フォロー
KL Nikhil
タイトル
引用先
引用先
Molecular Correlates of Circadian Clocks in Fruit Fly Drosophila melanogaster Populations Exhibiting early and late Emergence Chronotypes
KL Nikhil, L Abhilash, VK Sharma
Journal of biological rhythms 31 (2), 125-141, 2016
252016
On the origin and implications of circadian timekeeping: An evolutionary perspective
KL Nikhil, VK Sharma
Biological timekeeping: Clocks, rhythms and behaviour, 81-129, 2017
192017
Circadian clock properties of fruit flies Drosophila melanogaster exhibiting early and late emergence chronotypes
KL Nikhil, KM Vaze, K Ratna, VK Sharma
Chronobiology International 33 (1), 22-38, 2016
192016
Role of Temperature in Mediating Morning and Evening Emergence Chronotypes in Fruit Flies Drosophila melanogaster
KL Nikhil, G Goirik, K Ratna, VK Sharma
Journal of Biological Rhythms 29 (6), 427-441, 2014
182014
Heritable gene expression variability and stochasticity govern clonal heterogeneity in circadian period
KL Nikhil, S Korge, A Kramer
PLoS Biology 18 (8), e3000792, 2020
152020
Life-history traits of Drosophila melanogaster populations exhibiting early and late eclosion chronotypes
KL Nikhil, K Ratna, VK Sharma
BMC Evolutionary Biology 16, 1-14, 2016
122016
Circadian rhythms: 4. Why do living organisms have them?
KM Vaze, KL Nikhil, VK Sharma
Resonance 19, 175-189, 2014
82014
Evolution of circadian rhythms in Drosophila melanogaster populations reared in constant light and dark regimes for over 330 generations
R Shindey, V Varma, KL Nikhil, VK Sharma
Chronobiology International 34 (5), 537-550, 2017
72017
Late emergence chronotypes of fruit flies Drosophila melanogaster exhibit higher accuracy of entrainment
KL Nikhil, KM Vaze, VK Sharma
Chronobiology International 32 (10), 1477-1485, 2015
72015
Evolution of robust circadian clocks in Drosophila melanogaster populations reared in constant dark for over 330 generations
R Shindey, V Varma, KL Nikhil, VK Sharma
The Science of Nature 103, 1-11, 2016
62016
Genetic architecture underlying morning and evening circadian phenotypes in fruit flies Drosophila melanogaster
KM Vaze, KL Nikhil, VK Sharma
Heredity 111 (4), 265-274, 2013
22013
Circadian rhythms in multiple behaviors depend on sex, neuropeptide signaling, and ambient light
LR Wahba, B Perez, KL Nikhil, ED Herzog, JR Jones
bioRxiv, 2022.08. 18.504454, 2022
12022
Circadian rhythms: 2. The underlying molecular mechanisms
KL Nikhil, VK Sharma
Resonance 18, 832-844, 2013
12013
A circadian behavioral analysis suite for real-time classification of daily rhythms in complex behaviors
LJ Perry, BE Perez, L Rays Wahba, KL Nikhil, AN Starnes, WC Lenzen, ...
bioRxiv, 2024.02. 23.581778, 2024
2024
Synchronization, clustering, and weak chimeras in a densely coupled transcription-based oscillator model for split circadian rhythms
JL Ocampo-Espindola, KL Nikhil, JS Li, ED Herzog, IZ Kiss
Chaos: An Interdisciplinary Journal of Nonlinear Science 33 (8), 2023
2023
Fetal daily rhythms develop during pregnancy and entrain to the maternal circadian system
K Bates, E Sapiro, JL Amme, R McCarthy, KL Nikhil, S Speck, V Vasireddy, ...
bioRxiv, 2023.06. 30.547166, 2023
2023
Evolution of circadian rhythms in Drosophila melanogaster populations reared in constant light and dark regimes for over 330 generations.
RS Radhika Shindey, VV Vishwanath Varma, KL Nikhil, VK Sharma
2017
Evolution of robust circadian clocks in Drosophila melanogaster populations reared in constant dark for over 330 generations.
RS Radhika Shindey, VV Vishwanath Varma, KL Nikhil, VK Sharma
2016
Behaviour, molecular and life-history trait analyses of drosophila melanogaster populations exhibiting early and late emergence chronotypes
KL Nikhil
Jawaharlal Nehru Centre for Advanced Scientific Research, 2016
2016
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