Repeated evolution of circadian clock dysregulation in cavefish populations

被引:27
|
作者
Mack, Katya L. [1 ]
Jaggard, James B. [2 ,3 ]
Persons, Jenna L. [4 ]
Roback, Emma Y. [5 ]
Passow, Courtney N. [5 ]
Stanhope, Bethany A. [2 ]
Ferrufino, Estephany [2 ,6 ]
Tsuchiya, Dai [4 ]
Smith, Sarah E. [4 ]
Slaughter, Brian D. [4 ]
Kowalko, Johanna [6 ]
Rohner, Nicolas [4 ,7 ]
Keene, Alex C. [2 ]
McGaugh, Suzanne E. [5 ]
机构
[1] Stanford Univ, Biol, Stanford, CA 94305 USA
[2] Florida Atlantic Univ, Dept Biol Sci, Jupiter, FL USA
[3] Stanford Univ, Dept Psychiat & Behav Sci, Ctr Sleep Sci & Med, Stanford, CA 94305 USA
[4] Stowers Inst Med Res, Kansas City, MO USA
[5] Univ Minnesota, Ecol Evolut & Behav, St Paul, MN 55108 USA
[6] Florida Atlantic Univ, Wilkes Honors Coll, Jupiter, FL USA
[7] Univ Kansas, Med Ctr, Dept Mol & Integrat Physiol, Kansas City, KS 66103 USA
来源
PLOS GENETICS | 2021年 / 17卷 / 07期
关键词
ADAPTIVE SIGNIFICANCE; GENE-EXPRESSION; SLEEP LOSS; ZEBRAFISH; PROTEIN; CONVERGENCE; MELATONIN; REVEALS; PERIOD; N-ACETYLTRANSFERASE-2;
D O I
10.1371/journal.pgen.1009642
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Author summary Biological rhythms are molecular, physiological, and behavioral changes that follow a daily cycle and allow for animals to coordinate critical biological processes with their external environment. While these clocks are ubiquitous from unicellular life through humans, little is known about how they evolve in the absence of daily cycling within an environment. In this study, we sought to understand the evolutionary response of the biological clock when organisms become established in an environment that lacks daily fluctuations in light, temperature, and other environmental factors. Astyanax mexicanus have repeatedly moved from surface rivers into caves where they live in complete darkness. We find that multiple populations of cavefish have disrupted biological clocks compared to their surface relatives, but that these clocks are disrupted via different molecular mechanisms in different populations. Our results suggest that changes to the biological clock in these populations may also affect aspects of cavefish behavior, like the sleep-wake cycle. This study demonstrates that moving into an environment without daily cycles has led to predictable disruptions to the biological clock among cavefish populations, but that the clock itself can be broken multiple ways. Circadian rhythms are nearly ubiquitous throughout nature, suggesting they are critical for survival in diverse environments. Organisms inhabiting largely arrhythmic environments, such as caves, offer a unique opportunity to study the evolution of circadian rhythms in response to changing ecological pressures. Populations of the Mexican tetra, Astyanax mexicanus, have repeatedly invaded caves from surface rivers, where individuals must contend with perpetual darkness, reduced food availability, and limited fluctuations in daily environmental cues. To investigate the molecular basis for evolved changes in circadian rhythms, we investigated rhythmic transcription across multiple independently-evolved cavefish populations. Our findings reveal that evolution in a cave environment has led to the repeated disruption of the endogenous biological clock, and its entrainment by light. The circadian transcriptome shows widespread reductions and losses of rhythmic transcription and changes to the timing of the activation/repression of core-transcriptional clock. In addition to dysregulation of the core clock, we find that rhythmic transcription of the melatonin regulator aanat2 and melatonin rhythms are disrupted in cavefish under darkness. Mutants of aanat2 and core clock gene rorca disrupt diurnal regulation of sleep in A. mexicanus, phenocopying circadian modulation of sleep and activity phenotypes of cave populations. Together, these findings reveal multiple independent mechanisms for loss of circadian rhythms in cavefish populations and provide a platform for studying how evolved changes in the biological clock can contribute to variation in sleep and circadian behavior.
