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Keywords = new recorded fungal strains

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34 pages, 5775 KB  
Article
Taxonomic and Phylogenetic Resolution of Novel Endophytic Arthrinium-like Fungi with an Updated Checklist of Nigrospora Species
by Jutamart Monkai, Rungtiwa Phookamsak, Darbhe Jayarama Bhat, Danushka S. Tennakoon, Sinang Hongsanan, Toe Swe Zin Ei, Jianchu Xu and Saisamorn Lumyong
Life 2026, 16(6), 1011; https://doi.org/10.3390/life16061011 - 16 Jun 2026
Cited by 1 | Viewed by 542
Abstract
Arthrinium-like fungi in the family Apiosporaceae are taxonomically complex and still require a thorough characterization despite recent phylogenetic reassessments. This study aimed to investigate the diversity and taxonomic position of endophytic Arthrinium-like fungi associated with Itea japonica and I. riparia in Thailand. Two [...] Read more.
Arthrinium-like fungi in the family Apiosporaceae are taxonomically complex and still require a thorough characterization despite recent phylogenetic reassessments. This study aimed to investigate the diversity and taxonomic position of endophytic Arthrinium-like fungi associated with Itea japonica and I. riparia in Thailand. Two fungal strains discovered from healthy stems of these hosts were characterized by integrative approaches including morphology, multi-locus phylogenetic analyses based on ITS, LSU, TEF1-α, TUB2 sequence data, and nucleotide base–pair comparisons. One isolate from I. japonica is introduced as Nigrospora iteae sp. nov. supported by distinct morphological traits, a well-resolved phylogenetic placement, and significant nucleotide difference from its closest relatives. The second isolate was identified as Apiospora vietnamensis and is reported herein as a new host record for I. riparia based on morphological congruence, a close phylogenetic relationship, and TUB2 nucleotide similarity with the type strain. In addition, a new species, Apiospora fici, originally described from dead leaves of Ficus septica in Taiwan, is reclassified based on updated phylogenetic analyses to clarify its taxonomic placement within Apiosporaceae. Furthermore, Nigrospora wurfbainiae nom. nov. is proposed as a replacement name for the later homonym N. guangdongensis. A summary of important morphological characteristics, host relationships, current distribution, and biological activities of Nigrospora species is provided. This study emphasizes the previously unrecognized fungal diversity within Itea hosts and offers new insights into species diversity and phylogenetic relationships within the Apiosporaceae. Full article
(This article belongs to the Special Issue New Developments in Mycology)
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19 pages, 1336 KB  
Systematic Review
Post-COVID-19 Cardiovascular Complications: An Updated Systematic Review
by Alexandru Stoichita, Beatrice Mahler, Silviu Vlasceanu, Oana Parliteanu, Justina Antonela Dragomir, Mara Balteanu, Alexandru Daniel Radu, Cristina Teleaga, Dragos Baiceanu, Traian Constantin Panciu, Mosteanu Madalina, Elmira Ibraim, Madalina Mariuca Ciupan and Adriana Iliesiu Mihaela
J. Respir. 2026, 6(1), 4; https://doi.org/10.3390/jor6010004 - 25 Feb 2026
Cited by 1 | Viewed by 4245
Abstract
Background: Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) can cause persistent, multisystem complications collectively termed long COVID. Cardiovascular sequelae are among the most clinically significant yet remain incompletely characterized. This review aimed to synthesize current evidence on objective cardiovascular outcomes in long COVID [...] Read more.
