 (6.47, 3.55-fold), Ti 10,606 (4.97, 2.35-fold), Ti7758 (10.33, 8.78-fold), Ti4692 (6.89, 9.88-fold), and Ti3932 (5.77, 4.5-fold) were found highly expressed in the germinating teliospores of 2015 and 2018, respectively. Eight genes (Ti508, Ti4152, Ti5346, Ti2375, Ti3739, Ti1134, Ti4399, and Ti4422) were downregulated in the germinating teliospores but these eight genes were showed higher expression in the dormant teliospores. CONCLUSIONS: Twenty candidate genes were upregulated in the germinating teliospores are supposed to be involved in the process of germination. Eight genes were downregulated which were related to the process of the dormancy of teliospores. The study will be helpful to devise the newer management strategies for Karnal bunt disease of wheat.


Asunto(s)
Enfermedades de las Plantas , Triticum , Triticum/genética , Triticum/microbiología , Triticum/crecimiento & desarrollo , Enfermedades de las Plantas/microbiología , Enfermedades de las Plantas/genética , Esporas Fúngicas/genética , Germinación/genética , Perfilación de la Expresión Génica/métodos , Basidiomycota/genética , Polyporaceae/genética , Biología Computacional/métodos
18.
Microbiol Res ; 285: 127784, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38824820

RESUMEN

Fusarium crown rot (FCR) caused by Fusarium pseudograminearum poses a significant threat to wheat production in the Huang-Huai-Hai region of China. However, the pathogenic mechanism of F. pseudograminearum is still poorly understood. Zn2Cys6 transcription factors, which are exclusive to fungi, play pivotal roles in regulating fungal development, drug resistance, pathogenicity, and secondary metabolism. In this study, we present the functional characterization of a Zn2Cys6 transcription factor F. pseudograminearum, designated Fp487. In F. pseudograminearum, Fp487 is shown to be required for mycelial growth through gene knockout and phenotypic analyses. Compared with wild-type CF14047, the ∆Fp487 mutant displayed a slight reduction in growth rate but a significant decrease in conidiogenesis, pathogenicity and 3-acetyl-deoxynivalenol (3AcDON) production. Moreover, the mutant exhibited heightened sensitivity to oxidative and cytomembrane stress. Furthermore, we synthesized dsRNA from the Fp487 gene in vitro, resulting in a reduction in the growth rate of F. pseudograminearum and its virulence on barley leaves through spray-induced gene silencing (SIGS). Notably, this study makes the first instance of inducing the expression of abundant dsRNA from F. pseudograminearum by engineering the Escherichia coli strain HT115 (DE3) and utilizing the SIGS technique to evaluate the virulence effect of dsRNA on F. pseudograminearum. In conclusion, our findings revealed the crucial role of Fp487 in regulating pathogenicity, stress responses, DON production, and conidiogenesis in F. pseudograminearum. Furthermore, Fp487 is a potential RNAi-based target for FCR control.


Asunto(s)
Proteínas Fúngicas , Fusarium , Regulación Fúngica de la Expresión Génica , Hordeum , Enfermedades de las Plantas , Factores de Transcripción , Fusarium/genética , Fusarium/patogenicidad , Fusarium/crecimiento & desarrollo , Fusarium/metabolismo , Enfermedades de las Plantas/microbiología , Virulencia , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Factores de Transcripción/genética , Factores de Transcripción/metabolismo , Hordeum/microbiología , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/genética , Triticum/microbiología , Hojas de la Planta/microbiología , Técnicas de Inactivación de Genes , China , Micelio/crecimiento & desarrollo , Silenciador del Gen
19.
Microbiol Spectr ; 12(8): e0421423, 2024 Aug 06.
Artículo en Inglés | MEDLINE | ID: mdl-38912810

