{"id":748,"date":"2014-02-14T15:36:11","date_gmt":"2014-02-14T14:36:11","guid":{"rendered":"https:\/\/www.egce.universite-paris-saclay.fr\/?p=748"},"modified":"2023-10-26T22:32:21","modified_gmt":"2023-10-26T20:32:21","slug":"dominique-joly","status":"publish","type":"post","link":"https:\/\/www.egce.universite-paris-saclay.fr\/?p=748","title":{"rendered":"Dominique, Joly"},"content":{"rendered":"<p><strong><a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?p=741\">\u00a0<\/a><\/strong><\/p>\n<p><a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Dominique-Joly.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-medium wp-image-1473\" src=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Dominique-Joly-249x300.jpg\" alt=\"Dominique-Joly\" width=\"249\" height=\"300\" srcset=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Dominique-Joly-249x300.jpg 249w, https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Dominique-Joly-852x1024.jpg 852w, https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Dominique-Joly-768x924.jpg 768w, https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Dominique-Joly-1277x1536.jpg 1277w, https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Dominique-Joly.jpg 1422w\" sizes=\"auto, (max-width: 249px) 100vw, 249px\" \/><\/a><\/p>\n<p>Directrice de Recherche CNRS (PhD, HDR)<\/p>\n<p>T\u00e8l: 33 1 69 15 49 89<br \/>\nFax: 33 1 69 82 37 36<br \/>\nM\u00e8l. Dominique&#46;Jo&#108;&#121;&#64;&#117;&#110;&#105;&#118;&#101;&#114;&#115;&#105;&#116;&#101;&#45;&#112;&#x61;&#x72;&#x69;&#x73;&#x2d;&#x73;&#x61;&#x63;&#x6c;&#x61;&#x79;&#x2e;&#x66;&#x72;<\/p>\n<p><strong>Th\u00e8mes de Recherche<\/strong><br \/>\nQuatre axes th\u00e9matiques ont \u00e9t\u00e9 d\u00e9velopp\u00e9s ces derni\u00e8res ann\u00e9es :<\/p>\n<p>1- le premier axe est centr\u00e9 sur l\u2019\u00e9tude de la s\u00e9lection sexuelle postcopulatoire et des adaptations qui influencent la paternit\u00e9 des descendants. L&rsquo;originalit\u00e9 de ma contribution est de documenter la diversit\u00e9 de ces adaptations et d\u2019analyser le r\u00f4le du conflit sexuel dans l\u2019\u00e9volution des caract\u00e8res, en discriminant les effets m\u00e2les des effets femelles d\u2019un point de vu comportemental, morphologique, biochimique et g\u00e9n\u00e9tique. L\u2019accent a \u00e9t\u00e9 mis ces derni\u00e8res ann\u00e9es sur l\u2019effet du fluide s\u00e9minal sur les strat\u00e9gies reproductives des femelles.<br \/>\nColl Claude <a title=\"Lien C. Wicker-Thomas\" href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?p=818\">Wicker-Thomas<\/a>, B\u00e9atrice <a title=\"lien D. Denis\" href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?p=720\">Denis<\/a>, Ga\u00eblle <a title=\"lien G. Claisse\" href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?p=706\">Claisse<\/a>, financement ANR et FRB.<\/p>\n<p>2- le second axe concerne l&rsquo;analyse des changements de l&rsquo;expression g\u00e9nique comme source de variations ph\u00e9notypiques intra- et intersp\u00e9cifiques. L&rsquo;utilisation d&rsquo;outils d&rsquo;analyse \u00e0 haut d\u00e9bit du transcriptome permet de quantifier ces changements \u00e0 l&rsquo;\u00e9chelle du g\u00e9nome. Nous cherchons \u00e0 d\u00e9terminer comment les g\u00e8nes d\u00e9r\u00e9gul\u00e9s se positionnent dans les r\u00e9seaux de r\u00e9gulation g\u00e9niques et si ces voies sont sp\u00e9cifiques ou non des diff\u00e9rents mod\u00e8les \u00e9tudi\u00e9s.