Background: Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) can cause persistent, multisystem complications collectively termed long COVID. Cardiovascular sequelae are among the most clinically significant yet remain incompletely characterized. This review aimed to synthesize current evidence on objective cardiovascular outcomes in long COVID and explore underlying mechanisms. Methods: A systematic review was conducted using PubMed, Scopus, and Web of Science for studies published between January 2020 and March 2024. Search terms included “COVID-19,” “long COVID,” “post-acute sequelae,” “cardiovascular,” “echocardiography,” “biomarkers,” and “imaging.” Only studies reporting at least one cardiovascular outcome, defined as either objectively measured parameters (e.g., echocardiography, cardiac biomarkers, ECG findings, or vascular function indices) or clinically relevant cardiovascular symptoms during follow-up, were included. From 412 identified records, ten recent, high-quality studies with a primary cardiovascular focus were selected. This systematic review was conducted in accordance with the PRISMA 2020 guidelines. Results: Long COVID is associated with subclinical myocardial dysfunction, arrhythmias, endothelial injury, vascular stiffness, and a prothrombotic state. Reported findings included reduced left ventricular ejection fraction, impaired global longitudinal strain, increased arterial stiffness, elevated cardiac biomarkers, new-onset hypertension, and persistent ECG changes, even in non-hospitalized patients without prior cardiovascular disease. Proposed mechanisms include myocardial inflammation, endothelial dysfunction, renin–angiotensin–aldosterone system dysregulation, autonomic imbalance, and chronic inflammation. Secondary bacterial and fungal infections were noted in critically ill survivors but did not fully explain the breadth or persistence of symptoms. Conclusions: Long COVID is a heterogeneous entity with substantial cardiovascular implications across all levels of acute disease severity. Early detection through longitudinal monitoring, standardized definitions, and multidisciplinary care is essential to reduce long-term cardiovascular risk. Full article
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35 pages, 5754 KB  
Article
Novel Freshwater Ascomycetes from Submerged Plant Debris in the Zújar River (Extremadura Community, Spain)
by María Barnés-Guirado, Alberto Miguel Stchigel and José Francisco Cano-Lira
J. Fungi 2026, 12(2), 102; https://doi.org/10.3390/jof12020102 - 31 Jan 2026
Viewed by 1359
Abstract
Freshwater fungi remain insufficiently documented in the Mediterranean river systems despite their key roles in organic-matter turnover. Here, we surveyed filamentous fungi associated with submerged decaying plant debris in the Zújar River (Extremadura, southwestern Spain) using a culture-based approach combined with phenotypic characterization [...] Read more.
Freshwater fungi remain insufficiently documented in the Mediterranean river systems despite their key roles in organic-matter turnover. Here, we surveyed filamentous fungi associated with submerged decaying plant debris in the Zújar River (Extremadura, southwestern Spain) using a culture-based approach combined with phenotypic characterization and multilocus phylogenetic analyses (ITS, LSU, rpb1, rpb2 and tef-1α). A total of 49 strains were isolated and identified, revealing a diverse assemblage of Ascomycota. Five taxa are described as new to science: Arachnopeziza torrehermosensis, Conioscypha clavatispora, Neoanungitea torrehermosensis, Ophioceras diversisporum and Polyscytalum submersum. Notably, Polyscytalum submersum represents the first record of the genus for the Iberian Peninsula, while Arachnopeziza torrehermosensis, Neoanungitea torrehermosensis and Ophioceras diversisporum constitute the first records of their respective genera for Spain (and Neoanungitea torrehermosensis also for Europe). In addition, phylogenetic evidence supports taxonomic refinements within the orders Magnaporthales and Conioscyphales, including the establishment of Protophioceras to accommodate Ophioceras sichuanense and the establishment of Protoconioscypha for two previously misclassified Conioscypha species. Overall, this first mycological report of submerged plant debris in the Zújar River substantially expands knowledge of freshwater fungal diversity in the region and provides a refined framework for the taxonomy of several lineages of aquatic-associated ascomycetes. Full article
(This article belongs to the Special Issue Ascomycota: Diversity, Taxonomy and Phylogeny, 3rd Edition)
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13 pages, 423 KB  
Article
Chemical Profiling and Biological Evaluation of Matricaria pubescens as a Promising Source of Antioxidant and Anti-Resistance Agents
by Elhasnaoui Abdelhadi, Janah Iman, Ait-El-Mokhtar Mohamed, Sellam Khalid, Bouadid Ismail, Eddouks Mohamed, Lahrach Nadia and El-Haidani Ahmed
Microbiol. Res. 2025, 16(12), 258; https://doi.org/10.3390/microbiolres16120258 - 9 Dec 2025
Viewed by 749
Abstract
Matricaria pubescens (Desf.), a medicinal plant belonging to the Asteraceae family, is traditionally used in southeastern Morocco but remains insufficiently studied. In this study, samples collected from the Zagora region (Morocco) were subjected to the preparation of aqueous, methanolic, and petroleum ether extracts, [...] Read more.
