Quantitative estimations of zoosporic fungi in the environment have historically received little attention, primarily due to methodological challenges and their complex life cycles. Conventional methods for quantitative analysis of zoosporic fungi to date have mainly relied on direct observation and baiting techniques, with subsequent fungal identification in the laboratory using morphological characteristics. Although these methods are still fundamentally useful, there has been an increasing preference for quantitative microscopic methods based on staining with fluorescent dyes, as well as the use of hybridization probes. More recently however PCR based methods for profiling and quantification (semi- and absolute) have proven to be rapid and accurate diagnostic tools for assessing zoosporic fungal assemblages in environmental samples. Further application of next generation sequencing technologies will however not only advance our quantitative understanding of zoosporic fungal ecology, but also their function through the analysis of their genomes and gene expression as resources and databases expand in the future. Nevertheless, it is still necessary to complement these molecular-based approaches with cultivation-based methods in order to gain a fuller quantitative understanding of the ecological and physiological roles of zoosporic fungi.
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http://dx.doi.org/10.1016/j.mimet.2012.02.003 | DOI Listing |
J Fungi (Basel)
January 2025
Zoological Institute, Russian Academy of Sciences, St. Petersburg 199034, Russia.
In (Opisthokonta, Aphelida) zoospores, the expression of 7708 genes out of 7802 described genes was detected. For 589 of them, expression levels were shown to be more than 10 times higher than the median level. Among the highly expressed genes with known functions, the largest functional categories were "Cellular Metabolism", "Protein Synthesis", "Cell State Control", and "Nucleic Acid Processing".
View Article and Find Full Text PDFJ Fungi (Basel)
December 2024
State Key Laboratory for Crop Stress Resistance and High-Efficiency Production, College of Plant Protection, Northwest A&F University, Yangling, Xianyang 712100, China.
While the rapid rise in bioinformatics has facilitated the identification of the domains and functions of many proteins, some still have no domain annotation or largely uncharacterized functions. However, the biological roles of unknown proteins were not clear in oomycetes. An analysis of the genome database identified the protein Ps495620, which has no domain annotations and functional predictions in .
View Article and Find Full Text PDFDis Aquat Organ
January 2025
ICAR Research Complex for NEH Region, Umiam, Meghalaya PIN-793103, India.
The present study evaluated the immunomodulatory and disease resistance-enhancing effects of dietary supplementation of Withania somnifera root powder in Labeo rohita (22.10 ± 3.30 g, 12.
View Article and Find Full Text PDFChem Biodivers
January 2025
BRiCM: Bangladesh Reference Institute for Chemical Measurements, Natural Product Chemistry, Dhaka, 1205, Dhaka, BANGLADESH.
Introduction: Ethnomedicinal plants in Asia offer a promising, low-side-effect alternative to synthetic drugs for treating fungal infections, one of the most widespread communicable diseases caused by pathogenic fungi. Despite being underexplored, the region's rich plant diversity holds the potential for developing effective antifungal drugs. Research is increasingly focused on bioactive compounds from these plants, which show strong antifungal properties and may serve as leads for new drug development.
View Article and Find Full Text PDFSci Adv
January 2025
Department of Plant Pathology, Nanjing Agricultural University, Nanjing 210095, China.
Inhibiting pathogen chemotaxis is a promising strategy for reducing disease pressure. However, this strategy is currently in the proof-of-concept stage. Here, was used as a model, as its biflagellated zoospores could sense genistein, a soybean root exudate, to navigate host and initiate infection.
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