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Biomedical subjects

K D Hyde

Publications and source records attributed to K D Hyde.

8 recordsLinked to original sources

Production of wood decay enzymes, loss of mass, and lignin solubilization in wood by diverse tropical freshwater fungi.

In vitro production of cellulase and xylanase was common among diverse freshwater ascomycetes and their hyphomycetous anamorphs. Production of enzymes involved in lignin degradation was rare. Most isolates were capable of causing mass loss in angiosperm wood, although values were low, at approximately 10% during a 24-week period. A few isolates caused higher mass loss of up to 26.5%, and five of these were shown to solubilize significant amounts of lignin. This is the first report of lignin solubilization by freshwater fungi. Torula herbarum (hyphomycete) and Ophioceras dolichostomum (ascomycete) produced indices of lignin solubilization equivalent to those of terrestrial white-rot basidiomycetes. In all cases wood decay was 2.2- to 3-fold higher in exposed rather than submerged conditions.

Cellulase↗

Detection and taxonomic placement of endophytic fungi within frond tissues of Livistona chinensis based on rDNA sequences.

The 5.8S gene and flanking internal transcribed spacers (ITS1 and ITS2) of the rDNA were amplified from total DNA extracted from frond tissues of Livistona chinensis with universal and fungal-specific primers. These amplified fragments were cloned and sequenced. Phylogenetic analysis based on the 5.8S gene sequences indicated that the six clone sequences obtained were of different origins. Five sequences, P1-9, P2-6, P4-4, P4-5, and P4-7, belonged to the fungi and one sequence, P3-2, belonged to the plants. P1-9 was inferred to belong to the Basidiomycota based on the phylogenetic analysis of the 5.8S gene sequences but could not be identified to lower taxonomic levels. Further identification of the other four fungal clones to lower taxonomic levels was attempted based on phylogenetic analysis and sequence comparison of both the conserved 5.8S gene and the variable ITS regions. The origin of P2-6 was identified to be Glomerella and its anamorph Colletotrichum, the origins of P4-5 and P4-7 were Mycosphaerella and its anamorph Cladosporium, and the origin of P4-4 was the Herpotrichiellaceae. The direct approach to detection and taxonomic placement of endophytic fungi within host tissue without the need for conventional in vitro culturing is discussed.

DNA, Fungal↗

Colonization patterns of wood-inhabiting fungi on baits in Hong Kong rivers, with reference to the effects of organic pollution.

The diversity of wood-inhabiting fungi was investigated by submerging woody baits at upstream and downstream sites of the Lam Tsuen and Tai Po Rivers in Hong Kong. The diversity of fungi in the Lam Tsuen River was also compared with that on natural woody substrates found in a previous study. There were differences in the species composition between the upstream and downstream sites, possibly reflecting natural variations along the river. The Tai Po River downstream was organically polluted, which appeared to have little effect on species diversity since more species were recorded. Organic pollution may, however, cause a shift in species composition. The fungal communities on baits and natural substrates in the Lam Tsuen River were similar, although a lower diversity was observed on baits. This may be related to the period of submergence and the fact that a single wood type was used. Cercophora spp. occurred frequently downstream in the Tai Po River, while the common species in the Lam Tsuen River were Aquaticola rhomboidea and Pseudoproboscispora aquatica. Further interpretation on the effects of organic pollution was limited because of single collection data but appropriate experimental designs--putting baits in unimpacted sites for assessing human impacts in streams--are suggested.

Ascomycota↗

Endophytic fungi from Amomum siamense.

Endophytic fungi were isolated from apparently healthy organs of the wild ginger Amomum siamense Criab.. including leaves, pseudostems, and rhizomes, collected from two sites in Doi Suthep-Pui National Park, Thailand. Endophytes were relatively common with an isolate prevalence of 70%-83% at the two sites sampled in the wet and dry seasons. The endophyte assemblages from the two sites were diverse and comprised 7 Ascomycetes and 26 mitosporic fungi. Colletotrichum "gloeosporioides" (Penz.) Penz. & Sacc. in Penz., Glomerella spp., xylariaceous fungi, and Phomopsis spp. were consistently dominant as endophytes on Amomum siamense, but many rare species and mycelia sterilia were also recorded. There was no significant difference between the number of isolates recovered from leaves containing vein tissues and those containing intervein tissues, independent of leaf age. Most taxa showed a preference for either leaf tissue or pseudostems. Two new Ascomycetes species. Gaeumannomyces amomi and Leiosphaerella amomi, were discovered from leaves and rhizomes, respectively, and four species of Pyricularia, including three new species, were isolated from leaves.

Fungi↗

Phylogenetic significance of the pseudoparaphyses in Loculoascomycete taxonomy.