Matricaria pubescens (Desf.), a medicinal plant belonging to the Asteraceae family, is traditionally used in southeastern Morocco but remains insufficiently studied. In this study, samples collected from the Zagora region (Morocco) were subjected to the preparation of aqueous, methanolic, and petroleum ether extracts, followed by qualitative phytochemical screening. Total phenolic, flavonoid, and condensed tannin contents were quantified. Antioxidant activity was assessed using DPPH, RPC, and ABTS assays, whereas antimicrobial activity was evaluated against eight bacterial and fungal species, including antibiotic-resistant strains, using disc diffusion and microdilution techniques. Qualitative analysis revealed the presence of alkaloids, polyphenols, flavonoids, tannins, sterols, and sesquiterpenes, with notable variation across extracts. The aqueous (AqE) and methanol–water (MT-H2O) extracts were particularly rich in phenolics and flavonoids, recording 9.15 ± 0.29 mg GAE/g DW and 17.1 ± 0.55 mg QE/g DW, respectively. Antioxidant assays showed strong activity, with IC50 values ranging from 3.15 to 5.48 µg/mL (DPPH) and 9.10 to 14.40 µg/mL (ABTS). The MT-H2O extract also displayed potent antimicrobial effects against eight microbial species (bacteria and fungi), with minimum inhibitory concentrations between 0.93 and 30 mg/mL, except for Pseudomonas aeruginosa. These findings highlight the untapped potential of M. pubescens from Zagora as a source of antioxidant and anti-resistance agents, providing new insights for green medicine and future pharmacological research. Full article
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18 pages, 3810 KB  
Article
Four New or Newly Recorded Species from Freshwater Habitats in Jiangxi Province, China
by Chen-Yu Xu, Hai-Yan Song, Jian-Ping Zhou, Zhi-Jun Zhai, Chao-Yu Cui and Dian-Ming Hu
J. Fungi 2025, 11(1), 79; https://doi.org/10.3390/jof11010079 - 19 Jan 2025
Cited by 13 | Viewed by 3199
Abstract
Freshwater fungi consist of a highly diverse group of organisms in freshwater habitats worldwide. During a survey of fungal diversity in freshwater habitats across different regions of Jiangxi Province, China, four freshwater fungi were collected. To study their phylogenetic relationships, the internal transcribed [...] Read more.
Freshwater fungi consist of a highly diverse group of organisms in freshwater habitats worldwide. During a survey of fungal diversity in freshwater habitats across different regions of Jiangxi Province, China, four freshwater fungi were collected. To study their phylogenetic relationships, the internal transcribed spacer (ITS1-5.8S-ITS2), large subunit (28S, LSU), small subunit (18S, SSU), and RNA polymerase II subunit (RPB2) genes were selected for phylogenetic analyses. Based on morphology coupled with phylogenetic analysis, these strains were confirmed to belong to Phaeoisaria, Pleurothecium, and Pseudodactylaria. Among them, three fungi were confirmed as the new species, namely, Pleurothecium lignicola (Pleurotheciaceae), Pseudodactylaria jiangxiensis (Pseudodactylariaceae), and Ps. lignicola (Pseudodactylariaceae). One species was identified as Phaeoisaria filiformis (Pleurotheciaceae), a new record of this species in China. All species were compared with other similar species, and detailed descriptions, illustrations, and phylogenetic data were provided. Full article
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15 pages, 3061 KB  
Article
Bioprospecting Endophytic Fungi of Forest Plants for Bioactive Metabolites with Antibacterial, Antifungal, and Antioxidant Potentials
by El-Sayed R. El-Sayed, Abirami Baskaran, Oliwia Pomarańska, Daria Mykhailova, Anna Dunal, Anita Dudek, Sahil Satam, Tomasz Strzała, Jacek Łyczko, Teresa Olejniczak and Filip Boratyński
Molecules 2024, 29(19), 4746; https://doi.org/10.3390/molecules29194746 - 8 Oct 2024
Cited by 13 | Viewed by 3826
Abstract
The growing emergence of multi-drug resistant microbial strains has kept the scientific world searching for novel bioactive compounds with specific chemical characteristics. Accordingly, researchers have started exploring the understudied metabolites from endophytes as a new source of bioactive compounds. In this context, the [...] Read more.
