{"id":18,"date":"2017-02-15T06:36:03","date_gmt":"2017-02-15T06:36:03","guid":{"rendered":"https:\/\/tauber-lab.haifa.ac.il\/?page_id=18"},"modified":"2026-03-07T22:03:20","modified_gmt":"2026-03-07T20:03:20","slug":"publications","status":"publish","type":"page","link":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-page\" data-elementor-id=\"18\" class=\"elementor elementor-18\">\n\t\t\t\t<div class=\"elementor-element elementor-element-e362bdd e-flex e-con-boxed e-con e-parent\" data-id=\"e362bdd\" data-element_type=\"container\" data-e-type=\"container\">\n\t\t\t\t\t<div class=\"e-con-inner\">\n\t\t\t\t<div class=\"elementor-element elementor-element-7f4fbb59 elementor-widget elementor-widget-text-editor\" data-id=\"7f4fbb59\" data-element_type=\"widget\" data-e-type=\"widget\" data-widget_type=\"text-editor.default\">\n\t\t\t\t\t\t\t\t\t<p dir=\"LTR\">Creasey LD, Petrov PB, Tauber E. 2026. The Evolutionary Flexibility of the <em>Drosophila<\/em> Circadian Clock: Network Constraints or Adaptive Freedom? <em>Genome Biology and Evolution<\/em>.\u00a0 evag061. <a href=\"https:\/\/doi.org\/10.1093\/gbe\/evag061\">Link<\/a><\/p><p dir=\"LTR\" style=\"direction: ltr; unicode-bidi: embed;\">Durmaz, E., Kerdaffrec, E., Harney, E., Paulo, TF., Veselinovic, MS, Tanaskovic, M.\u00a0 (and 96 others, including Tauber E.). 2025. Continent-wide differentiation of fitness traits and patterns of climate adaptation among European populations of\u00a0<i>Drosophila melanogaster<\/i>,\u00a0<i>Evolution Letters<\/i>, qraf014,\u00a0<a style=\"background-color: #f5f5f5; color: #23527c; outline: 0px;\" href=\"https:\/\/doi.org\/10.1093\/evlett\/qraf014\">Link<\/a><\/p><p>Tauber, E. 2024. Uncovering the circadian transcriptome of <em>Nasonia vitripennis<\/em>: insights into a non-canonical insect model. <em>Proceedings of the Royal Society B<\/em>.\u00a0 29120241848 <a href=\"http:\/\/doi.org\/10.1098\/rspb.2024.1848\">Link<\/a><\/p><p>Creasey, L.D., Tauber, E. 2024. Interconnected Codons: Unravelling the Epigenetic Significance of Flanking Sequences in CpG Dyads. <i>Journal of Molecular Evolution<\/i>.\u00a0 <a href=\"https:\/\/doi.org\/10.1007\/s00239-024-10172-1\">Link<\/a><\/p><p>Levy K, Barnea A, Tauber E, Ayali A. 2024. Crickets in the spotlight: exploring the impact of light on circadian behavior. <em>Journal of Comparative Physiology A<\/em> . <a href=\"https:\/\/link.springer.com\/article\/10.1007\/s00359-023-01686-y\">Link<\/a><\/p><p>Fishman, B., Tauber, E. 2023. Epigenetics and seasonal timing in animals: a concise review. <i>Journal of Comparative Physiology A<\/i> . <a href=\"https:\/\/doi.org\/10.1007\/s00359-023-01673-3\">Link<\/a><\/p><p>Khatib L, Subasi BS, Fishman B, Kapun M, Tauber E. 2023. Unveiling Subtle Geographical Clines: Phenotypic Effects and Dynamics of Circadian Clock Gene Polymorphisms. <em>Biology<\/em>. 