Succession of fungi colonizing porous and compact limestone exposed to subtropical environments
Gómez Cornelio, Sergio Alberto [autor] | Mendoza Vega, Jorge [autor] | Gaylarde, Christine Claire [autora] | Reyes Estebanez, María Manuela de Jesús [autora] | Morón Ríos, Alejandro [autor] | De la Rosa García, Susana del Carmen [autora] | Ortega Morales, Benjamín Otto [autor].
Tipo de material: ArtículoTipo de contenido: Texto Tipo de medio: Computadora Tipo de portador: Recurso en líneaTema(s): Hongos | ArqueologíaTema(s) en inglés: Fungi | ArchaeologyDescriptor(es) geográficos: Zona Arqueológica Becán (Campeche, México) Nota de acceso: Disponible para usuarios de ECOSUR con su clave de acceso En: Fungal Biology. volumen 116, número 10 (October 2012), páginas 1064-1072. --ISSN: 1878-6146Número de sistema: 9872Resumen:Tipo de ítem | Biblioteca actual | Colección | Signatura | Estado | Fecha de vencimiento | Código de barras |
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Artículos | Biblioteca Electrónica Recursos en línea (RE) | ECOSUR | Recurso digital | ECO400098728001 |
Disponible para usuarios de ECOSUR con su clave de acceso
Little is known about the dynamics of succession of fungi on limestoneexposed in subtropicalenvironments. In this study, the colonization of experimental blocks of compact and porouslimestone by a fungal community derived from natural biofilms occurring on Structure X from the archaeological site of Becán (México), was studied using a cultivation-dependent approach after short-term (9 m) exposure in order to provide a preliminary insight of the colonization process under seminatural conditions. Microbial growth seen as the change of colour of stone surfaces to black/dark green was more abundant on the porouslimestone. There was a fairly clear difference in microbial colonization between the onset of the experiment and the 6th month for both limestone types, but no significant increase in the colonization of coupons occurred between months 6 and 9. This could be related to the low rainfall expected for this period, corresponding to the dry season. A total of 977 isolates were obtained. From these, 138 sterile fungi were unidentified, 380 could only be assigned to the order Sphaeropsidales; the remaining isolates (459) were grouped into 27 genera and 99 different species. Nearly all detected fungal species belonged to the Ascomycota (90 %). Rare taxa (species represented by one to three isolates) included the recently described genus Elasticomyces, several species of genera Hyalodendron, Monodyctis, Papulospora, Curvularia, and Septoria. Other taxa were Minimedusa and Gliomastix luzulae, which have not been previously described for stone environments. eng
Abundant fungi included several species of the common genera Cladosporium, Alternaria, and Taeniolella typical for a range of habitats. Succession of populations was observed for certain taxa, this shift in the composition of fungal communities was more evident in porouslimestone. After 6 m of exposure, species of the genera Scolecobasidium, Hyalodendron, and Taeniolella were predominant, while after 9 m, the predominant species belonged to the genera Curvularia and Alternaria, particularly on porous stone. These results suggest that Curvularia and Alternaria replaced other fungi, due to a higher tolerance towards low levels of available water during the dry season. Higher levels of water within the porous stone, keep longer periods of microbial activity, minimizing the impact of desiccation. This study contributes to understand the diversity of fungal communities in stone surfaces in subtropical settings and the dynamics of colonization on limestone. eng