The growing emergence of multi-drug resistant microbial strains has kept the scientific world searching for novel bioactive compounds with specific chemical characteristics. Accordingly, researchers have started exploring the understudied metabolites from endophytes as a new source of bioactive compounds. In this context, the current study was designed to evaluate the bioactive properties of endophytic fungi from the Mokrzański forest in Wrocław, Poland that have not yet been fully researched. Forty-three endophytic fungi were isolated from twelve distinct plants. Following their cultivation, fungal extracts were separately prepared from biomass and cell-free filtrates, and their antibacterial, antifungal (against human and plant pathogens), and antioxidant properties were examined. Five promising fungi after screening were identified to possess all of these activities. These strains and their respective plant hosts were Trichoderma harzianum BUK-T (Fagus sylvatica), Aspergillus ochraceus ROB-L1 (Robinia pseudoacacia), Chaetomium cochliodes KLON-L1, Fusarium tricinctum KLON-L2 (Acer platanoides), and Penicillium chrysogenum SOS-B2 (Pinus sylvestris). Moreover, gamma irradiation at several doses (Gy) was separately applied to the fungal cultures to study their effects on the recorded activities. Finally, compounds after preparative thin-layer chromatography fractionation of the five fungal strains were identified by GC-MS. These findings suggest that the isolated endophytic fungi could serve as novel sources of bioactive metabolites with antibacterial, antifungal, and antioxidant properties, potentially paving the way for future research and the development of new bioactive compounds. Full article
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9 pages, 394 KB  
Article
An Eco-Friendly Method to Synthesize Potent Antimicrobial Tricyclic Flavonoids
by Loredana-Elena Mantea, Cristina-Veronica Moldovan, Mihaela Savu, Laura Gabriela Sarbu, Marius Stefan and Mihail Lucian Birsa
Antibiotics 2024, 13(9), 798; https://doi.org/10.3390/antibiotics13090798 - 24 Aug 2024
Cited by 2 | Viewed by 2288
Abstract
The rapid emergence and spread of multidrug-resistant microorganisms is threatening our ability to treat common infections, with serious medical, social, and economic consequences. Despite substantial progress in the global fight against antibiotic resistance, the number of effective antibiotics is rapidly decreasing, underlying the [...] Read more.
The rapid emergence and spread of multidrug-resistant microorganisms is threatening our ability to treat common infections, with serious medical, social, and economic consequences. Despite substantial progress in the global fight against antibiotic resistance, the number of effective antibiotics is rapidly decreasing, underlying the urgent need to develop novel antimicrobials. In the present study, the green synthesis of novel iodine-substituted tricyclic flavonoids has been accomplished using an eco-friendly reagent, HPW-SiO2, as a cyclization agent for the precursor 3-dithiocarmamic flavanones. In vitro antimicrobial activity of the new compounds was evaluated using minimum inhibitory concentration (MIC) and minimum bactericidal/fungicidal concentrations. All tested compounds displayed potent inhibitory activity against all tested microbial strains, with the lowest MIC values of 0.12 µg/mL and 0.48 µg/mL recorded for compound 5c against Gram-positive bacteria Bacillus subtilis and Staphylococcus aureus. Higher MIC values (7.81 µg/mL) were registered for several flavonoids against Gram-negative bacteria Escherichia coli and Acinetobacter pittii. No inhibitory activity was evidenced against Pseudomonas aeruginosa strain. The highest antifungal activity was displayed by flavonoid 5d against Candida krusei (MIC = 3.9 µg/mL). The same compound also exhibited the most potent bactericidal and fungicidal activity against Bacillus subtilis (0.9 µg/mL) and Staphylococcus aureus (1.97 µg/mL), Candida albicans, and Candida krusei (7.81 µg/mL). Based on the reported results, we believe that the novel iodine-substituted tricyclic flavonoids have good potential to become new antimicrobial agents effective against bacterial and fungal strains, including WHO-priority pathogens. Full article
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14 pages, 3223 KB  
Article
Redbay (Persea borbonia L. Spreng) Seedling and Sapling Growth and Recruitment Near Trees with and without Putative Resistance to Laurel Wilt Disease
by Matthew Eicholtz, Jason Smith and Jason Vogel
Forests 2024, 15(5), 817; https://doi.org/10.3390/f15050817 - 7 May 2024
Cited by 1 | Viewed by 2199
Abstract
Laurel wilt, a fungal disease (Harringtonia lauricola T.C. Harr., Fraedrich and Aghayeva) spread by the Asian redbay ambrosia beetle [Xyleborus glabratus Eichhoff (Coleoptera: Curculionidae: Scolytinae)], presents an imminent threat to North American members of the Lauraceae family, having caused extensive mortality [...] Read more.
