Publications of Tobias S. Kaiser
All genres
Journal Article (16)
1.
Journal Article
40 (1), pp. 91 - 110 (2025)
How light at night sets the circalunar clock in the Marine midgeclunio Marinus. Journal of Biological Rhythms 2.
Journal Article
39 (4), pp. 323 - 391 (2024)
The free-running Circasemilunar period is determined by counting circadian clock cycles in the Marine midgeclunio Marinus. Journal of Biological Rhythms 3.
Journal Article
19 (6), e1010763 (2023)
Genetic analysis of a phenotypic loss in the mechanosensory entrainment of a circalunar clock. PLoS Genetics 4.
Journal Article
12, e82825 (2023)
An oligogenic architecture underlying ecological and reproductive divergence in sympatric populations. eLife 5.
Journal Article
12, e82824 (2023)
Polygenic adaptation from standing genetic variation allows rapid ecotype formation. eLife 6.
Journal Article
43 (8), 2100074 (2021)
Circalunar clocks—Old experiments for a new era. Bioessays 7.
Journal Article
64, pp. 242 - 252 (2021)
The importance of DNA barcode choice in biogeographic analyses — a case study on marine midges of the genus Clunio. Genome 8.
Journal Article
30 (5), pp. 1264 - 1280 (2021)
Timing strains of the marine insect Clunio marinus diverged and persist with gene flow. Molecular Ecology 9.
Journal Article
10, 2125 (2020)
Developmental and sexual divergence in the olfactory system of the marine insect Clunio marinus. Scientific Reports 10.
Journal Article
The genomic basis of circadian and circalunar timing adaptations in a midge. Nature (2016)
11.
Journal Article
12 (11), e1002005, pp. 1 - 24 (2014)
The first myriapod genome sequence reveals conservative arthropod gene content and genome organisation in the centipede strigamia maritima. PLoS Biology 12.
Journal Article
7 (2), e32092 (2012)
Genetic architecture of local adaptation in lunar and diurnal emergence times of the marine midge Clunio marinus (Chironomidae, Diptera). PLoS One 13.
Journal Article
12, p. 49 (2011)
Timing the tides: Genetic control of diurnal and lunar emergence times is correlated in the marine midge Clunio marinus. BMC Genetics 14.
Journal Article
26 (4), pp. 501 - 513 (2011)
Analyzing the effect of stepping stones on target patch colonisation in structured landscapes for Eurasian lynx. Landscape Ecology 15.
Journal Article
19, pp. 2845 - 2857 (2010)
Strong genetic differentiation and postglacial origin of populations in the marine midge Clunio marinus (Chironomidae, Diptera). Molecular Ecology 16.
Journal Article
9, pp. 195 - 198 (2009)
Isolation of 10 polymorphic microsatellite loci in the marine midge Clunio marinus (Chironomidae, Diptera) and their efficient characterization by heteroduplex analysis. Molecular Ecology Resources Book Chapter (2)
17.
Book Chapter
Lunar and tidal rhythms and clocks. In: Insect Chronobiology: Entomology Monographs, pp. 203 - 227 (Eds. Numata, H.; Tomioka, K.). Springer Nature Singapore, Singapore (2023)
18.
Book Chapter
Local adaptations of circalunar and circadian clocks: the case of clunio marinus. In: Annual, Lunar, and Tidal Clocks: Patterns and Mechanisms of Nature's Enigmatic Rhythms, pp. 121 - 141 (Eds. Numata, H.; Helm, B.). Springer Japan, Tokyo (2014)
Conference Paper (1)
19.
Conference Paper
62 (6), p. 375 - 375 (2019)
A comparison of COI barcodes, whole mitochondrial genomes and nuclear genomes in detecting post-glacial radiation of a midge. 8th International Barcode of Life Conference 2019, Trondheim, June 17, 2019 - June 20, 2019. Genome Thesis - PhD (3)
20.
Thesis - PhD
Unravelling the sensory and genomic underpinnings of circalunar versus circasemilunar clocks in Clunio marinus. Dissertation, Christian-Albrechts-Universität, Kiel (2025)