Circadian entrainment to red-light Zeitgebers and action spectrum for entrainment in the jewel wasp Nasonia vitripennis. 2024

Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
Groningen Institute for Evolutionary Life Sciences, University of Groningen, 9712 CP, Groningen, the Netherlands. yifan.wang@rug.nl.

Light is the most important environmental cue for the circadian system of most organisms to stay synchronized to daily environmental changes. Like many other insects, the wasp Nasonia vitripennis has trichromatic compound eye-based colour vision and is sensitive to the light spectrum ranging from UV to green. We recently described a red-sensitive, ocelli-based photoreceptor, but its contribution to circadian entrainment remains unclear. In this study, we investigated the possibility of Nasonia circadian light entrainment under long-wavelength red LED light-dark cycles and characterized the strength of red light as a potential Zeitgeber. Additionally, we measured the possibility of entrainment under various light intensities (from 5·1012 to 4·1015 photons·cm-2·s-1) and a broader range of wavelengths (455-656 nm) to construct corresponding action spectra for characterizing all circadian photoreceptors involved in photic entrainment. We also conducted electroretinogram (ERG) recordings for each wavelength in the compound eyes. Our findings demonstrate that Nasonia can entrain under red light dark cycles, and the sensory pathway underlying the red-light Zeitgeber response may reside in the ocelli. Combined with findings from previous research, we pose that blue- and green-sensitive rhodopsin photoreceptor cells function as the major circadian photoreceptors in both circadian entrainment by light-dark cycles and circadian phase shifts by light pulses, whereas the red-sensitive photoreceptor cell requires higher light intensity for its role in circadian entrainment by light-dark cycles.

UI MeSH Term Description Entries
D008027 Light That portion of the electromagnetic spectrum in the visible, ultraviolet, and infrared range. Light, Visible,Photoradiation,Radiation, Visible,Visible Radiation,Photoradiations,Radiations, Visible,Visible Light,Visible Radiations
D010775 Photic Stimulation Investigative technique commonly used during ELECTROENCEPHALOGRAPHY in which a series of bright light flashes or visual patterns are used to elicit brain activity. Stimulation, Photic,Visual Stimulation,Photic Stimulations,Stimulation, Visual,Stimulations, Photic,Stimulations, Visual,Visual Stimulations
D002940 Circadian Rhythm The regular recurrence, in cycles of about 24 hours, of biological processes or activities, such as sensitivity to drugs or environmental and physiological stimuli. Diurnal Rhythm,Nyctohemeral Rhythm,Twenty-Four Hour Rhythm,Nycthemeral Rhythm,Circadian Rhythms,Diurnal Rhythms,Nycthemeral Rhythms,Nyctohemeral Rhythms,Rhythm, Circadian,Rhythm, Diurnal,Rhythm, Nycthemeral,Rhythm, Nyctohemeral,Rhythm, Twenty-Four Hour,Rhythms, Circadian,Rhythms, Diurnal,Rhythms, Nycthemeral,Rhythms, Nyctohemeral,Rhythms, Twenty-Four Hour,Twenty Four Hour Rhythm,Twenty-Four Hour Rhythms
D004596 Electroretinography Recording of electric potentials in the retina after stimulation by light. Electroretinographies
D005260 Female Females
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014863 Wasps Any of numerous winged hymenopterous insects of social as well as solitary habits and having formidable stings. Hornets,Yellow Jackets,Hornet,Jacket, Yellow,Jackets, Yellow,Wasp,Yellow Jacket
D017440 Photoperiod The time period of daily exposure that an organism receives from daylight or artificial light. It is believed that photoperiodic responses may affect the control of energy balance and thermoregulation. Dark-Light Cycle,Daylight Cycle,Light Cycle,Light-Dark Cycle,Cycle, Dark-Light,Cycle, Daylight,Cycle, Light,Cycle, Light-Dark,Cycles, Dark-Light,Cycles, Daylight,Cycles, Light,Cycles, Light-Dark,Dark Light Cycle,Dark-Light Cycles,Daylight Cycles,Light Cycles,Light Dark Cycle,Light-Dark Cycles,Photoperiods
D054910 Compound Eye, Arthropod Light sensory organ in ARTHROPODS consisting of a large number of ommatidia, each functioning as an independent photoreceptor unit. Arthropod Compound Eye,Arthropod Compound Eyes,Compound Eyes, Arthropod
D017956 Photoreceptor Cells, Invertebrate Specialized cells in the invertebrates that detect and transduce light. They are predominantly rhabdomeric with an array of photosensitive microvilli. Illumination depolarizes invertebrate photoreceptors by stimulating Na+ influx across the plasma membrane. Invertebrate Photoreceptors,Photoreceptors, Invertebrate,Invertebrate Photoreceptor Cells,Cell, Invertebrate Photoreceptor,Cells, Invertebrate Photoreceptor,Invertebrate Photoreceptor,Invertebrate Photoreceptor Cell,Photoreceptor Cell, Invertebrate,Photoreceptor, Invertebrate

Related Publications

Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
February 2023, Proceedings. Biological sciences,
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
August 2019, Scientific reports,
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
May 2024, G3 (Bethesda, Md.),
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
August 2016, BMC genomics,
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
February 2010, Insect molecular biology,
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
March 2014, G3 (Bethesda, Md.),
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
April 2018, Journal of insect physiology,
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
September 2023, Biology,
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
April 2017, Scientific reports,
Yifan Wang, and Lijing Jin, and Gregor Belušič, and Leo W Beukeboom, and Bregje Wertheim, and Roelof A Hut
September 2023, Heredity,
Copied contents to your clipboard!