Laurel wilt, a fungal disease (Harringtonia lauricola T.C. Harr., Fraedrich and Aghayeva) spread by the Asian redbay ambrosia beetle [Xyleborus glabratus Eichhoff (Coleoptera: Curculionidae: Scolytinae)], presents an imminent threat to North American members of the Lauraceae family, having caused extensive mortality in several species, especially redbay (Persea borbonia L. Spreng). Varying levels of disease resistance have been recorded in redbay under controlled conditions. To investigate if previously monitored putatively resistant field redbays have influenced the regeneration and survival of conspecifics within the surrounding 0.08 ha, a survey was conducted in 2018-19 and compared to similar data collected years prior (2008-09, 2013) along the coasts of Florida, Georgia, and South Carolina, United States. Plots were originally established at six disease-infested study sites around large redbay (>7.5-cm diameter at breast height (1.37 m) (DBH)) that had survived the initial laurel wilt disease epidemic that began in approximately 2007. In 2018-19, a subset of 61 plots within 16 m of the original “survivor” redbay were recorded and compared to previous surveys. Among the original redbay selected for resistance, 22 of 61 (36%) survivors across all sites were alive in 2018 with survival rates varying from 0 to 70% between survey periods (average mortality 3.6%/year). Trees that died in years since 2008-09 had their plots reclassified as susceptible or “suscepts”. Changes in mean quadratic diameter at 1.37 m of redbay plots near survivors were significantly greater than those near suscepts, and in 2018-19, the average diameter of redbay near survivors was 7.62 cm vs. 4.90 cm for suscepts. The diameter distribution of dead and live redbay in the whole population showed a decrease in live individuals surviving past 8 cm DBH in 2018–2019, but 20 of 22 survivor candidate trees were larger than 8 cm DBH. Regeneration was occurring both clonally and sexually and tended to be greater near suscepts, but midstory resprouts per hectare and understory seedlings interacted significantly with the site and the latter differed between sites. These findings indicate that redbay is regenerating in these ecosystems, and disease resistance may allow for increased average tree size for some individuals, but an upper size threshold of around 8 cm DBH may still exist for much of the population. In addition, the importance of site variables in regeneration was apparent, making either local genetic or environmental effects an important topic for future research. Continuing to monitor these survivors while locating new candidates for disease screenings and breeding, preventing the introductions of new strains of H. lauricola, shedding light on the nature of resistance and its heritability, and initiating outplanting trials with resistant germplasm are instrumental steps in bringing redbay back to prominence in its historical range. Full article
(This article belongs to the Section Forest Health)
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6 pages, 1485 KB  
Proceeding Paper
Microwave-Assisted Synthesis, Characterization, and Biological Activity of New Copper (II) Complex with Sulfonamide
by Rania Bahadi, Malika Berredjem, Rayenne Redjemia and Chahrazed Benzaid
Chem. Proc. 2023, 14(1), 62; https://doi.org/10.3390/ecsoc-27-16157 - 15 Nov 2023
Cited by 1 | Viewed by 1775
Abstract
A fast and efficient synthesis was carried out to obtain a new derivative of an organometallic complex. This synthesis involved the complexation of a sulfonamide derived from phenylpiperazine with copper (II). The synthesis of this complex was achieved using an innovative and environmentally [...] Read more.
A fast and efficient synthesis was carried out to obtain a new derivative of an organometallic complex. This synthesis involved the complexation of a sulfonamide derived from phenylpiperazine with copper (II). The synthesis of this complex was achieved using an innovative and environmentally friendly method that used microwave irradiation as the energy source. The resulting complex was obtained as a green powder with a yield of 82%. The identification of the final compound was performed through infrared spectroscopy, UV-Visible spectroscopy, elemental analysis, and cyclic voltammetry. The obtained complex exhibited noteworthy activity against the tested bacterial and fungal strains. Regarding the anti-inflammatory activity, the highest percentage of inhibition of BSA denaturation (0.2%) was recorded in the fraction at a concentration of 5000 ppm, which was 67.32%. Full article
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26 pages, 33558 KB  
Article
An Example of the Conservation of Wood Decay Fungi: The New Research Culture Collection of Corticioid and Polyporoid Strains of the University of Salamanca (Spain)
by Simone Buratti, Carolina Elena Girometta, Elena Savino and Sergio Pérez Gorjón
Forests 2023, 14(10), 2029; https://doi.org/10.3390/f14102029 - 10 Oct 2023
Cited by 12 | Viewed by 3400
Abstract
Over the last decade, fungal conservation has become an increasingly important topic, especially for species tied to forest ecosystems. Among these, wood decay fungi are a group of interesting species from ecological and applicative points of view. Culture collections represent an important tool [...] Read more.
