Results 61 to 70 of about 1,330 (160)

Epibionts and parasites on crustaceans (Copepoda, Cladocera, Cirripedia larvae) inhabiting the Gulf of Gdańsk (Baltic Sea) in very large numbers

open access: yesOceanologia, 2014
The occurrence of epizoic filter-feeding Protozoa (Vorticella and Zoothamnium) and parasitic Protozoa (Ellobiopsis) on Calanoida was noticed in the Gulf of Gdańsk in 1998, 1999 and 2006.
Luiza Bielecka, Rafał Boehnke
doaj   +1 more source

Freshwater Discharge and Salinity Drive Taxonomic and Functional Turnover of Microbial Communities in a Turbid Macrotidal Estuary

open access: yesEnvironmental Microbiology Reports, Volume 17, Issue 4, August 2025.
Seasonal shifts in microbial community composition in the Schelde estuary are controlled by the interaction between freshwater discharge and marine intrusion. However, these recurrent annual patterns can be disrupted by extreme precipitation events.
Luz Amadei Martínez   +10 more
wiley   +1 more source

Vorticella hamata Ehrenberg 1831

open access: yes, 2018
Vorticella hamata Ehrenberg, 1831 Known Distribution. China. Hosts. Cyclops sp., Penaeus chinensis (cited as Penaeus orientalis). References. Song 1991a; Morado & Small 1995.Published as part of Mayén-Estrada, Rosaura & Pinto Utz, Laura R., 2018,
Mayén-Estrada, Rosaura   +1 more
core   +1 more source

18S rRNA Metagenomic Analysis of Nodular Gill Disease in Swiss Rainbow Trout (Oncorhynchus mykiss)

open access: yesJournal of Fish Diseases, Volume 48, Issue 3, March 2025.
ABSTRACT Nodular gill disease (NGD) is a serious proliferative gill condition that affects farmed salmonids, particularly in Europe. While the cause of NGD remains unknown (and maybe multifactorial), various amoebae are often isolated from the gills of affected fish and can in some cases be seen associated with lesions by histopathology.
James W. Wynne   +7 more
wiley   +1 more source

Vorticella vestita Stokes 1883

open access: yes, 2018
Vorticella vestita Stokes, 1883 Known Distribution. Germany. Hosts. Asellus (Asellus) aquaticus (cited as Asellus aquaticus). References. Schödel 1987.Published as part of Mayén-Estrada, Rosaura & Pinto Utz, Laura R., 2018, A checklist of ...
Mayén-Estrada, Rosaura   +1 more
core   +1 more source

Active Displacement of a Unique Diatom–Ciliate Symbiotic Association

open access: yesFluids
Adaptive movement in response to individual interactions represents a fundamental evolutionary solution found by both unicellular organisms and metazoans to avoid predators, search for resources or conspecifics for mating, and engage in other ...
Yonara Garcia   +7 more
doaj   +1 more source

A Reassessment of Phylogenetic Relationships in Class Oligohymenophorea (Protista, Ciliophora) Based on Updated Multigene Data

open access: yesEcology and Evolution, Volume 15, Issue 2, February 2025.
We report 97 new sequences, including SSU‐rRNA, ITS1‐5.8S‐ITS2 rRNA, LSU‐rRNA, mitochondrial cytochrome oxidase c subunit I, and mitochondrial small subunit ribosomal RNA genes of 30 oligohymenophorean populations. A comprehensive analysis of class Oligohymenophorea is conducted, encompassing 250 populations.
Bailin Li   +7 more
wiley   +1 more source

FIRST RECORD OF SOME PERITRICHS CILIATES FOR SAN MIGUEL DEL MONTE POND (BUENOS AIRES, ARGENTINA) PRIMER REGISTRO DE ALGUNOS CILIADOS PERITRICOS DE LA LAGUNA DE SAN MIGUEL DEL MONTE (BUENOS AIRES, ARGENTINA)

open access: yesGayana, 2001
Peritrichs attached to submerged macrophytes, filamentous chlorophytes and debries have been found in San Miguel del Monte pond (Buenos Aires province, Argentina) during the period March 1998- March 1999.
M. Zaleski, C. Claps
doaj  

PRIMER REGISTRO DE LA DIATOMEA EPIBIONTE PSEUDOHIMANTIDIUM PACIFICUM Y DE OTRAS ASOCIACIONES SIMBIÓTICAS EN EL GOLFO DE CALIFORNIA

open access: yesActa Botanica Mexicana, 2009
En México existe poca información sobre las asociaciones simbióticas entre diatomeas y ciliados, así como con otras especies de microalgas y particularmente con crustáceos planctónicos marinos.
Ismael G\u00E1rate-Liz\u00E1rraga   +1 more
doaj  

High‐speed escape jumps in haptophytes: Mechanism and triggering fluid signal

open access: yesLimnology and Oceanography, Volume 69, Issue 12, Page 2846-2858, December 2024.
Abstract Some planktonic organisms can remotely sense and evade predators by powerful escape jumps. Remote perception typically happens through the fluid disturbance generated by the approaching predator or its feeding current. In copepods and ciliates with mechanosensors, the perception and jump mechanisms are well understood. But how some flagellates
Federica Miano   +4 more
wiley   +1 more source

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