JOURNAL OF BASIC MICROBIOLOGY基础微生物学杂志
JOURNAL OF BASIC MICROBIOLOGY(英文缩写 J BASIC MICROB),ISSN 0233-111X,eISSN 1521-4028,中文译名:基础微生物学杂志 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。
发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。
期刊介绍
历年影响因子趋势
| JCR 数据年份 | 影响因子 | JCR 分区 |
|---|---|---|
| 2021 | 2.650 | Q4 |
| 2022 | 3.100 | Q3 |
| 2023 | 3.500 | Q2 |
| 2024 | 2.700 | Q3 |
| 2025 | 3.300 | Q3 |
JOURNAL OF BASIC MICROBIOLOGY 最新收录文献
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1. Image-Assisted Quantification Using Arc GIS and LC-Ms Based Characterization of Pigments in Pycnoporus sanguineus.
PMID:日期:2026-09-01Pycnoporus sanguineus is a medicinally important macrofungus recognized for its ability to produce diverse bioactive secondary metabolites, including extracellular pigments with potential biotechnological and therapeutic potential. The present study evaluated the growth characteristics, biomass production under solid-state and submerged culture conditions, pigment formation, and bioactivity of P. sanguineus. Among the submerged conditions, agitated cultivation in potato dextrose broth (PDB) produced the highest mycelial biomass (1.16 g dry weight) after 25 days of incubation. Comparative evaluation on six solid media revealed maximum radial growth on potato dextrose agar (PDA) with a growth rate of 74.66 mm within 120 h and a specific growth rate of 0.09048 h. Pigment production was further assessed using modified PDA culture formulations and quantified by a novel ArcGIS-based digital image analysis approach. Pigment from all five formulations was extracted using accelerated solvent extraction (ASE) with ethanol and subjected to UV-Visible spectrophotometric analysis for comparative assessment of relative pigment accumulation. Spectrophotometric analysis at 416 nm showed a positive correlation (R = 0.8005) with the ArcGIS-derived pigmented area, validating image-based assessment of relative pigment accumulation. LC-MS analysis identified pigment-associated metabolites, including cinnabarinic acid, tramesanguin, lambertellin, and coibanoles A and B. The pigment extracts exhibited significant antioxidant and concentration-dependent antibacterial activities against Escherichia coli and Enterococcus faecalis, with MIC values supporting their antibacterial potential. Collectively, the results demonstrated that integrating Arc-GIS-based image analysis, UV-visible spectrophotometric, and LC-MS profiling provides a robust approach for the characterization and biological evaluation of P. sanguineus pigments, highlighting their potential for further application.
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2. Population Density and Root Colonization of AM Fungi in the Mycorrhizosphere of Semiarid Plant Species.
PMID:日期:2026-09-01The ecological role of Arbuscular mycorrhizal fungi (AMF) in subtropical semiarid habitats is yet unexplored. Five subtropical semiarid plant species-Bambusa arundinacea (Retz.) Wild., Borassus flabellifer L., Eucalyptus globulus Labill, Euphorbia antiquorum L., and Vachellia leucophloea (Roxb.)-collected from the Pudukkottai district of south India were used in this study to examine the diversity, abundance, and root colonization of AMF. The study aims to determine the mycorrhizal status of these host plants, investigate the connection between root colonization and AMF spore quantity, and estimate the influence of edaphic factors, such as soil pH and nutrient availability, and AMF distribution. The conventional wet-sieving and decanting method was used to extract AMF spores, and the root-staining technique was used to assess root colonization. There were 62 morphotypes detected in five genera: Glomus, Acaulospora, Scutellospora, Gigaspora and Sclerocystis. Glomus was the most abundant genus in this study. B. arundinacea and V. leucophloea showed the highest root colonization rates (> 80%) and strong mycorrhizal interaction. In contrast, E. antiquorum had the highest spore abundance while B. arundinacea the lowest spore density. These results indicate that there is no direct correlation between root colonization and spore quantity in semiarid habitats because host compatibility and edaphic variables distinctly influence AMF colonization and sporulation. These findings emphasize the future utilization of native AMF as biofertilizer inoculants for sustainable agriculture and ecosystem resilience under water-scarce conditions and provide baseline ecological findings on AMF colonies in semi-arid habitats.
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3. Mechanisms Underlying Efficient n-Eicosane Degradation and Physiological Adaptation in Rhodococcus erythropolis KB1.