Over the last decade, fungal conservation has become an increasingly important topic, especially for species tied to forest ecosystems. Among these, wood decay fungi are a group of interesting species from ecological and applicative points of view. Culture collections represent an important tool for the conservation of species and research material. The aim of this study was to establish the first research culture collection of wood decay fungal strains, mainly corticioid and polyporoid species, at Salamanca University (Spain). From two areas of the Iberian Peninsula, a total of 120 basidiomata were collected and morphologically identified. From these, 55 strains were successfully isolated in pure culture and their identity was confirmed by DNA molecular analysis. The average growth rate of each strain was recorded and mycelium characteristics, such as colony morphology and microscopic features, were described. Notable strains in the collection included: (1) Botryobasidium asperulum and Phlebia rufa for taxonomical studies; (2) Hericium erinaceus, Grifola frondosa and Pleurotus species for medicinal properties; (3) Irpex lacteus, Phanerochaete sordida and Trametes versicolor for their degradation capabilities; (4) Stereum gausapatum and Stereum hirsutum for their applicative and enzymatic potential. The new fungal strain culture collection represents a valuable tool for the ex situ conservation of Mediterranean wood decay fungi. Full article
(This article belongs to the Special Issue Diversity, Abundance, and Distribution of Wood-Decay Fungi)
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14 pages, 4785 KB  
Article
New Observation in Biocontrol of Penicillium caperatum against Fusarium oxysporum on Saposhnikovia divaricata and as a Plant Growth Promoter
by Zhongming Han, Jiao Wang, Yanzhe Ding, Zhuo Sun, Yan Wang, Yuyi Wang, Limin Yang and Yunhe Wang
Fermentation 2023, 9(4), 361; https://doi.org/10.3390/fermentation9040361 - 7 Apr 2023
Cited by 5 | Viewed by 4170
Abstract
Fusarium oxysporum, a common fungal pathogen that infects economic crops, causes Fusarium wilt disease to Saposhnikovia divaricata at an annual incidence rate of more than 15%. This study aimed to assess the potential of rhizospheric fungi as antifungal agents against Fusarium wilt [...] Read more.
Fusarium oxysporum, a common fungal pathogen that infects economic crops, causes Fusarium wilt disease to Saposhnikovia divaricata at an annual incidence rate of more than 15%. This study aimed to assess the potential of rhizospheric fungi as antifungal agents against Fusarium wilt of Saposhnikovia divaricata. In this study, 104 fungi were isolated from S. divaricata rhizospheric soil. Twelve rhizospheric strains that showed antagonistic activity against F. oxysporum, MR-16, MR-32, MR-38, etc., were screened out. Biocontrol activities of the twelve strains, especially MR-16, were subsequently characterized and evaluated. Strain MR-16 as potential stock for biocontrol had good antibiotic activity against F. oxysporum in vitro experiment. Based on the analysis of morphological properties and rDNA internal transcribed spacers (ITS), we identified an isolate MR-16 as Penicillium caperatum (GenBank No. OK287146.1), a new record of this species of China. The results of the in vitro antagonistic assay indicated that the conidial germination rate was significantly decreased, and the mycelia morphology of F. oxysporum induced change via the culture filtrate of P. caperatum MR-16, such as deformation and degradation. In an outdoor pot experiment, inoculation of S. divaricata plants with F. oxysporum created severe wilting symptoms; however, in inoculation trials, MR-16 effectively suppressed disease lesions, with a strong control efficacy of 60.76%. In addition, strain MR-16 could successfully colonize and form stable populations in the soil, and it showed a continuous positive growth-promoting effect on S. divaricata plants. Full article
(This article belongs to the Section Microbial Metabolism, Physiology & Genetics)
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26 pages, 27821 KB  
Article
New Fungal Strains from Peat Soil in Malaysia: Morphological and Molecular Characteristics
by Efaq Ali Noman, Adel Ali Al-Gheethi, Baliks A. Talip, Radin Maya Saphira Radin Mohamed, Reyad Almoheer, Fairoz Ali Al-Wrafy, Najeeb Al-Shorgani and Hesham Ali El Enshasy
Sustainability 2023, 15(7), 5902; https://doi.org/10.3390/su15075902 - 28 Mar 2023
Cited by 3 | Viewed by 5162
Abstract
Fungi have unique properties and are used in many areas of agriculture and industry because they can produce different enzymes. This study aims to study the fungal diversity in peat soil from Pontian in Johor, Malaysia. The fungal isolates were described on different [...] Read more.
