3d morphology, ultrastructure and development of ceratomyxa puntazzi stages first insights into the mechanisms of motility and budding in the myxozoa3 d形态、超微结构和发展ceratomyxa puntazzi阶段首先洞察myxozoa能动性和出芽机制.pdfVIP

3d morphology, ultrastructure and development of ceratomyxa puntazzi stages first insights into the mechanisms of motility and budding in the myxozoa3 d形态、超微结构和发展ceratomyxa puntazzi阶段首先洞察myxozoa能动性和出芽机制.pdf

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3d morphology, ultrastructure and development of ceratomyxa puntazzi stages first insights into the mechanisms of motility and budding in the myxozoa3 d形态、超微结构和发展ceratomyxa puntazzi阶段首先洞察myxozoa能动性和出芽机制

3D Morphology, Ultrastructure and Development of Ceratomyxa puntazzi Stages: First Insights into the Mechanisms of Motility and Budding in the Myxozoa 1 2 1 1,3 Gema Alama-Bermejo *, James Emmanuel Bron , Juan Antonio Raga , Astrid Sibylle Holzer 1 Marine Zoology Unit, Zoology Deparment, Cavanilles Institute of Biodiversity and Evolutionary Biology, University of Valencia, Paterna, Valencia, Spain, 2 Parasitology group, Institute of Aquaculture, University of Stirling, Stirling, United Kingdom, 3 Laboratory of Fish Protistology, Institute of Parasitology, Biology Centre, Academy of Sciences of the Czech Republic, Ceske Budejovice, Czech Republic Abstract Free, amoeboid movement of organisms within media as well as substrate-dependent cellular crawling processes of cells and organisms require an actin cytoskeleton. This system is also involved in the cytokinetic processes of all eukaryotic cells. Myxozoan parasites are known for the disease they cause in economical important fishes. Usually, their pathology is related to rapid proliferation in the host. However, the sequences of their development are still poorly understood, especially with regard to pre-sporogonic proliferation mechanisms. The present work employs light microscopy (LM), electron microscopy (SEM, TEM) and confocal laser scanning microscopy (CLSM) in combination with specific stains (Nile Red, DAPI, Phalloidin), to study the three-dimensional morphology, motility, ultrastructure and cellular composition of Ceratomyxa puntazzi, a myxozoan inhabiting the bile of the sharpsnout seabream. Our results demonstrate the occurrence of two C. puntazzi developmental

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