引用
收藏
页数:32
相关论文
共 50 条
  • [21] Circadian Rhythm Dysregulation and Leukemia Development: The Role of Clock Genes as Promising Biomarkers
    Aguiar Sanford, Ana Beatriz
    da Cunha, Leidivan Sousa
    Machado, Caio Bezerra
    Cunha de Pinho Pessoa, Flavia Melo
    dos Santos Silva, Abigail Nayara
    Ribeiro, Rodrigo Monteiro
    Moreira, Fabiano Cordeiro
    de Moraes Filho, Manoel Odorico
    Amaral de Moraes, Maria Elisabete
    Botelho de Souza, Lucas Eduardo
    Khayat, Andre Salim
    Moreira-Nunes, Caroline Aquino
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (15)
  • [22] Circadian dysregulation of clock genes: clues to rapid treatments in major depressive disorder
    Bunney, B. G.
    Li, J. Z.
    Walsh, D. M.
    Stein, R.
    Vawter, M. P.
    Cartagena, P.
    Barchas, J. D.
    Schatzberg, A. F.
    Myers, R. M.
    Watson, S. J.
    Akil, H.
    Bunney, W. E.
    MOLECULAR PSYCHIATRY, 2015, 20 (01) : 48 - 55
  • [23] Dysregulation of core circadian genes, BMAL1 and CLOCK, in colorectal cancer
    Sahar, Namood-e
    Qadir, Javeria
    Riaz, Syeda Kiran
    Sultan, Aimen
    Arif, Aiza
    Malik, Muhammad Faraz Arshad
    BIOLOGICAL RHYTHM RESEARCH, 2022, 53 (09) : 1400 - 1413
  • [24] Sleep disturbance and dysregulation of circadian clock machinery in sudden sensorineural hearing loss
    Lee, Sang-Yeon
    Choe, Goun
    Lee, Ho Sun
    Song, Yong Jae
    Jang, Jeong Hun
    Park, Min-Hyun
    ACTA OTO-LARYNGOLOGICA, 2023, 143 (08) : 692 - 698
  • [25] Dysregulation of Circadian Clock Genes as Significant Clinic Factor in the Tumorigenesis of Hepatocellular Carcinoma
    Liang, Youfang
    Wang, Shaoxiang
    Huang, Xin
    Chai, Ruihuan
    Tang, Qian
    Yang, Rong
    Huang, Xiaoqing
    Wang, Xiao
    Zheng, Kai
    COMPUTATIONAL AND MATHEMATICAL METHODS IN MEDICINE, 2021, 2021
  • [26] Melatonin attenuates dysregulation of the circadian clock pathway in liver fibrosis and progression to hepatocarcinoma
    Isabel Sanchez, Diana
    Gonzalez Fernandez, Barbara
    Crespo, Irene
    San Miguel de Vega, Beatriz
    Jorquera, Francisco
    Gonzalez-Gallego, Javier
    Tunon Gonzalez, Maria Jesus
    JOURNAL OF HEPATOLOGY, 2019, 70 (01) : E806 - E807
  • [27] Sleep disturbance and dysregulation of circadian clock machinery in sudden sensorineural hearing loss
    Lee, Sang-Yeon
    Choe, Goun
    Lee, Ho Sun
    Song, Yong Jae
    Jang, Jeong Hun
    Park, Min-Hyun
    ACTA OTO-LARYNGOLOGICA, 2023,
  • [28] Circadian clock dysregulation: a potential mechanism of depression in obstructive sleep apnea patients
    Agata Gabryelska
    Szymon Turkiewicz
    Piotr Kaczmarski
    Adrian Gajewski
    Piotr Białasiewicz
    Dominik Strzelecki
    Maciej Chałubiński
    Marcin Sochal
    Translational Psychiatry, 14 (1)
  • [29] Evolution of the Circadian Clock in a Whole-Genome Context
    Hofmann, Nancy R.
    PLANT CELL, 2012, 24 (06): : 2239 - 2239
  • [30] Molecular evolution and population genetics of circadian clock genes
    Tauber, E
    Kyriacou, CP
    CIRCADIAN RHYTHMS, 2005, 393 : 797 - 817