<br \/>\nColl Catherine <a title=\"lien C. Montchamp-Moreau\" href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?p=778\">Montchamp-Moreau<\/a>, David <a title=\"lien D. Ogereau\" href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?p=790\">Ogereau<\/a> et th\u00e8se de Fran\u00e7ois <a title=\"lien F. Wurmser Tours\" href=\"https:\/\/genomique.med.univ-tours.fr\/?page_id=10\">Wurmser<\/a>, financement CNRS-INEE, ANR et IDEEV.<\/p>\n<p>3- &#8211; le troisi\u00e8me axe concerne l&rsquo;\u00e9tude de l&rsquo;apprentissage social comme g\u00e9n\u00e9rateur de biodiversit\u00e9. Les modifications du comportement sont possibles au cours de la vie des individus par l\u2019observation ou l\u2019interaction avec d\u2019autres individus. Nous cherchons \u00e0 comprendre les relations entre apprentissage social et individuel, \u00e0 d\u00e9terminer les bases g\u00e9n\u00e9tiques de l\u2019apprentissage social, \u00e0 \u00e9tudier la dynamique de cet apprentissage dans le temps et dans l&rsquo;espace, et \u00e0 caract\u00e9riser la stabilit\u00e9 de ces interactions au cours des g\u00e9n\u00e9rations.<br \/>\nColl F. <a title=\"lien EPCC\" href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?page_id=81\">Mery<\/a>, et th\u00e8se de M. <a title=\"lien EPCC\" href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?page_id=81\">Battesti<\/a>, financement ERC, ANR.<\/p>\n<p>4- enfin le quatri\u00e8me axe, plus r\u00e9cent, adresse les questions d\u2019impact de pesticides naturels sur la reproduction et la s\u00e9lection sexuelle chez des individus non-cibles. Cette approche a rarement \u00e9t\u00e9 abord\u00e9e dans la litt\u00e9rature et d\u00e9montre les effets potentiellement importants sur la survie de populations sauvages.<\/p>\n<p><strong>Mots-cl\u00e9s<\/strong>: Evolution des strat\u00e9gies de reproduction, s\u00e9lection sexuelle, comp\u00e9tition spermatique, choix cryptique, stress environnementaux (temp\u00e9rature, pesticides), g\u00e9nomique et prot\u00e9omique,<\/p>\n<p><strong>Responsabilit\u00e9s<\/strong><\/p>\n<p>Directrice Adjointe Scientifique <a title=\"lien INEE\" href=\"https:\/\/www.cnrs.fr\/inee\/\">Institut Ecologie et Environnement CNRS INEE <\/a><\/p>\n<p>Coordinatrice <a title=\"lien GDR 3692-GE\" href=\"https:\/\/www.cnrs.fr\/inee\/recherche\/actionsincitatives-RTP-Genoenvironnementale.htm\">GDR3692 G\u00e9nomique Environnementale<\/a><br \/>\nCoordinatrice <a title=\"lien RTP 3E\" href=\"https:\/\/rtp-3e.wix.com\/rt3e#!et-3e\/cwad\">RTP Epig\u00e9n\u00e9tique en \u00e9cologie et \u00e9volution<\/a><\/p>\n<p>Portable: 33 6 78 13 71 71<br \/>\nT\u00e8l: 33 1 44 96 40 53<br \/>\nFax: 33 1 44 96 45 11<br \/>\nM\u00e8l. &#68;&#x6f;&#x6d;&#105;&#x6e;&#x69;q&#x75;&#x65;&#46;&#74;&#x6f;l&#121;&#x40;l&#99;&#x6e;r&#115;&#x2d;d&#105;&#x72;&#x2e;&#102;&#x72;<\/p>\n<p><strong>Publications<\/strong><\/p>\n<p>GRUNAU C., LE LUYER J., LAPORTE M. &amp; <strong>JOLY D.<\/strong> 2020 The epigenetics dilemma. Genes 11:23 (Editorial, special issue). <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2018\/07\/Grunaual_Genes-2020.pdf\">pdf<\/a><\/p>\n<p>HERREL A., <strong>JOLY D<\/strong>. &amp; DANCHIN E. 2020 Epigenetics in ecology and evolution. Functional Ecology 34:381-384. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2018\/07\/Herrel_et_al-Functional_Ecology_2020.pdf\">pdf<\/a><\/p>\n<p>ARIBI N., DENIS B., KILANI-MORAKCHI S. &amp; <strong>JOLY D.<\/strong> 2020 L\u2019azadirachtine, un pesticide naturel aux effets multiples. M\u00e9decine\/Sciences<em> 36:44-49. <\/em><a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2018\/07\/Aribial_MedSc-2020.pdf\">pdf<\/a><em><br \/>\n<\/em><\/p>\n<p>DE CARVALHO AUGUSTO R, MINODA A, REY O, COSSEAU C, CHAPARRO C, VIDAL-DUPIOL J, ALLIENNE J-F, DUVAL D, PINAUD S, T\u00d6NGES S, ANDRIANTSOA R, LUQUET E, AUBRET F, DIA SOW M, DAVID P, THOMSON V, FEDERICO D, <strong>JOLY D<\/strong>, LIMA MG, DANCHIN E, GRUNAU C. 2019 Chromatin structure changes in <em>Daphnia<\/em> populations upon exposure to environmental cues \u2013 or \u2013 The discovery of Wolterecks \u201cMatrix\u201d. bioRxiv<em>. <\/em>824789. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2018\/07\/de-Carvalho-Aug-2019-Chromatin-structure-chang.pdf\">pdf<\/a><\/p>\n<p>OULHACI C.M., DENIS B., KILANI-MORAKCHI S., SANDOZ J-C., KAISER-ARNAUD L., <strong>JOLY D.<\/strong> &amp; ARIBI N. 2018 Azadirachtin effects on mating success, gametic abnormalities and progeny survival in <em>Drosophila melanogaster<\/em> (Diptera). Pest Management Science 74:174-180. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Oulhaci_Pest-Manag-Sci_2017.pdf\">pdf<\/a><\/p>\n<p>ARIBI N., OULHACI C.M., DENIS B., KILANI-MORAKCHI S., SANDOZ J-C., KAISER-ARNAUD L. &amp; <strong>JOLY D.<\/strong> 2017 Azadirachtin impact on mate choice, female sexual receptivity and male activity in Drosophila melanogaster (Diptera: Drosophilidae). Pesticide Biochemistry and Physiology 143:95-101. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Aribial_PBP-2017.pdf\">pdf<\/a><\/p>\n<p><strong>JOLY D.<\/strong> &amp; THIEBAULT S. 2017 Des dispositifs scientifiques pour \u00e9tudier l\u2019adaptation du vivant au changement global, dans \u00ab\u00a0Adaptation au changement climatique \u00bb, Ouvrage collectif, CNRS \u2013 Comit\u00e9 21, responsables scientifiques A. Euzen, B. Laville et S. Thi\u00e9bault. Versions fran\u00e7aise et anglaise. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/JolyThie\u0301bault_Book_Adaptation-2027-En.pdf\">pdf<\/a><\/p>\n<p>GRUNAU C. &amp; <strong>JOLY D.<\/strong>, 2017 L\u2019h\u00e9ritabilit\u00e9 dans un monde changeant : \u00e9pig\u00e9n\u00e9tique et changement climatique, dans \u00ab\u00a0Adaptation au changement climatique \u00bb, Ouvrage collectif, CNRS \u2013 Comit\u00e9 21. Version s fran\u00e7aise et anglaise.<\/p>\n<p>DENIS B.*, CLAISSE G.*, LE ROUZIC A., WICKER-THOMAS C., LEPENNETIER G. &amp; <strong>JOLY D<\/strong>. 2017 Male accessory gland proteins affect differentially female sexual receptivity and remating in closely related <em>Drosophila<\/em> species. Journal of Insect Physiology 99:67-77. <em>*Ont \u00e9galement contribu\u00e9\u00a0 <\/em><a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2018\/01\/Denisal_JIP-2017-1.pdf\">pdf<\/a><em><br \/>\n<\/em><\/p>\n<p><strong>JOLY D<\/strong>., FAURE D. 2017 Chapitre 10. Le d\u00e9cryptage haut d\u00e9bit du vivant; dans \u00ab Les Big Data \u00e0 d\u00e9couvert \u00bb, Bouzeghoub M. et Mosseri R. (eds), CNRS Editions, pp 222-223.