12(6):858. <a href=\"https:\/\/doi.org\/10.3390\/biology12060858\">Link<\/a><\/p><p>Levy K, Fishman B, Barnea A, Ayali A, Tauber E. 2022. Transcriptional Response of Circadian Clock Genes to an \u2018Artificial Light at Night\u2019 Pulse in the Cricket <i>Gryllus bimaculatus<\/i>.\u00a0<em>International Journal of Molecular Sciences<\/em>.\u00a0 23(19):11358. <a href=\"https:\/\/www.mdpi.com\/1851510\">Link<\/a><\/p><p>Pegoraro M, Fishman B, Zonato V, Zouganelis G, Francis A, Kyriacou CP, Tauber E. 2022. Photoperiod-Dependent Expression of MicroRNA in <i>Drosophila<\/i>. <em>International Journal of Molecular Sciences<\/em>.\u00a0 23(9):4935. <a href=\"https:\/\/doi.org\/10.3390\/ijms23094935\">Link <\/a><\/p><p>Deppisch P, Prutscher JM, Pegoraro M, Tauber E, Wegener C, Helfrich-F\u00f6rster C. 2022. Adaptation of <em>Drosophila melanogaster<\/em> to Long Photoperiods of High-Latitude Summers Is Facilitated by the <em>ls-Timeless<\/em> Allele. <em>Journal of Biological Rhythms.<\/em> 37(2):185-201 <a href=\"https:\/\/doi.org\/10.1177%2F07487304221082448\">Link<\/a><\/p><p>Pegoraro M, Sayegh Rezek E, Fishman B, Tauber E. 2022. Nucleotide variation in <em>Drosophila cryptochrome<\/em> is linked to circadian clock function: an association analysis. <em>Frontiers in Physiology<\/em>, 13. <a href=\"https:\/\/doi.org\/10.3389\/fphys.2022.781380\">Link<\/a><\/p><p>Carasso S, Fishman B, Lask LS, Shochat T, Geva-Zatorsky N, Tauber E. 2021. Metagenomic analysis reveals the signature of gut microbiota associated with human chronotypes. <em>FASEB<\/em> J. 35(11):e22011.\u00a0\u00a0<a href=\"https:\/\/doi.org\/10.1096\/fj.202100857RR\">Link\u00a0<\/a><\/p><p>Kapun M, Nunez JCB, Bogaerts-M\u00e1rquez M, Murga-Moreno J, Paris M, Outten J (and 66 others, including Tauber, E.) 2021. Drosophila Evolution over Space and Time (DEST): A New Population Genomics Resource. <em>Molecular Biology &amp; Evolution.<\/em> \u00a038(12), 5782\u20135805 <a href=\"https:\/\/doi.org\/10.1093\/molbev\/msab259\">Link\u00a0\u00a0<\/a><\/p><p>Pegoraro, N., Flavell, L.M.M.,\u00a0 Menegazzi, P., Colombi, P., Dao, P., Helfrich-F\u00f6rster, C., Tauber, E. 2020. The genetic basis of diurnal preference in <em>Drosophila melanogaster<\/em>.\u00a0 <em>BMC Genomics.<\/em>\u00a0 21, 596.\u00a0<a href=\"https:\/\/doi.org\/10.1186\/s12864-020-07020-z\">Link\u00a0<\/a><\/p><p>Kapun, M, \u00a0Barr\u00f3n, M. G., Staubach F, Vieira J, Obbard DJ \u00a0(and 42 others, including Tauber E.) . 2020. Genomic analysis of European\u00a0<em>Drosophila melanogaster<\/em>\u00a0populations reveals longitudinal structure, continent-wide selection, and previously unknown DNA viruses. <em>Molecular Biology &amp; Evolution<\/em>. 