Literature DB >> 21641546

The circadian clock interacts with metabolic physiology to influence reproductive fitness.

Kanyan Xu1, Justin R DiAngelo, Michael E Hughes, John B Hogenesch, Amita Sehgal.   

Abstract

Circadian rhythms are regulated by a synchronized system of central and peripheral clocks. Here, we show that a clock in the Drosophila fat body drives rhythmic expression of genes involved in metabolism, detoxification, the immune response, and steroid hormone regulation. Some of these genes cycle even when the fat body clock is disrupted, indicating that they are regulated by exogenous factors. Food is an important stimulus, as limiting food availability to a 6 hr interval each day drives rhythmic expression of genes in the fat body. Restricting food to a time of day when consumption is typically low desynchronizes internal rhythms because it alters the phase of rhythmic gene expression in the fat body without affecting the brain clock. Flies maintained on this paradigm produce fewer eggs than those restricted to food at the normal time. These data suggest that desynchrony of endogenous rhythms, caused by aberrant feeding patterns, affects reproductive fitness.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21641546      PMCID: PMC3152999          DOI: 10.1016/j.cmet.2011.05.001

Source DB:  PubMed          Journal:  Cell Metab        ISSN: 1550-4131            Impact factor:   27.287


  46 in total

1.  Genome-wide expression analysis in Drosophila reveals genes controlling circadian behavior.

Authors:  M Fernanda Ceriani; John B Hogenesch; Marcelo Yanovsky; Satchidananda Panda; Martin Straume; Steve A Kay
Journal:  J Neurosci       Date:  2002-11-01       Impact factor: 6.167

2.  Circadian regulation in the ability of Drosophila to combat pathogenic infections.

Authors:  Jung-Eun Lee; Isaac Edery
Journal:  Curr Biol       Date:  2008-02-12       Impact factor: 10.834

3.  Effects of circadian mutations and LD periodicity on the life span of Drosophila melanogaster.

Authors:  A Klarsfeld; F Rouyer
Journal:  J Biol Rhythms       Date:  1998-12       Impact factor: 3.182

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Authors:  A Claridge-Chang; H Wijnen; F Naef; C Boothroyd; N Rajewsky; M W Young
Journal:  Neuron       Date:  2001-11-20       Impact factor: 17.173

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6.  The Drosophila takeout gene is regulated by the somatic sex-determination pathway and affects male courtship behavior.

Authors:  Brigitte Dauwalder; Susan Tsujimoto; Jason Moss; William Mattox
Journal:  Genes Dev       Date:  2002-11-15       Impact factor: 11.361

7.  Time of feeding and the intrinsic circadian clock drive rhythms in hepatic gene expression.

Authors:  Christopher Vollmers; Shubhroz Gill; Luciano DiTacchio; Sandhya R Pulivarthy; Hiep D Le; Satchidananda Panda
Journal:  Proc Natl Acad Sci U S A       Date:  2009-11-25       Impact factor: 11.205

Review 8.  The immune response of Drosophila melanogaster.

Authors:  Vincent Leclerc; Jean-Marc Reichhart
Journal:  Immunol Rev       Date:  2004-04       Impact factor: 12.988

9.  Circadian timing of food intake contributes to weight gain.

Authors:  Deanna M Arble; Joseph Bass; Aaron D Laposky; Martha H Vitaterna; Fred W Turek
Journal:  Obesity (Silver Spring)       Date:  2009-09-03       Impact factor: 5.002

10.  Influence of the period-dependent circadian clock on diurnal, circadian, and aperiodic gene expression in Drosophila melanogaster.

Authors:  Yiing Lin; Mei Han; Brian Shimada; Lin Wang; Therese M Gibler; Aloka Amarakone; Tarif A Awad; Gary D Stormo; Russell N Van Gelder; Paul H Taghert
Journal:  Proc Natl Acad Sci U S A       Date:  2002-06-27       Impact factor: 11.205

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  71 in total

Review 1.  Regulation of metabolism: the circadian clock dictates the time.

Authors:  Saurabh Sahar; Paolo Sassone-Corsi
Journal:  Trends Endocrinol Metab       Date:  2011-12-12       Impact factor: 12.015

Review 2.  Timing of meals: when is as critical as what and how much.

Authors:  Peng Jiang; Fred W Turek
Journal:  Am J Physiol Endocrinol Metab       Date:  2017-01-31       Impact factor: 4.310

3.  Ageing and Circadian rhythms.

Authors:  Jadwiga M Giebultowicz; Dani M Long
Journal:  Curr Opin Insect Sci       Date:  2015-02-01       Impact factor: 5.186

4.  How consistent are the transcriptome changes associated with cold acclimation in two species of the Drosophila virilis group?

Authors:  D J Parker; L Vesala; M G Ritchie; A Laiho; A Hoikkala; M Kankare
Journal:  Heredity (Edinb)       Date:  2015-02-11       Impact factor: 3.821

Review 5.  Cardinal Epigenetic Role of non-coding Regulatory RNAs in Circadian Rhythm.

Authors:  Utpal Bhadra; Pradipta Patra; Manika Pal-Bhadra
Journal:  Mol Neurobiol       Date:  2017-05-17       Impact factor: 5.590

Review 6.  Circadian clocks and energy metabolism.

Authors:  Gencer Sancar; Michael Brunner
Journal:  Cell Mol Life Sci       Date:  2014-02-12       Impact factor: 9.261

Review 7.  Genetic dissection of sleep-metabolism interactions in the fruit fly.

Authors:  Maria E Yurgel; Pavel Masek; Justin DiAngelo; Alex C Keene
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2014-09-19       Impact factor: 1.836

Review 8.  Metabolic compensation and circadian resilience in prokaryotic cyanobacteria.

Authors:  Carl Hirschie Johnson; Martin Egli
Journal:  Annu Rev Biochem       Date:  2014       Impact factor: 23.643

9.  Time-restricted feeding attenuates age-related cardiac decline in Drosophila.

Authors:  Shubhroz Gill; Hiep D Le; Girish C Melkani; Satchidananda Panda
Journal:  Science       Date:  2015-03-13       Impact factor: 47.728

10.  Modulation of Circadian Gene Expression and Metabolic Compensation by the RCO-1 Corepressor of Neurospora crassa.

Authors:  Consuelo Olivares-Yañez; Jillian Emerson; Arminja Kettenbach; Jennifer J Loros; Jay C Dunlap; Luis F Larrondo
Journal:  Genetics       Date:  2016-07-22       Impact factor: 4.562

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