RESUMEN

Previous work identified a pair of specific effectors AsCEP19 and AsCEP20 in Alternaria solani as contributors to the virulence of A. solani. Here, we constructed AsCEP19 and AsCEP20 deletion mutants in A. solani strain HWC168 to further reveal the effects of these genes on the biology and pathogenicity of A. solani. Deletion of AsCEP19 and AsCEP20 did not affect vegetative growth but did affect conidial maturation, with an increase in the percentage of abnormal conidia produced. Furthermore, we determined the expression patterns of genes involved in the conidiogenesis pathway and found that the regulatory gene abaA was significantly upregulated and chsA, a positive regulator for conidiation, was significantly downregulated in the mutant strains compared to the wild-type strain. These results suggest that AsCEP19 and AsCEP20 indirectly affect the conidial development and maturation of A. solani. Pathogenicity assays revealed significantly impaired virulence of ΔAsCEP19, ΔAsCEP20, and ΔAsCEP19 + AsCEP20 mutants on potato and tomato plants. Moreover, we performed localization assays with green fluorescent protein-tagged proteins in chili pepper leaves. We found that AsCEP19 can specifically localize to the chloroplasts of chili pepper epidermal cells, while AsCEP20 can localize to both chloroplasts and the plasma membrane. Weighted gene co-expression network analysis revealed enrichment of genes of this module in the photosynthesis pathway, with many hub genes associated with chloroplast structure and photosynthesis. These results suggest that chloroplasts are the targets for AsCEP19 and AsCEP20. IMPORTANCE: Alternaria solani is an important necrotrophic pathogen causing potato early blight. Previous studies have provide preliminary evidence that specific effectors AsCEP19 and AsCEP20 contribute to virulence, but their respective functions, localization, and pathogenic mechanisms during the infection process of A. solani remain unclear. Here, we have systematically studied the specific effectors AsCEP19 and AsCEP20 for the first time, which are essential for conidial maturation. The deletion of AsCEP19 and AsCEP20 can significantly impair fungal pathogenicity. Additionally, we preliminarily revealed that AsCEP19 and AsCEP20 target the chloroplasts of host cells. Our findings further enhance our understanding of the molecular mechanisms underlying the virulence of necrotrophic pathogens.


Asunto(s)
Alternaria , Capsicum , Proteínas Fúngicas , Regulación Fúngica de la Expresión Génica , Enfermedades de las Plantas , Esporas Fúngicas , Alternaria/patogenicidad , Alternaria/genética , Alternaria/crecimiento & desarrollo , Alternaria/metabolismo , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Virulencia/genética , Enfermedades de las Plantas/microbiología , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/genética , Capsicum/microbiología , Solanum tuberosum/microbiología , Solanum lycopersicum/microbiología , Cloroplastos/metabolismo , Cloroplastos/genética , Hojas de la Planta/microbiología
20.
Yeast ; 41(7): 448-457, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38874213

RESUMEN

Smk1 is a MAPK homolog in the yeast Saccharomyces cerevisiae that controls the postmeiotic program of spore wall assembly. During this program, haploid cells are surrounded by a layer of mannan and then a layer of glucan. These inner layers of the spore wall resemble the vegetative cell wall. Next, the outer layers consisting of chitin/chitosan and then dityrosine are assembled. The outer layers are spore-specific and provide protection against environmental stressors. Smk1 is required for the proper assembly of spore walls. However, the protective properties of the outer layers have limited our understanding of how Smk1 controls this morphogenetic program. Mutants lacking the chitin deacetylases, Cda1 and Cda2, form spores that lack the outer layers of the spore wall. In this study, cda1,2∆ cells were used to demonstrate that Smk1 promotes deposition of the glucan layer of the spore wall through the partially redundant glucan synthases Gsc2 and Fks3. Although Gsc2 is localized to sites of spore wall assembly in the wild type, it is mislocalized in the mother cell cytoplasm in the smk1∆ mutant. These findings suggest that Smk1 controls assembly of the spore wall by regulating the localization of Gsc2 during sporogenesis.


Asunto(s)
Pared Celular , Glucanos , Proteínas Quinasas Activadas por Mitógenos , Proteínas de Saccharomyces cerevisiae , Saccharomyces cerevisiae , Esporas Fúngicas , Pared Celular/metabolismo , Pared Celular/genética , Glucanos/metabolismo , Glucosiltransferasas/genética , Glucosiltransferasas/metabolismo , Proteínas de la Membrana , Proteínas Quinasas Activadas por Mitógenos/metabolismo , Proteínas Quinasas Activadas por Mitógenos/genética , Saccharomyces cerevisiae/genética , Saccharomyces cerevisiae/metabolismo , Saccharomyces cerevisiae/enzimología , Proteínas de Saccharomyces cerevisiae/genética , Proteínas de Saccharomyces cerevisiae/metabolismo , Esporas Fúngicas/genética , Esporas Fúngicas/crecimiento & desarrollo , Esporas Fúngicas/metabolismo
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