37(9):2661\u20132678,\u00a0<a href=\"https:\/\/academic.oup.com\/mbe\/advance-article\/doi\/10.1093\/molbev\/msaa120\/5837682?guestAccessKey=3653cf52-962b-44c9-8672-22a43be4a010\">Link<\/a><\/p><p>Cook, N., Parker, D.J., Tauber, E., Pannebakker, B.A. &amp; Shuker, D.M. 2019. Validating the demethylating effects of 5-aza-2\u2019-deoxycytidine in insects requires a whole-genome approach. <em>American Naturalist,<\/em> 194:. DOI: 10.1086\/704248 <a href=\"https:\/\/www.journals.uchicago.edu\/doi\/abs\/10.1086\/704248\">Link<\/a><\/p><p>Cook N, Boulton RA, Green J, Trivedi U, Tauber E, Pannebakker BA, Ritchie MG, Shuker DM. 2018. Differential gene expression is not required for facultative sex allocation: a transcriptome analysis of brain tissue in the parasitoid wasp <em>Nasonia vitripennis<\/em>. <em>Royal Society Open Science<\/em>. DOI: 10.1098\/rsos.171718. <a href=\"https:\/\/royalsocietypublishing.org\/doi\/10.1098\/rsos.171718\">Link<\/a><\/p><p>Noreen S, Pegoraro M, Nouroz F, Tauber E, Kyriacou CP. 2018. Interspecific studies of circadian genes <em>period<\/em> and <em>timeless<\/em> in <em>Drosophila. Gene.<\/em> 648: 106\u2013114.\u00a0 doi: 10.1016\/j.gene.2018.01.020. <a href=\"https:\/\/www.sciencedirect.com\/science\/article\/pii\/S0378111918300271\">Link<\/a><\/p><p>Zonato V, Vanin S, Costa R, Tauber E, Kyriacou CP. 2017. Inverse European latitudinal cline at the <em>timeless<\/em> locus of <em>Drosophila melanogaster<\/em> reveals selection on a clock gene: population genetics of<em> ls-tim<\/em>. <em>Journal of Biological Rhythms<\/em> doi:10.1177\/0748730417742309. <a href=\"https:\/\/doi.org\/10.1177\/0748730417742309\" target=\"_blank\" rel=\"noopener noreferrer\">Link<\/a><\/p><p>Adewoye AB, Nuzhdin SV, Tauber E. 2017. Mapping quantitative trait loci underlying circadian light sensitivity in\u00a0<em>Drosophila.<\/em> <em>Journal of Biological Rhythm<\/em>s. doi:10.1177\/0748730417731863. <a href=\"http:\/\/journals.sagepub.com\/doi\/full\/10.1177\/0748730417731863#articleCitationDownloadContainer\">Link<\/a><\/p><p>Pegoraro M, Zonato V, Tyler ER, Fedele G, Kyriacou CP, Tauber E. 2017. Geographical analysis of diapause inducibility in European <em>Drosophila melanogaster<\/em> populations. <em>Journal of Insect Physiology<\/em>. \u00a0doi:10.1016\/j.jinsphys.2017.01.015. <a href=\"http:\/\/www.sciencedirect.com\/science\/article\/pii\/S0022191016304218\">Link<\/a><\/p><p>Zonato V, Collins L, Pegoraro M., \u00a0Tauber E, Kyriacou CP, 2017. Is diapause an ancient adaptation in Drosophila?<em> Journal of Insect Physiology.<\/em> doi:10.1016\/j.jinsphys.2017.01.017. <a href=\"http:\/\/dx.doi.org\/10.1016\/j.jinsphys.2017.01.017\">Link<\/a><\/p><p>Khericha M, Kolenchery JB and Tauber E. 2016. Neural and non-neural contributions to sexual dimorphism of mid-day sleep in <em>Drosophila melanogaster<\/em>: a pilot study. <em>Physiological Entomology<\/em> 41: 327\u2013334. doi:10.1111\/phen.12134\u00a0 <a href=\"http:\/\/onlinelibrary.wiley.com\/enhanced\/doi\/10.1111\/phen.12134\/\">Link<\/a><\/p><p>Pegoraro M, Bafna A, Davies NJ, Shuker DM, Tauber E. 2016. DNA methylation changes induced by long and short photoperiods in <i>Nasonia<\/i>. <em>Genome Research<\/em>. doi:10.1101\/gr.196204.115 <a href=\"http:\/\/genome.cshlp.org\/content\/early\/2015\/12\/15\/gr.196204.115.long\">Link<\/a><\/p><p>Cook