<\/p>\n<p><strong>JOLY D.<\/strong> 2017 membre du comit\u00e9 editorial, \u00ab Les Big Data \u00e0 d\u00e9couvert \u00bb, Bouzeghoub M. et Mosseri R. (eds), CNRS Editions, 350 pages.<\/p>\n<p>FAURE D., <strong>JOLY D.<\/strong> (eds) 2016 La g\u00e9nomique environnementale : la r\u00e9volution du s\u00e9quen\u00e7age \u00e0 haut debit, ISTE Editions, Collection Ecologie dirig\u00e9e par Fran\u00e7oise Gaill, 150 pages.<\/p>\n<p>FAURE D., <strong>JOLY D. <\/strong>(eds) 2016 Insight on Environmental Genomics: the high-throughput sequencing revolution, ISTE Editions, Series Editor Gaill F., 153 pages.<\/p>\n<p>ARIBI N., OULHACI C., BOULAHBEL B., <strong>JOLY D.<\/strong>, DENIS B. &amp; KILANI-MORAKCHI S. 2015. Negative effects of Azadirachtin (Neem-Azal) on non cibled species <em>Drosophila melanogaster<\/em> (Diptera): delayed effects on reproduction. Toxicology Letters, 238 (2): S103. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Aribial_ToxicoloyLetter-2015.pdf\">pdf<\/a><\/p>\n<p><strong>JOLY D<\/strong>., FAURE D, SALAMITOU S. 2015 Empreinte du vivant : l\u2019ADN de l\u2019environnement. Edition du cherche midi. Paris. 192 pp. <em>*Prix Veolia de l\u2019environnement.<\/em><\/p>\n<p>MOUQUET N., LAGADEUC Y., DEVICTOR V., DOYEN L., DUPUTI\u00c9 A., EVEILLARD D., FAURE D., GARNIER E., GIMENEZ O., HUNEMAN P., JABOT F., JARNE P., <b>JOLY D.<\/b>., JULLIARD R., K\u00c9FI S., J. KERGOAT G., LAVOREL S., LE GALL L., MESLIN L., MORAND S., MORIN X., MORLON H., PINAY G., PRADEL R., SCHURR F.M., THUILLER W. &amp; LOREAU M. 2015 Improving predictive ecology in a changing world. Journal of Applied Ecology 52:1293-1310. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Mouquet_et_al_2015_JAE.pdf\">pdf<\/a><\/p>\n<p>PORCELLI D., BUTLIN R.K., GASTON K.J., <b>JOLY D.<\/b> &amp; SNOOK R.R.. 2015 The environmental genomics of thermal adaptation. Heredity 114: 502-514. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Porcellial_Heredity-2015.pdf\">pdf<\/a><\/p>\n<p><b>JOLY D.<\/b>, FAURE D. 2015 Next-generation sequencing propels environmental genomics to the front line of research. Heredity 114: 429-430. <em>*Highlighted in The Molecular Ecologist, April, 17, 2015.<\/em> <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/JolyFaure_Heredity-2015.pdf\">pdf<\/a><\/p>\n<p><b>JOLY D.<\/b>, FAURE D. (eds). 2015 Special issue : Environmental Genomics. Heredity 114:429-536. <a href=\"https:\/\/www.nature.com\/hdy\/journal\/v114\/n5\/index.html\">url<\/a><\/p>\n<p>FAURE D., <b>JOLY D.<\/b> 2015 Next-generation sequencing as a powerful motor for advances in the biological and environmental sciences. Genetica 143(2): 129-132. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/FaureJoly_Genetica-2015.pdf\">pdf<\/a><\/p>\n<p>FAURE D., <b>JOLY D.<\/b> (eds). 2015 Special Issue: Next-generation sequencing for Biodiversity, Taxonomy, Evolution and Ecology. Genetica 143: 129-261. <a href=\"https:\/\/link.springer.com\/journal\/10709\/143\/2\/page\/1\">url<\/a><\/p>\n<p>BATTESTI M., PASQUARETTA C., MORENO C., TESEO S, <b>JOLY D.