Roles of Adenylate Cyclases in Ciliary Responses of Paramecium to Mechanical Stimulation
Author:
Affiliation:
1. Faculty of Science Yamaguchi University Yamaguchi 753‐8512 Japan
2. Institute of Neuroscience Tokushima Bunri University Kagawa 769‐2193 Japan
3. School of Science Education Nara University of Education Nara 630‐8528 Japan
Funder
Ministry of Health, Labour and Welfare
Publisher
Wiley
Subject
Microbiology
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1111/jeu.12800
Reference22 articles.
1. ParameciumDB: a community resource that integrates the Paramecium tetraurelia genome sequence with genetic data
2. Immunocytochemistry of Paramecium Cytoskeletal Structures
3. Regulation of ciliary motility by membrane potential inParamecium: A role for cyclic AMP
4. Bioelectric Control of Ciliary Activity
5. RNA interference by feeding in Paramecium
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1. Mechanoresponses mediated by the TRP11 channel in cilia of Chlamydomonas reinhardtii;iScience;2023-10
2. RNA interference reveals the escape response mechanism of <i>Paramecium</i> to mechanical stimulation;Biophysics and Physicobiology;2023
3. Regulation Mechanism of Escape Response to Mechanical Stimulation in Paramecium;Seibutsu Butsuri;2022
4. A cytoplasmic protein kinase in Chlamydomonas couples engagement of ciliary receptors to rapid cellular responses;2021-09-04
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