N,\u00a0Trivedi U, Pannebakker BA, Blaxter M, Ritchie MG, Tauber E, Sneddon T, and Shuker DM. 2015 Oviposition but Not Sex Allocation Is Associated with Transcriptomic Changes in Females of the Parasitoid Wasp <i>Nasonia vitripennis. <\/i><em>G3 (Genes| Genomes| Genetics)<\/em>. \u00a0g3.115.021220; doi:10.1534\/g3.115.021220. <a href=\"http:\/\/www.g3journal.org\/content\/early\/2015\/10\/26\/g3.115.021220.long\">Link<\/a>.<\/p><p>Davies NJ, Krusche P, Tauber E, Ott S. 2015. Analysis of 5&#8242; gene regions reveals extraordinary conservation of novel non-coding sequences in a wide range of animals. <em>BMC Evolutionary Biology.<\/em>\u00a0 15(1):227. doi: 10.1186\/s12862-015-0499-6. <a href=\"http:\/\/www.biomedcentral.com\/1471-2148\/15\/227\">Link<\/a><\/p><p>Stevenson TJ, Visser ME, Arnold W, Barrett P, Biello S, Dawson A, Denlinger DL, (and 33 others, including Tauber E<strong>)<\/strong>. 2015. Disrupted seasonal biology impacts health, food security, and ecosystems: a call for integrated research. <em>Proceedings of the Royal Society B.<\/em> DOI: 10.1098\/rspb.2015.1453. <a href=\"http:\/\/rspb.royalsocietypublishing.org\/content\/282\/1817\/20151453\">Link<\/a><\/p><p>Davies NJ &amp; Tauber E 2015. WaspAtlas: a <i>Nasonia vitripennis<\/i> gene database and analysis platform. <em>Database: the journal of biological databases and curation<\/em>.\u00a0 bav103 doi:10.1093\/database\/bav103 \u00a0<a href=\"http:\/\/doi:10.1093\/\">Link<\/a><\/p><p>Adewoye, AB, Kyriacou CP &amp; Tauber E. 2015. Identification and functional analysis of early gene expression induced by circadian light-resetting in <i>Drosophila<\/i>. <em>BMC Genomics<\/em>.16: 570. doi:10.1186\/s12864-015-1787-7. <a href=\"http:\/\/www.biomedcentral.com\/1471-2164\/16\/570\">Link<\/a><\/p><p>Cook, N., Pannebakker, B.A., Tauber, E. &amp; Shuker, D.M. 2015. DNA methylation and sex allocation in the parasitoid wasp <i>Nasonia vitripennis<\/i>.<em> American Naturalist<\/em>, 186(4). doi: 10.1086\/682950 <a href=\"http:\/\/www.jstor.org\/stable\/info\/10.1086\/682950\">Link<\/a><\/p><p>Pegoraro M, Picot E, Hansen CN, Kyriacou CP, Rosato, E &amp; Tauber, E. 2015. Gene Expression Associated with Early and Late Chronotypes in <i>Drosophila melanogaster. <\/i><em>Frontiers in Neurology<\/em>. 6:100. DOI:10.3389\/fneur.2015.00100 <a href=\"http:\/\/journal.frontiersin.org\/article\/10.3389\/fneur.2015.00100\/abstract\">Link<\/a><\/p><p>Pegoraro, M., Gesto, JS.,Kyriacou, CP. &amp; Tauber, E. 2014. Role for Circadian Clock Genes in Seasonal Timing: Testing the B\u00fcnning Hypothesis. <em>PLoS Genetics<\/em> 10(9): e1004603. DOI: 10.1371\/journal.pgen.1004603. <a href=\"http:\/\/www.plosgenetics.org\/article\/info:doi\/10.1371\/journal.pgen.1004603\">Link<\/a><\/p><p>Pegoraro, M., Noreen, S., Bhutani, S., Tsolou, A.\u00a0 Schmid, R., Kyriacou, C.P. &amp; Tauber, E. 2014.