PMID:日期:2026-09-01Low temperature limits microbial remediation of petroleum hydrocarbon-contaminated environments, yet the physiological basis for long-chain alkane degradation under cold stress remains insufficiently understood. In this study, Rhodococcus erythropolis KB1 was cultured with n-eicosane as the sole carbon source at 4°C, 16°C, and 30°C for 5, 10, and 15 days. Degradation performance, growth-associated traits, surface tension, membrane permeability, redox-energy metabolism, key enzyme activities, and putative GC-MS signals were evaluated. KB1 showed the highest n-eicosane degradation efficiency at 30°C, reaching 86.84 ± 0.21% by Day 15, accompanied by enhanced biomass accumulation, protein content, cytochrome P450 monooxygenase (CYP450) activity, adenosine triphosphate (ATP) and nicotinamide adenine dinucleotide phosphate (NADPH) contents, and Na-K-ATPase and Ca-Mg-ATPase activities. Notably, KB1 retained substantial low-temperature degradation capacity, achieving 60.13 ± 0.44% degradation at 4°C by Day 15. Correlation analysis indicated that degradation efficiency was associated with membrane permeability, reducing-power supply, ion-transport activity, biomass accumulation, and interfacial regulation rather than a single enzymatic response. Gas chromatography-mass spectrometry (GC-MS) analysis detected 23 putative compounds, including shorter-chain alkane-related signals, fatty alcohols, and fatty acid methyl esters, supporting a pathway involving terminal oxidation, β-oxidation, and downstream tricarboxylic acid (TCA)-cycle-related metabolism. Overall, R. erythropolis KB1 coordinates membrane-interface remodeling, redox-energy coupling, ion transport, and oxidative transformation to sustain n-eicosane degradation across temperature gradients. These findings identify KB1 as a promising cold-adapted microbial resource for petroleum hydrocarbon bioremediation.
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4. Whole-Genome Analysis of Bacillus Licheniformis Ali5 and Synthesis of Lichenysin via Genome Shuffling.
PMID:日期:2026-09-01Whole-genome sequencing of Bacillus licheniformis Ali5 was performed via MGI-seq PE150 and Nanopore single-molecule real-time sequencing. The strain has a 4,114,664 bp circular genome encoding 4030 protein-coding genes. Functional annotation across NR, COG, GO, KEGG, CARD, BacMet, and CAZy databases identified 4025, 2812, 988, 1242, 72, 69, and 94 corresponding genes, respectively, and antiSMASH 6.0 revealed multiple antimicrobial biosynthetic gene clusters, including intact lichenysin and lichenicidin VK21 A1/A2 gene clusters. Three rounds of recursive protoplast fusion-based genome shuffling, paired with a dual-index screening system, significantly improved strain growth and lichenysin biosynthesis. Recombinants exhibited shortened lag phase, enhanced proliferation, improved stationary-phase stability, and higher diauxic peak biomass. PP3-176 and PP3-186 showed 4.6%-8.1% higher 12-h shake-flask titer and 3.1%-4.0% higher maximum titer than the parental average, with excellent fermentation stability. 1-L bioreactor validation confirmed strong scale-up potential. PP3-186 achieved 27.2% and 31.6% titer increases at 12 h and 20 h, while PP3-176 yielded 20.4% and 14.6% improvements with robust metabolic performance. This study validates genome shuffling as an effective strategy for enhancing lichenysin production, providing candidate strains and technical support for industrial application.
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5. Diversity and Distribution of Glomoid and Non-Glomoid Arbuscular Mycorrhizal Fungi Associated With Solanaceae.
