Your browser doesn't support javascript.
loading
Mostrar: 20 | 50 | 100
Resultados 1 - 3 de 3
Filtrar
Mais filtros










Base de dados
Intervalo de ano de publicação
1.
Appl Environ Microbiol ; 81(12): 3900-13, 2015 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-25819973

RESUMO

Microbial contamination is the main cause of loss of biomass yield in microalgal cultures, especially under outdoor environmental conditions. Little is known about the identities of microbial contaminants in outdoor mass algal cultures. In this study, a new genus and species of vampyrellid amoeba, Vernalophrys algivore, is described from cultures of Scenedesmus dimorphus in open raceway ponds and outdoor flat-panel photobioreactors. This vampyrellid amoeba was a significant grazer of Scenedesmus and was frequently associated with a very rapid decline in algal numbers. We report on the morphology, subcellular structure, feeding behavior, molecular phylogeny, and life cycle. The new amoeba resembles Leptophrys in the shape of trophozoites and pseudopodia and in the mechanism of feeding (mainly by engulfment). It possesses two distinctive regions in helix E10_1 (nucleotides 117 to 119, CAA) and E23_1 (nucleotides 522 and 523, AG) of the 18S rRNA gene. It did not form a monophyletic group with Leptophrys in molecular phylogenetic trees. We establish a new genus, Vernalophrys, with the type species Vernalophrys algivore. The occurrence, impact of the amoeba on mass culture of S. dimorphus, and means to reduce vampyrellid amoeba contamination in Scenedesmus cultures are addressed. The information obtained from this study will be useful for developing an early warning system and control measures for preventing or treating this contaminant in microalgal mass cultures.


Assuntos
Cercozoários/isolamento & purificação , Microalgas/parasitologia , Fotobiorreatores/parasitologia , Lagoas/parasitologia , Pseudópodes/fisiologia , Scenedesmus/parasitologia , Cercozoários/genética , Cercozoários/fisiologia , Cercozoários/ultraestrutura , DNA de Protozoário/genética , DNA Ribossômico/genética , Microalgas/crescimento & desenvolvimento , Microscopia Eletrônica de Transmissão , Filogenia , Pseudópodes/genética , Pseudópodes/ultraestrutura , Scenedesmus/crescimento & desenvolvimento , Alinhamento de Sequência , Análise de Sequência de DNA , Trofozoítos/ultraestrutura
2.
Biotechnol Bioeng ; 111(9): 1748-57, 2014 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-24931928

RESUMO

Biofuels derived from the mass cultivation of algae represent an emerging industry that aims to partially displace petroleum based fuels. Outdoor, open-pond, and raceway production facilities are attractive options for the mass culture of algae however, this mode of cultivation leaves the algae susceptible to epidemics from a variety of environmental challenges. Infestations can result in complete collapse of the algal populations and destruction of their valuable products making it paramount to understand the host-pathogen relationships of known algal pests in order to develop mitigation strategies. In the present work, we characterize the spatial-temporal response of photosynthetic pigments in Scenedesmus dimorphus to infection from Amoeboaphelidium protococcarum, a destructive endoparasite, with the goal of understanding the potential for early detection of infection via host pigment changes. We employed a hyperspectral confocal fluorescence microscope to quantify these changes in pigmentation with high spatial and spectral resolution during early parasite infection. Carotenoid abundance and autofluorescence increased within the first 24 h of infection while chlorophyll emission remained constant. Changes in host cell photosynthesis and bulk chlorophyll content were found to lag behind parasite replication. The results herein raise the possibility of using host-cell pigment changes as indicators of nascent parasite infection.


Assuntos
Parasitos/crescimento & desenvolvimento , Pigmentos Biológicos/análise , Scenedesmus/parasitologia , Animais , Clorofila/análise , Microscopia Confocal/métodos , Fotossíntese
3.
PLoS One ; 8(2): e56232, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23437098

RESUMO

Mass culture of algae for the production of biofuels is a developing technology designed to offset the depletion of fossil fuel reserves. However, large scale culture of algae in open ponds can be challenging because of incidences of infestation with algal parasites. Without knowledge of the identity of the specific parasite and how to control these pests, algal-based biofuel production will be limited. We have characterized a eukaryotic parasite of Scenedesmus dimorphus growing in outdoor ponds used for biofuel production. We demonstrated that as the genomic DNA of parasite FD01 increases, the concentration of S. dimorphus cells decreases; consequently, this is a highly destructive pathogen. Techniques for culture of the parasite and host were developed, and the endoparasite was identified as the Aphelidea, Amoeboaphelidium protococcarum. Phylogenetic analysis of ribosomal sequences revealed that parasite FD01 placed within the recently described Cryptomycota, a poorly known phylum based on two species of Rozella and environmental samples. Transmission electron microscopy demonstrated that aplanospores of the parasite produced filose pseudopodia, which contained fine fibers the diameter of actin microfilaments. Multiple lipid globules clustered and were associated with microbodies, mitochondria and a membrane cisternae, an arrangement characteristic of the microbody-lipid globule complex of chytrid zoospores. After encystment and attachment to the host cells, the parasite injected its protoplast into the host between the host cell wall and plasma membrane. At maturity the unwalled parasite occupied the entire host cell. After cleavage of the protoplast into aplanospores, a vacuole and lipids remained in the host cell. Amoeboaphelidium protococcarum isolate FD01 is characteristic of the original description of this species and is different from strain X-5 recently characterized. Our results help put a face on the Cryptomycota, revealing that the phylum is more diverse than previously understood and include some of the Aphelidea as well as Rozella species and potentially Microsporidia.


Assuntos
Biocombustíveis , Eucariotos/isolamento & purificação , Parasitos/isolamento & purificação , Lagoas/parasitologia , Scenedesmus/parasitologia , Animais , Eucariotos/classificação , Eucariotos/crescimento & desenvolvimento , Eucariotos/ultraestrutura , Estágios do Ciclo de Vida , Parasitos/citologia , Parasitos/crescimento & desenvolvimento , Parasitos/ultraestrutura , Filogenia , Scenedesmus/crescimento & desenvolvimento , Análise de Sequência de DNA
SELEÇÃO DE REFERÊNCIAS
DETALHE DA PESQUISA
...