\u00a0 Molecular evolution of a pervasive natural amino-acid substitution in <em>Drosophila cryptochrome<\/em>. <em>PLoS ONE<\/em> 9(1): e86483. doi:10.1371\/journal.pone.0086483 <a href=\"http:\/\/dx.plos.org\/10.1371\/journal.pone.0086483\">Link<\/a><\/p><p>Zhang, L., Hastings, M.H., Green, E.W., Tauber, E., Sladek, M, Webster, S.G., Kyriacou, C.P. &amp; Wilcockson, D.C. 2013. Dissociation of circadian and circatidal time-keeping in the marine crustacean Eurydice pulchra. <em>Current Biology<\/em>. 10.1016\/j.cub.2013.07.075 <a href=\"http:\/\/www.cell.com\/current-biology\/abstract\/S0960-9822(13)01044-0\">Link<\/a><\/p><p>Tauber, E. 2012. Open season on the B\u00fcnning hypothesis and seasonal timing. What kind of insights can quantitative genetics provide us about this controversial hypothesis? <em>Heredity<\/em>. 108:469-470 <a href=\"http:\/\/www.nature.com\/hdy\/journal\/v108\/n5\/full\/hdy2011121a.html\">Link<\/a><\/p><p>Pegoraro, M &amp; Tauber, E. 2011. Animal clocks: a multitude of molecular mechanisms for circadian timekeeping. <em>Wiley Interdisciplinary Reviews RNA<\/em>. 2: 312-320. <a href=\"http:\/\/wires.wiley.com\/WileyCDA\/WiresArticle\/wisId-WRNA58.html\">Link<\/a><\/p><p>Tauber, E., Miller-Fleming, L., Mason, R.P., Kwan, W., Clapp, J., Butler, NJ, Outeiro, TF, Muchowski PJ, &amp; Giorgini, F. 2011. Functional gene expression profiling in yeast implicates translational dysfunction in mutant Huntingtin toxicity. <em>Journal of Biological Chemistry.<\/em> 286: 410-419. <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pmc\/articles\/PMC3012999\/?tool=pubmed\">Link<\/a><\/p><p>Kyriacou, C.P. &amp;\u00a0Tauber, E\u00a02010. Genes and genomic searches. In\u00a0M Breed, J Moore (ed), Encyclopaedia of Animal Behaviour;\u00a02: 12 -21,\u00a0Academic Press, Oxford, UK. <a href=\"http:\/\/dx.doi.org\/10.1016\/B978-0-08-045337-8.00166-2\">Link<\/a><\/p><p>Kyriacou, C.P., Peixoto, A.A., Sandrelli, F, Costa, R, &amp; Tauber, E. 2008. Clines in clock genes: fine-tuning circadian rhythms to the environment. <em>Trends in Genetics<\/em> 24: 124-132. <a href=\"http:\/\/www.cell.com\/trends\/genetics\/abstract\/S0168-9525%2808%2900004-8\">Link<\/a><\/p><p>Pegoraro, M &amp; Tauber, E. 2008. Role of microRNA (miRNA) in circadian rhythmicity. Journal of Genetics 87: 505-511 <a href=\"http:\/\/www.google.com\/url?sa=t&amp;rct=j&amp;q=&amp;esrc=s&amp;source=web&amp;cd=1&amp;ved=0CD8QFjAA&amp;url=http%3A%2F%2Fwww.ias.ac.in%2Fjgenet%2FVol87No5%2F505.pdf&amp;ei=ekGET9LTAs-l8gOgnuWwBw&amp;usg=AFQjCNE6xZjMmrYfhxn7pnmPE9RjlG_Ijw&amp;sig2=Rbo48Jl8rsyKjV93aYkfnQ\">Link<\/a><\/p><p>Tauber, E. &amp; Kyriacou, CP. 2008. Genomic approaches for studying biological clocks. Functional Ecology 22: 19\u201329. <a href=\"http:\/\/www.google.com\/url?sa=t&amp;rct=j&amp;q=&amp;esrc=s&amp;source=web&amp;cd=1&amp;ved=0CDoQFjAA&amp;url=http%3A%2F%2Facademic.reed.edu%2Fbiology%2Fcourses%2FBIO342%2F2011_syllabus%2F2011_readings%2Ftauber_kyriacou_circ_genom.pdf&amp;ei=fUKET8gbjPnxA_iYwasH&amp;usg=AFQjCNE81M-Wj1ejHkfZVHWMWv7g5DQypg&amp;sig2=pSnVZMIi2fqDR8jGEhXsEQ\">Link<\/a><\/p><p>Tauber, E, Sandrelli, F., Zordan, MA, Pegoraro, M. Cisotto, P, Osterwalder, N. Piccin, A. Daga, A., Mazzotta, G., Rosato, E., Kyriacou