Fungi have unique properties and are used in many areas of agriculture and industry because they can produce different enzymes. This study aims to study the fungal diversity in peat soil from Pontian in Johor, Malaysia. The fungal isolates were described on different culture media and on a new culture medium called EVA medium and were identified using the phenotypical characteristics and molecular properties of the D1/D2 domain of the 28S large subunit ribosomal RNA (28S rRNA) and ITS (ITS1-ITS4) rDNA regions. The results revealed that 14 fungal species (15 isolates) were identified, among them, 6 were categorized as newly isolated strains and recorded in Malaysia; these include Aspergillus arenarioides EAN603, A. iizukae EAN605, Paraconiothyrium brasiliense EAN202, Parengyodontium album EAN602, Penicillium pedernalense EAN604, and Purpureocillium lilacinum EAN601. The cultural, morphological, microstructure, and molecular characteristics of these new strains have been described in this study. It was noted that the EVA medium exhibited a moderate support for fungal growth and sporulation compared to other culture media. Furthermore, the efficiency of the new medium as an enrichment medium to isolate fungi from peat soils with high ligninolytic content was discussed. Full article
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19 pages, 3995 KB  
Article
Acetylcholine Esterase Inhibitory Effect, Antimicrobial, Antioxidant, Metabolomic Profiling, and an In Silico Study of Non-Polar Extract of The Halotolerant Marine Fungus Penicillium chrysogenum MZ945518
by Heba El-Sayed, Marwa A. Hamada, Ahmed A. Elhenawy, Hana Sonbol and Asmaa Abdelsalam
Microorganisms 2023, 11(3), 769; https://doi.org/10.3390/microorganisms11030769 - 16 Mar 2023
Cited by 16 | Viewed by 6563
Abstract
Major health issues, such as the rise in oxidative stress, incidences of Alzheimer’s disease, and infections caused by antibiotic-resistant microbes, have prompted researchers to look for new therapeutics. Microbial extracts are still a good source of novel compounds for biotechnological use. The objective [...] Read more.
Major health issues, such as the rise in oxidative stress, incidences of Alzheimer’s disease, and infections caused by antibiotic-resistant microbes, have prompted researchers to look for new therapeutics. Microbial extracts are still a good source of novel compounds for biotechnological use. The objective of the current work was to investigate marine fungal bioactive compounds with potential antibacterial, antioxidant, and acetylcholinesterase inhibitory effects. Penicillium chrysogenum strain MZ945518 was isolated from the Mediterranean Sea in Egypt. The fungus was halotolerant with a salt tolerance index of 1.3. The mycelial extract showed antifungal properties against Fusarium solani with an inhibitory percentage of 77.5 ± 0.3, followed by Rhizoctonia solani and Fusarium oxysporum with percentages of 52 ± 0.0 and 40 ± 0.5, respectively. The extract also showed antibacterial activity against both Gram-negative and Gram-positive bacterial strains using the agar diffusion technique. The fungal extract was significantly more effective with Proteus mirabilis ATCC 29906 and Micrococcus luteus ATCC 9341; inhibition zones recorded 20 and 12 mm, respectively, compared with the antibiotic gentamycin, which recorded 12 and 10 mm, respectively. The antioxidant activity of the fungus extract revealed that it successfully scavenged DPPH free radicals and recorded an IC50 of 542.5 µg/mL. Additionally, it was capable of reducing Fe3+ to Fe2+ and exhibiting chelating ability in the metal ion-chelating test. The fungal extract was identified as a crucial inhibitor of acetylcholinesterase with an inhibition percentage of 63% and an IC50 value of 60.87 µg/mL. Using gas chromatography–mass spectrometry (GC/MS), 20 metabolites were detected. The most prevalent ones were (Z)-18-octadec-9-enolide and 1,2-Benzenedicarboxylic acid, with ratios of 36.28 and 26.73%, respectively. An in silico study using molecular docking demonstrated interactions between the major metabolites and the target proteins, including: DNA Gyrase, glutathione S-transferase, and Acetylcholinesterase, confirming the extract’s antimicrobial and antioxidant activity. Penicillium chrysogenum MZ945518, a halotolerant strain, has promising bioactive compounds with antibacterial, antioxidant, and acetylcholinesterase inhibitory activities Full article
(This article belongs to the Section Microbial Biotechnology)
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24 pages, 5019 KB  
Article
Cladosporium Species Associated with Fruit Trees in Guizhou Province, China
by Yuanqiao Yang, Wenmei Luo, Wensong Zhang, Mohammed Amin Uddin Mridha, Subodini Nuwanthika Wijesinghe, Eric H. C. McKenzie and Yong Wang
J. Fungi 2023, 9(2), 250; https://doi.org/10.3390/jof9020250 - 13 Feb 2023
Cited by 25 | Viewed by 8388
Abstract
During an investigation of fungal diversity on fruit trees in Guizhou Province, 23 Cladosporium strains were isolated from various locations in Guizhou Province. Culture characteristics, morphology and molecular phylogenetic analysis of three genetic markers, namely, the internal transcribed spacer regions (ITS) of the [...] Read more.