<\/b>, KLENSCH E., PETIT O., SUEUR C., MERY F. 2015 Ecology of information: social transmission dynamics within groups of non-social insects. Proc Biol Sci 282(1801). <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Battestial_PROC-2015.pdf\">pdf<\/a><\/p>\n<p>BATTESTI M., MORENO C.,<b> JOLY D.<\/b>, MERY F. 2015 Biased social transmission in <em>Drosophila<\/em> oviposition choice. Behavioral Ecology and Sociobiology 69(1): 83-87. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Battestial_BES-2015.pdf\">pdf<\/a><\/p>\n<p>BEN CHEHIDA, Y., DENIS, B., CLAISSE, G., <strong>JOLY, D.<\/strong> 2014 Ce que l\u2019\u00e9tude des prot\u00e9ines du fluide s\u00e9minal de drosophile nous apprend sur l\u2019\u00e9volution de la reproduction. Medecine\/Science 30:651-657 <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Ben_Chehidaal_Medsci-2014.pdf\">pdf<\/a><\/p>\n<p>MONGET P., BOBE J., COUDERC J.-L., GUILLOMOT M., SANDRA O., DUFOUR S., <b>JOLY D.<\/b>, KELLER M., PASCAL G. 2014 Evolution et reproduction. Dans \u201cLa reproduction animale et humaine\u201d. Versailles: Editions Quae, chapitre 37, pp 687-702. <em>Ce livre a re\u00e7u le Prix Henri Le Bars 2014 de l&rsquo;Acad\u00e9mie v\u00e9t\u00e9rinaire de France.<\/em><\/p>\n<p>*FAURE D., *<b>JOLY, D.,<\/b> Salamitou S. 2013 Prospective en G\u00e9nomique Environnementale. CNRS-INEE edition. <em>*Ont \u00e9galement contribu\u00e9.<\/em> <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/2013_prospective_GE.pdf\">pdf<\/a><\/p>\n<p>WURMSER, F., MARY-HUARD, T., DAUDIN, J.-J., <strong>JOLY, D.<\/strong>,\u00a0 MONTCHAMP-MOREAU C. 2013 Variation of gene expression associated with colonisation of an anthropized environment: comparison between African and European populations of Drosophila simulans. PLoS One 8, e79750. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Wurmseral_PlosOne-2013.pdf\">pdf<\/a><\/p>\n<p>BATTESTI M., MORENO C.,<strong> JOLY D.<\/strong>, MERY F. 2012 Spread of social information and dynamics of social transmission within Drosophila groups. Current Biology 22: 1-5 <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Battestial_CurrentBiology-2012.pdf\">pdf<\/a><\/p>\n<p>WURMSER F., OGEREAU D., MARY-HUARD T., LORIOD B., <strong>JOLY D.<\/strong>, MONTCHAMP-MOREAU C. 2011 Population transcriptomics: insights from Drosophila simulans, Drosophila sechellia and their hybrids. Genetica 39:465-477. <a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/wp-content\/uploads\/2014\/02\/Wurmseral_Genetica-2011.pdf\">pdf<\/a><\/p>\n<p><strong>JOLY D<\/strong>.,\u00a0 SCHIFFER M. 2010 Coevolution of male and female reproductive structures in Drosophila. Genetica 138: 105 pdf url<\/p>\n<p><strong>JOLY D<\/strong>.,\u00a0 SCHMITT M. (EDS). 2010 Preface Genetica 138: 1 pdf<\/p>\n<p><strong>JOLY D.,<\/strong> CARIOU M.-L., MHLANGA-MUTANGADURA T. and LACHAISE D. 2010 Male terminalia variation in the rainforest dwelling Drosophila teissieri contrasts with the sperm pattern and species stability Genetica 138: 139 url<\/p>\n<p>MCEVEY S. F., SCHIFFER M., DA LAGE J-L., DAVID J. R., LEMEUNIER F., <strong>JOLY D.<\/strong>, CAPY P. and CARIOU M-L. 2008 Comments on the proposed conservation of usage of Drosophila Fall\u00e9n, 1823 (Insecta, Diptera). Bulletin of Zoological Nomenclature 65(2): 147<\/p>\n<p>ANGELARD C., MONTCHAMP-MOREAU C. and <strong>JOLY D<\/strong>. 