Encyclopedia of Life Sciences 2021
DOI: 10.1002/9780470015902.a0029260
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Algal Ciliary Motility

Abstract: The microtubule‐based cilium (also known as a flagellum) extends from the surface of most eukaryotic cells. This long, slender organelle is biochemically complex and is conserved in many eukaryotic organisms. The unicellular alga, Chlamydomonas reinhardtii, serves as a tractable organism for studying the assembly and function of cilia. Cilia provide locomotion and environmental sensing. To produce motility, specialised molecular motors called outer and inner dynein arms generate for… Show more

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Cited by 2 publications
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“…The corresponding motility ratio of microrobots decreased from 92.5 to 52.8% after 2 hours, which was also comparable to the change for the bare algae group. The alterations in speed and reduced motility are attributed to the effect of the higher temperature on the synthesis and function of the dynein protein, which, in turn, affects the beating of flagella ( 53 ). To further evaluate the impact of the NP(DOX) conjugation on the algae motility, the mean speed distribution of the algae-NP(DOX)-robots after 2 hours of operation at 37°C was also analyzed ( Fig.…”
Section: Resultsmentioning
confidence: 99%
“…The corresponding motility ratio of microrobots decreased from 92.5 to 52.8% after 2 hours, which was also comparable to the change for the bare algae group. The alterations in speed and reduced motility are attributed to the effect of the higher temperature on the synthesis and function of the dynein protein, which, in turn, affects the beating of flagella ( 53 ). To further evaluate the impact of the NP(DOX) conjugation on the algae motility, the mean speed distribution of the algae-NP(DOX)-robots after 2 hours of operation at 37°C was also analyzed ( Fig.…”
Section: Resultsmentioning
confidence: 99%