The ontogeny of the ascostroma, in particular the centrum structures, has always been regarded as an important criterion in the subdivision of the Loculoascomycetideae (ascomycetous fungi). However, the use of pseudoparaphysis type, cellular or trabeculate, to classify taxa at the ordinal level has been contentious due to the lack of information about their evolution. To determine the phylogenetic significance of the pseudoparaphysis and its variants, DNA sequences of the 18S nuclear rRNA genes from representatives of the orders Pleosporales and Melanommatales were obtained and analyzed. Species with pseudoparaphyses formed a monophyletic group with high statistical confidence. The monophyly of a distinct lineage of species with cellular pseudoparaphyses (the order Pleosporales) is rejected. Likewise, monophyly of a distinct lineage of species with trabeculate pseudoparaphyses (the order Melanommatales) is rejected also. The Pleosporales and Melanommatales are, therefore, not natural orders. The Lophiostomataceae, Phaeosphaeriaceae, and Melanommataceae are most probably polyphyletic, as is the genus Massarina.

Ascomycota↗

Myopia associated with hyperbaric oxygen therapy.

BACKGROUND: Hyperbaric oxygen therapy (HBOT) involves exposing patients to elevated oxygen pressures and concentrations for the treatment of soft tissue degenerative diseases. As side effects, some patients experience cataract development and/or a significant increase in myopia. SUBJECTS: Eight subjects participated in this project. All were receiving HBOT for health problems. METHODS: For all subjects, acuities and refractive error corrections were measured before and after HBOT sessions at the beginning, midpoint, and end of therapy. For four subjects, A-scan ultrasound and corneal curvature measurements were also made before and after selected HBOT sessions. In addition, susceptibility to free radical damage and indicators of actual damage were measured by blood analyses. During the first half of HBOT therapy, four subjects took placebo tablets; during the second half, antioxidant supplements were given. RESULTS: No subject showed significant acuity or refractive error changes produced by single HBOT sessions. Two of the 8 subjects showed significant increases in myopia over the 20 session course of HBOT. No corresponding changes were found in the ultrasound, corneal curvature, or blood analysis data. DISCUSSION: Theoretically, the increases in myopia could have been caused by lenticular refractive index changes resulting from oxidative damage to lens proteins. However, the biochemical assays used in this project did not predict which subjects were susceptible to increased myopia, nor did they demonstrate elevated levels of free radical activity in a subject who did experience an increase in myopia.

Adult↗

Molecular and morphological characterization of Pyricularia and allied genera.

The phylogenetic relationships of Pyricularia species and species from related genera were established from sequences of the internal transcribed spacer ribosomal RNA gene. Phylogenetic analysis disclosed a consistent correlation with spore morphology. Most Pyricularia species studied, and two species of Dactylaria that have obpyriform conidia, fell within the Magnaporthaceae cluster with high bootstrap support. Pyricularia variabilis was more related to Dactylaria, Tumularia or Ochroconis species than to the Magnaporthaceae. Dactylaria and species of Nakataea, Ochroconis, Pyriculariopsis and Tumularia were distinct from the Magnaporthaceae, and the genus Dactylaria is polyphyletic. The combination of morphological and molecular characters, such as spore morphology and ITS ribosomal DNA sequences data, suggested that conidial shape could be a primary character to distinguish Pyricularia from related genera.

Ascomycota↗

Phylogeny of Rosellinia capetribulensis sp. nov. and its allies (Xylariaceae).

A new Rosellinia species, R. capetribulensis isolated from Calamus sp. in Australia is described. R. capetribulensis is characterized by perithecia immersed within a carbonaceous stroma surrounded by subiculum-like hyphae, asci with large, barrel-shaped amyloid apical apparatus and large dark brown spores. Morphologically, R. capetribulensis appears to be similar to R. bunodes, R. markhamiae and R. megalospora. To gain further insights into the phylogeny of this new taxon we analyzed the ITS-5.8S rDNA using maximum parsimony and likelihood methods. In addition, a morphological dataset also was analyzed phylogenetically to investigate possible affinities. ITS rDNA based phylogenies reveal that R. capetribulensis is closely related to other Rosellinia species showing closest affinity to R. arcuata, RL necatrix and R. pepo. However, analysis of R. capetribulensis forms an unsupported branch sister to these taxa. Results from the morphological matrix indicate a close morphological affinity to members of Rosellinia subgenus Rosellinia. Despite that ITS rDNA and morphological analyses present difficulties in constructing a proper phylogenetic framework among Rosellinia and allied genera, there is sufficient evidence to support the establishment of the new taxon in the genus Rosellinia. The morphological similarities and differences between R. capetribulensis and allied genera such as Astrocystis and Entoleuca are also briefly discussed.

Australia↗