C.P., &amp; Costa R. 2007. Natural selection favours a newly derived allele of the circadian clock gene <em>timeless<\/em> in European <em>Drosophila melanogaster<\/em> populations. <em>Science<\/em> 316: 1895-1898. PubMed [<a href=\"http:\/\/f1000.com\/prime\/1088270\">Selected by Faculty of 1000<\/a>] <a href=\"http:\/\/www.google.com\/url?sa=t&amp;rct=j&amp;q=&amp;esrc=s&amp;source=web&amp;cd=1&amp;ved=0CCkQFjAA&amp;url=http%3A%2F%2Fwww.sciencemag.org%2Fcontent%2F316%2F5833%2F1895.full&amp;ei=90KET7TyPMzd8QOEoOXvBw&amp;usg=AFQjCNEwgAZOPL4YUOJKnZ8xvJl3ModVVw&amp;sig2=rx8aOhNhUBU9B66GYP5jmg\">Link<\/a><\/p><p>Sandrelli, F., Tauber, E., Zordan, MA, Pegoraro, M. Cisotto, P, Osterwalder, N. Piccin, A. Daga, A., Mazzotta, G., Rosato, E., Kyriacou C.P., &amp; Costa R.A. 2007. A molecular basis for natural selection at the <em>timeless<\/em> locus in <em>Drosophila melanogaster<\/em>. <em>Science<\/em> 316: 1898-1900. [<a href=\"http:\/\/f1000.com\/prime\/1088416\">Selected by Faculty of 1000<\/a>] \u00a0<a href=\"http:\/\/www.sciencemag.org\/cgi\/pmidlookup?view=long&amp;pmid=17600216\">Link<\/a><\/p><p>Rosato, E., Tauber, E. &amp; Kyriacou, C.P. 2006. Molecular genetics of the fruit-fly circadian clock. <em>European Journal of Human Genetics<\/em>. 14, 729\u2013738. <a href=\"http:\/\/www.nature.com\/ejhg\/journal\/v14\/n6\/full\/5201547a.html\">Link<\/a><\/p><p>Tauber, E &amp; Kyriacou C.P.\u00a0 2005. Molecular evolution and population genetics of circadian clock genes. <em>Methods in Enzymology<\/em>. 393:797-817. <a href=\"http:\/\/www.sciencedirect.com\/science\/article\/pii\/S0076687905930425\">Link<\/a><\/p><p>Tauber, E., Last K.S., Olive, P.J. &amp; Kyriacou C.P. 2004. Clock gene evolution and functional divergence.\u00a0 <em>Journal of Biological Rhythms<\/em> 19: 445-458.\u00a0<a href=\"http:\/\/journals.sagepub.com\/doi\/abs\/10.1177\/0748730404268775\">Link<\/a><\/p><p>Tauber, E. Roe, H., Costa, R., Hennessy, J.M. &amp;\u00a0 Kyriacou, C.P. 2003. Temporal mating isolation driven by a single behavioural gene in Drosophila. <em>Current Biology<\/em> 13: 140-145.\u00a0<a href=\"https:\/\/www.cell.com\/current-biology\/abstract\/S0960-9822(03)00004-6\">Link<\/a><\/p><p>Tauber, E. &amp; Eberl, D.F. 2003. Acoustic communication in Drosophila. B<em>ehavioural Processes<\/em>\u00a0 64: 197-210. <a href=\"https:\/\/doi.org\/10.1016\/S0376-6357(03)00135-9\">Link<\/a><\/p><p>Tauber, E. &amp; Eberl, D.F. 2002. The effect of male competition on the courtship song of <em>Drosophila melanogaster<\/em>. <em>Journal of Insect Behavior<\/em> 15: 109-120. <a href=\"https:\/\/doi.org\/10.1023\/A:1014488330548\">Link<\/a><\/p><p>Tauber, E. &amp;\u00a0 Kyriacou, C.P. 2001. Insect photoperiodism and circadian clocks: models and mechanisms. <em>Journal of Biological Rhythms<\/em> 16: 381-390. <a href=\"https:\/\/doi.org\/10.1177\/074873001129002088\">Link<\/a><\/p><p>Tauber, E. &amp; Eberl, D.F. 2001. Song recognition in auditory mutants of Drosophila: the role of sensory feedback. <em>Journal of Comparative Physiology<\/em> A 187: 341-348. <a href=\"https:\/\/doi.org\/10.1007\/s003590100206.