PMID:日期:2026-09-01Arbuscular mycorrhizal fungi (AMF) are widespread root-associated fungi that contribute to plant nutrient acquisition and soil ecosystem processes. However, information on the distribution of Glomoid and non-Glomoid AMF associated with Solanaceae hosts in the northwestern Himalaya remains limited. The present study evaluated the diversity, distribution, and observed host occurrence patterns of AMF associated with tomato (Solanum lycopersicum), capsicum (Capsicum annuum), eggplant (Solanum melongena), and black nightshade (Solanum nigrum). A total of 72 AMF morphotaxa representing 13 genera were recovered from the rhizosphere soils, of which 39 taxa (54.2%) belonged to the Glomoid taxonomic group and 33 taxa (45.8%) to the non-Glomoid taxonomic group. Glomoid taxa showed higher occurrence frequency and broader observed host distribution, with Glomus constrictum and Septoglomus deserticola recorded in all four hosts. Non-Glomoid AMF contributed 45.8% of total richness and included a higher proportion of taxa observed in a single host. AMF richness varied among host species, with capsicum and eggplant supporting greater observed richness than tomato and black nightshade. Diversity indices were generally higher for Glomoid taxa, whereas evenness did not differ significantly between the two taxonomic groups. Overall, the study provides baseline information on AMF richness and distribution associated with cultivated and wild Solanaceae in the northwestern Himalaya. The observed occurrence patterns represent associations within the sampled hosts and should not be interpreted as evidence of confirmed host specialization or functional differentiation. Molecular identification, quantitative community data, environmental variables, and multivariate analyses will be required to investigate the ecological factors underlying these distribution patterns.
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6. Bacterial Communities Associated With Tuber indicum From the Nujiang River Basin, China.
PMID:日期:2026-08-01Tuber indicum, an ectomycorrhizal fungus endemic to southwestern China, typically forms brûlés, which underlying microbial and edaphic dynamics remain poorly understood. In this study, we investigated bacterial community composition associated with T. indicum ascocarps and soils in- and outside the brûlé at two natural sites (LB and BZL). Soil properties were analyzed to evaluate the correlation between the bacterial community and the soil properties. LB soils show higher pH, calcium, organic matter, total nitrogen, and available phosphorus, whereas BZL soils were enriched in iron and manganese. These factors significantly shaped the microbial communities, as shown by canonical correspondence analysis. Proteobacteria dominated all samples and positively correlated with organic matter, manganese, and pH, indicating potential roles in brûlé formation. Verrucomicrobia showed positive correlations with potassium, calcium, and magnesium. Site-specific enrichment patterns suggested that soil mineral composition exerts selective pressure on microbial assembly. Notably, Bradyrhizobium elkanii and other beneficial taxa such as Bacillus, Ensifer, and Pseudomonas were differentially distributed in ascocarps and adjacent soils, implying their potential involvement in truffle symbiosis and fruiting body development. This study elucidates the interactions between soil physicochemical properties and microbial communities, offering novel ecological insights into the mechanisms underlying T. indicum fruiting body formation.
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7. Rhizosphere Microbial Function Overrides Diversity in Enhancing Aromatic Rice Yield and Quality Under Organic Management.
PMID:日期:2026-08-01Non-Basmati aromatic rice varieties of Indian landrace are preferred for their distinctive aroma and superior grain quality, yet they generally exhibit lower yield potential. Rhizosphere microbial activities play a crucial role in plant performance under organic nutrient management. A 3-year field experiment was conducted in Indo-Gangetic alluvial soil to evaluate whether microbial ecological diversity or functional attributes exert a stronger impact on the yield and aroma of six indigenous non-basmati aromatic rice varieties, along with one non-aromatic check. A total of 140 bacterial cultures, 20 from the rhizosphere of each variety, were characterized for carbon source utilization, stress resistance, and antibiotic resistance, and grouped by hierarchical clustering to estimate diversity. The correlation between the diversity indices and grain yield and aroma score was weak or negative. In contrast, microbial population size, nitrogen fixation, and nutrient-solubilizing capacity showed strong and positive correlation with grain yield and aroma intensity. Principal component analysis clearly distinguished functional traits from ecological diversity indices. Among the tested varieties, Kalojeera rhizosphere had the highest microbial functional activity (57%, 105%, 26%, and 33% higher N fixation and P, K, and Zn solubilization, respectively, than Dudheswar) and grain yield, while Dudheswar had comparatively lower functional capacities. The results clearly demonstrate that microbial functional capacity, rather than species diversity, is the primary determining factor for crop productivity and grain quality under organic farming. Strategies for the selection of aromatic rice varieties harboring rhizosphere microbial functional activities and promoting efficient nutrient cycling could help sustainable aromatic rice production.
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8. Harnessing Multifunctional Bacillus thuringiensis for Plant Growth Promotion and Biocontrol Potential Against Spodoptera frugiperda.
