Early Pheromone Experience Modifies a Synaptic Activity to Influence Adult Pheromone Responses of C. elegans

[1]  P. Sengupta,et al.  Developmental programming modulates olfactory behavior in C. elegans via endogenous RNAi pathways , 2016, eLife.

[2]  M. Ikawa,et al.  GPI-AP release in cellular, developmental, and reproductive biology , 2016, Journal of Lipid Research.

[3]  Navin Pokala,et al.  Distinct Circuits for the Formation and Retrieval of an Imprinted Olfactory Memory , 2016, Cell.

[4]  Sadik Esener,et al.  Sonogenetics is a non-invasive approach to activating neurons in Caenorhabditis elegans , 2015, Nature Communications.

[5]  KyeongJin Kang,et al.  The Evolutionarily Conserved LIM Homeodomain Protein LIM-4/LHX6 Specifies the Terminal Identity of a Cholinergic and Peptidergic C. elegans Sensory/Inter/Motor Neuron-Type , 2015, PLoS genetics.

[6]  N. Lau,et al.  RNAi pathways contribute to developmental history-dependent phenotypic plasticity in C. elegans. , 2013, RNA.

[7]  F. Schroeder,et al.  2D NMR-based metabolomics uncovers interactions between conserved biochemical pathways in the model organism Caenorhabditis elegans. , 2013, ACS chemical biology.

[8]  Evan Z. Macosko,et al.  Neuromodulatory State and Sex Specify Alternative Behaviors through Antagonistic Synaptic Pathways in C. elegans , 2012, Neuron.

[9]  Zhaoyang Feng,et al.  The Neural Circuits and Synaptic Mechanisms Underlying Motor Initiation in C. elegans , 2011, Cell.

[10]  M. Levine,et al.  Coordinated regulation of cholinergic motor neuron traits through a conserved terminal selector gene , 2011, Nature Neuroscience.

[11]  Evan L Ardiel,et al.  An elegant mind: learning and memory in Caenorhabditis elegans. , 2010, Learning & memory.

[12]  C. Nusbaum,et al.  A Cellular Memory of Developmental History Generates Phenotypic Diversity in C. elegans , 2010, Current Biology.

[13]  Sharad Ramanathan,et al.  Optical interrogation of neural circuits in Caenorhabditis elegans , 2009, Nature Methods.

[14]  Kazushige Touhara,et al.  Two Chemoreceptors Mediate Developmental Effects of Dauer Pheromone in C. elegans , 2009, Science.

[15]  Sreekanth H. Chalasani,et al.  Imaging neural activity in worms, flies and mice with improved GCaMP calcium indicators , 2009, Nature Methods.

[16]  A. Edison Caenorhabditis elegans pheromones regulate multiple complex behaviors , 2009, Current Opinion in Neurobiology.

[17]  Evan Z. Macosko,et al.  A Hub-and-Spoke Circuit Drives Pheromone Attraction and Social Behavior in C. elegans , 2009, Nature.

[18]  P. Greengard,et al.  A role for LYNX2 in anxiety-related behavior , 2009, Proceedings of the National Academy of Sciences.

[19]  P. Sternberg,et al.  Evolution of a polymodal sensory response network , 2008, BMC Biology.

[20]  Paul W. Sternberg,et al.  A blend of small molecules regulates both mating and development in Caenorhabditis elegans , 2008, Nature.

[21]  Harald Hutter,et al.  CASY-1, an ortholog of calsyntenins/alcadeins, is essential for learning in Caenorhabditis elegans , 2008, Proceedings of the National Academy of Sciences.

[22]  Cori Bargmann,et al.  Microfluidics for in vivo imaging of neuronal and behavioral activity in Caenorhabditis elegans , 2007, Nature Methods.

[23]  R. Butcher,et al.  Small-molecule pheromones that control dauer development in Caenorhabditis elegans. , 2007, Nature chemical biology.

[24]  W. Schafer,et al.  Visualization of integral and peripheral cell surface proteins in live Caenorhabditis elegans , 2006, Journal of Neuroscience Methods.

[25]  O. Hobert,et al.  An Interneuronal Chemoreceptor Required for Olfactory Imprinting in C. elegans , 2005, Science.

[26]  M. de Bono,et al.  Neuronal substrates of complex behaviors in C. elegans. , 2005, Annual review of neuroscience.

[27]  Cori Bargmann,et al.  A circuit for navigation in Caenorhabditis elegans , 2005 .

[28]  Weontae Lee,et al.  Chemical structure and biological activity of the Caenorhabditis elegans dauer-inducing pheromone , 2005, Nature.

[29]  T. Hensch Critical period regulation. , 2004, Annual review of neuroscience.

[30]  Cori Bargmann,et al.  The Cyclic GMP-Dependent Protein Kinase EGL-4 Regulates Olfactory Adaptation in C. elegans , 2002, Neuron.

[31]  Mario de Bono,et al.  Antagonistic pathways in neurons exposed to body fluid regulate social feeding in Caenorhabditis elegans , 2002, Nature.

[32]  Cori Bargmann,et al.  C. elegans Responds to Chemical Repellents by Integrating Sensory Inputs from the Head and the Tail , 2002, Current Biology.

[33]  Cori Bargmann,et al.  Alternative olfactory neuron fates are specified by the LIM homeobox gene lim-4. , 1999, Genes & development.

[34]  A. Sali,et al.  lynx1, an Endogenous Toxin-like Modulator of Nicotinic Acetylcholine Receptors in the Mammalian CNS , 1999, Neuron.

[35]  W. Moody,et al.  Evidence for a peripheral olfactory memory in imprinted salmon. , 1994, Proceedings of the National Academy of Sciences of the United States of America.

[36]  Cori Bargmann,et al.  Odorant-selective genes and neurons mediate olfaction in C. elegans , 1993, Cell.

[37]  N. Munakata [Genetics of Caenorhabditis elegans]. , 1989, Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme.

[38]  S. Brenner,et al.  The structure of the nervous system of the nematode Caenorhabditis elegans. , 1986, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[39]  D. Riddle,et al.  A pheromone influences larval development in the nematode Caenorhabditis elegans. , 1982, Science.

[40]  F. A. Beach,et al.  Effects of early experience upon the behavior of animals. , 1954, Psychological bulletin.

[41]  K. Lorenz,et al.  Der Kumpan in der Umwelt des Vogels , 1935, Journal für Ornithologie.

[42]  K. Lorenz,et al.  Der Kumpan in der Umwelt des Vogels , 1935, Journal für Ornithologie.

[43]  Evan Z. Macosko,et al.  A huband-spoke circuit drives pheromone attraction and social behaviour in C . elegans , 2009 .

[44]  C. Rankin,et al.  Investigations of learning and memory in Caenorhabditis elegans. , 2006, International review of neurobiology.

[45]  M. Labouesse [Caenorhabditis elegans]. , 2003, Medecine sciences : M/S.

[46]  Cori Bargmann,et al.  The Caenorhabditis elegans odr-2 gene encodes a novel Ly-6-related protein required for olfaction. , 2001, Genetics.

[47]  D. Wilson,et al.  Neurobiology of associative learning in the neonate: early olfactory learning. , 1994, Behavioral and neural biology.