During an investigation of fungal diversity on fruit trees in Guizhou Province, 23 Cladosporium strains were isolated from various locations in Guizhou Province. Culture characteristics, morphology and molecular phylogenetic analysis of three genetic markers, namely, the internal transcribed spacer regions (ITS) of the rDNA, partial fragments of actin (act), and the translation elongation factor 1-α (tef1-ɑ) loci were used to characterize these isolates. Seven new Cladosporium species and new host records for five other species were introduced, with detailed descriptions and illustrations. This study showed that there is a rich diversity of Cladosporium spp. in fruit trees in Guizhou Province. Full article
(This article belongs to the Special Issue Recent Advances in Taxonomy, Phylogeny and Evolution of Fungi)
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18 pages, 2711 KB  
Article
Talaromyces santanderensis: A New Cadmium-Tolerant Fungus from Cacao Soils in Colombia
by Beatriz E. Guerra Sierra, Luis A. Arteaga-Figueroa, Susana Sierra-Pelaéz and Javier C. Alvarez
J. Fungi 2022, 8(10), 1042; https://doi.org/10.3390/jof8101042 - 1 Oct 2022
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Abstract
Inorganic pollutants in Colombian cocoa (Theobroma cacao L.) agrosystems cause problems in the production, quality, and exportation of this raw material worldwide. There has been an increased interest in bioprospecting studies of different fungal species focused on the biosorption of heavy metals. [...] Read more.
Inorganic pollutants in Colombian cocoa (Theobroma cacao L.) agrosystems cause problems in the production, quality, and exportation of this raw material worldwide. There has been an increased interest in bioprospecting studies of different fungal species focused on the biosorption of heavy metals. Furthermore, fungi constitute a valuable, profitable, ecological, and efficient natural soil resource that could be considered in the integrated management of cadmium mitigation. This study reports a new species of Talaromyces isolated from a cocoa soil sample collected in San Vicente de Chucurí, Colombia. T. santanderensis is featured by Lemon Yellow (R. Pl. IV) mycelium on CYA, mono-to-biverticillade conidiophores, and acerose phialides. T. santanderensis is distinguished from related species by its growth rate on CYAS and powdery textures on MEA, YES and OA, high acid production on CREA and smaller conidia. It is differentiated from T. lentulus by its growth rate on CYA medium at 37 °C without exudate production, its cream (R. PI. XVI) margin on MEA, and dense sporulation on YES and CYA. Phylogenetic analysis was performed using a polyphasic approach, including different phylogenetic analyses of combined and individual ITS, CaM, BenA, and RPB2 gene sequences that indicate that it is new to science and is named Talaromyces santanderensis sp. nov. This new species belongs to the Talaromyces section and is closely related to T. lentulus, T. soli, T. tumuli, and T. pratensis (inside the T. pinophilus species complex) in the inferred phylogeny. Mycelia growth of the fungal strains was subjected to a range of 0–400 mg/kg Cd and incorporated into malt extract agar (MEA) in triplicates. Fungal radial growth was recorded every three days over a 13-day incubation period and In vitro cadmium tolerance tests showed a high tolerance index (0.81) when the mycelium was exposed to 300 mg/kg of Cd. Results suggest that T. santanderensis showed tolerance to Cd concentrations that exceed the permissible limits for contaminated soils, and it is promising for its use in bioremediation strategies to eliminate Cd from highly contaminated agricultural soils. Full article
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