PMID:日期:2026-08-01Bacillus thuringiensis is the most widely used microbial bioinsecticide; however, only a few strains possess additional traits such as plant growth promotion and biocontrol potential. This study characterized 25 B. thuringiensis isolates obtained from soil and infected insect cadavers to identify multifunctional strains with insecticidal and plant growth-promoting (PGP) properties. Microscopic examination revealed diverse parasporal crystal morphologies, while 16S rRNA sequencing confirmed their identity with 99%-100% similarity to reference strains. Enzymatic profiling showed protease activity in 24 strains and lipase activity in 21 strains, whereas all isolates produced lecithinase and chitinase. All strains produced indole-3-acetic acid (11.22-31.87 µg mL) and ammonia (26.74-77.68 µg mL), while phosphate solubilization and siderophore production were observed in 21 and 11 strains, respectively. Bioassays against Spodoptera frugiperda identified five highly virulent strains causing more than 90% larval mortality. Among these, NBAIR Bt25 showed the highest efficacy, causing 92% mortality within 96 h with an LC of 39.75 µg mL. PCR analysis revealed that NBAIR Bt25 carries multiple pesticidal genes (cry1A, cry1D, cry1E, cry1I, cry2A, and vip3A). Paper towel and glasshouse assays demonstrated that strain NBAIR Bt25 significantly enhanced shoot growth and secondary root development. Overall, NBAIR Bt25 emerged as a promising multifunctional strain with strong insecticidal activity, plant growth-promoting ability, and biocontrol potential, making it a suitable candidate for sustainable pest management and climate-smart agriculture.
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9. Biological Management of Ginger Soft Rot Disease Under In Vitro and In Silico Condition.
PMID:日期:2026-08-01Ginger (Zingiber officinale Roscoe) is an economically and medicinally important spice crop, but its cultivation is severely affected by soft rot disease. In the present study, Fusarium solani (F. solani) associated with ginger soft rot was isolated, identified, and used as the target pathogen for antifungal evaluation. Diseased ginger rhizomes were collected from Gangapur village, Bahraich, Uttar Pradesh, India. The pathogen was isolated on potato dextrose agar (PDA), characterized morphologically and microscopically, and confirmed as F. solani through ITS sequencing and phylogenetic analysis. The antifungal potential of Trachyspermum ammi (T. ammi) essential oil was then evaluated against F. solani under in vitro conditions and supported by in silico analysis. The essential oil showed strong activity with a minimum inhibitory concentration (MIC) of 0.20 µL/mL and a minimum cidal concentration (MCC) of 0.60 µL/mL. The minimum killing time (MKT) of pure oil was 40 s, while the oil at its MCC required 24 h. Antifungal toxicity persisted at high inoculum density and remained stable after heating to 80°C and autoclaving. Molecular docking of F. solani cutinase indicated strongest binding for thymol, followed by p-cymene and γ-terpinene. These findings highlight the potential of T. ammi essential oil as an eco-friendly antifungal agent for managing F. solani-associated ginger soft rot.
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10. Research Progress on the Diversity, Functions, and Applications of Endophytes in Panax ginseng.
PMID:日期:2026-08-01Endophytes of Panax ginseng are symbiotic microbes colonizing internal tissues asymptomatically, forming a core component of the ginseng microecosystem through co-evolution. This review summarizes recent progress on ginseng endophytes, covering community diversity, ecological functions, and application prospects. Culturable endophytic fungi span over 40 genera, dominated by Ascomycota, while endophytic bacteria mainly belong to Firmicutes, Proteobacteria and Actinobacteria. Research methodologies have advanced from culture-based isolation to high-throughput amplicon sequencing and ASV-based profiling. Functionally, approximately 78% of culturable isolates produce indole-3-acetic acid, and strains with phosphate-solubilizing, nitrogen-fixing and siderophore-secreting activities are widely identified. For biocontrol, Paenibacillus and Burkholderia strains show broad-spectrum antagonism against 5-8 common ginseng pathogens, with Bacillus strains achieving 61.45%-80% mycelial inhibition. Over 10 endophytic species can synthesize ginsenosides or convert common ginsenosides into rare monomers like Rg2, Rb3, and compound K, with some elicitor strains increasing total ginsenoside contents in adventitious roots up to fourfold. Ginseng endophytes show great potential as microbial fertilizers and biocontrol agents for sustainable ginseng cultivation, biocatalysts for rare ginsenosides production, and sources of novel bioactive lead compounds for drug discovery. Current challenges, including the abundance of unculturable microbiota, unclear host-microbe interactions, and inconsistent field efficacy are discussed, along with future research directions.