\">Link<\/a><\/p><p>Tauber, E., Cohen, D., Greenfield, M.D. &amp; Pener, M.P. 2001. Duet singing and female choice in the bushcricket <i>Phaneroptera nana<\/i>. <em>Behaviour<\/em> 138: 411-430. <a href=\"http:\/\/www.jstor.org\/stable\/4535831\">Link<\/a><\/p><p>Yerushalmi, Y., Tauber, E. &amp; Pener, M.P. 2001. Phase polymorphism in <i>Locusta migratoria<\/i>: the relative effects of geographic strains and albinism on morphometrics. <em>Physiological Entomology<\/em> 26: 95-105\u00a0 <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1046\/j.1365-3032.2001.00220.x\/abstract\">Link<\/a><\/p><p>Tauber, E. 2001. Bi-directional communication system in katydids: the effect on chorus structure. <em>Behavioral Ecology<\/em>. 12: 308-312. <a href=\"http:\/\/beheco.oxfordjournals.org\/content\/12\/3\/308.full.pdf+html\">Link<\/a><\/p><p>Tauber, E. &amp; Pener, M.P. 2000. Song recognition in female bushcrickets <i>Phaneroptera nana<\/i>. <em>Journal of Experimental Biology<\/em> 203: 597-603 <a href=\"http:\/\/jeb.biologists.org\/content\/203\/3\/597.full.pdf\">Link<\/a><\/p><p>Tauber, E. &amp; Camhi, J.M. 1995. The wind evoked escape behavior of the cricket <em>Gryllus bimaculatus<\/em>: Integration of behavioral elements. <em>Journal of Experimental Biology<\/em> 198: 1895-1907. <a href=\"http:\/\/jeb.biologists.org\/content\/198\/9\/1895.long\">Link<\/a><\/p>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t","protected":false},"excerpt":{"rendered":"<p>Creasey LD, Petrov PB, Tauber E. 2026. The Evolutionary Flexibility of the Drosophila Circadian Clock: Network Constraints or Adaptive Freedom? Genome Biology and Evolution.\u00a0 evag061. Link Durmaz, E., Kerdaffrec, E., Harney, E., Paulo, TF., Veselinovic, MS, Tanaskovic, M.\u00a0 (and 96 others, including Tauber E.). 2025. Continent-wide differentiation of fitness traits and patterns of climate adaptation [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-18","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/wp-json\/wp\/v2\/pages\/18","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/wp-json\/wp\/v2\/comments?post=18"}],"version-history":[{"count":67,"href":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/wp-json\/wp\/v2\/pages\/18\/revisions"}],"predecessor-version":[{"id":432,"href":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/wp-json\/wp\/v2\/pages\/18\/revisions\/432"}],"wp:attachment":[{"href":"https:\/\/tauber-lab.haifa.ac.il\/index.php\/wp-json\/wp\/v2\/media?parent=18"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}