2008 Female-driven mechanisms, ejaculate size and quality contribute to the lower fertility of sex-ratio distorter males in Drosophila simulans. BMC Evol. Biol. 8: 326<\/p>\n<p><strong>JOLY D<\/strong>., LUCK N. and DEJONGHE B. 2008 Adaptations to long sperm in Drosophila: correlated development of the sperm roller and sperm packaging. J. Exp. Zool. (Mol. Dev. Evol) 310: 167<\/p>\n<p>SCH\u00e4RER L., DA LAGE J.-L. and <strong>JOLY D<\/strong>. 2008 Evolution of testicular architecture in the Drosophilidae: a role for sperm length. BMC Evol. Biol. 8: 143<\/p>\n<p>LUCK N., DEJONGHE B., FRUCHARD S., HUGUENIN S. and JOLY D. 2007 Male and female effects on sperm precedence in the giant sperm species Drosophila bifurca. Genetica 130(3): 257<\/p>\n<p>DAVID J.R., ARARIPE L.O, CHAKIR M., LEGOUT H., LEMOS B., PETAVY G., ROHMER C., <strong>JOLY D<\/strong>. and MORETEAU B. 2005 Male sterility at extreme temperatures: a significant but neglected phenomenon for understanding Drosophila climatic adaptations. J. Evol. Biol. 18(4): 838<\/p>\n<p>LUCK, N. and <strong>JOLY, D<\/strong>. 2005 Sexual selection and mating advantage in the giant sperm species D. bifurca J. Insect Science 5: 10<\/p>\n<p>TILL-BOTTRAUD I., <strong>JOLY D.<\/strong>, LACHAISE D. and SNOOK R.R. 2005 Pollen and sperm heteromorphism: convergence across kingdoms? J. Evol. BIol. 18(1): 1<\/p>\n<p>ATLAN A., <strong>JOLY D.<\/strong>, CAPILLON C. and MONTCHAMP-MOREAU C. 2004 Sex-ratio distorter of Drosophila simulans reduces male productivity and sperm competition ability. J. Evol. Biol. 17(4): 744<\/p>\n<p><strong>JOLY, D.<\/strong>, KOROL, A. and NEVO, E. 2004 Sperm size evolution in Drosophila: inter- and intraspecific analysis. Genetica 120(1): 233<\/p>\n<p>ROHMER C., DAVID J.R., MORETEAU B. and<strong> JOLY D.<\/strong> 2004 Heat induced male sterility in Drosophila melanogaster: adaptive genetic variations among geographic populations and role of the Y chromosome. J. Exp. Biol. 207(16): 2735<\/p>\n<p><strong>JOLY, D.<\/strong>, BRESSAC, C., JAILLARD, D., LACHAISE, D. and LEMULLOIS, M. 2003 The sperm roller: a modified testicular duct linked to giant sperm transport within the male reproductive tract. J. Struct. Biol. 142(3): 348<\/p>\n<p>MALHERBE Y. and <strong>JOLY D<\/strong>. 2003 Sperm management in the sperm heteromorphic species, Drosophila teissieri. Drosophila Information Service 86: 53<\/p>\n<p>MERY, F. and <strong>JOLY, D<\/strong>. 2002 Multiple mating, sperm transfer and oviposition pattern in the giant sperm species, Drosophila bifurca. J. Evol. Biol. 15(1): 49<\/p>\n<p><strong>JOLY D.<\/strong>, BRESSAC C., JAILLARD D., LEMULLOIS M. and LACHAISE D. 2002 Ultrastructure of an additional organ between testis and seminal vesicles in Drosophila giant sperm species. In Proceedings of 9th International Symposium on Spermatology. Cape Town, G.Van der Horst, D. Franken, R. Bornman, T. Bornam &amp; S. Dyer (eds), Monduzzi Editore 0: 13<\/p>\n<p>LUCK N.,, DEJONGHE B. and<strong> JOLY D.<\/strong> 2002 Sexual choice and remating in a giant sperm species of Drosophila. Proceedings of 9th International Symposium on Spermatology. Cape Town, G.Van der Horst, D. Franken, , R. Bornman, T. Bornam &amp; S. Dyer (eds), Monduzzi Editore 0: 17<\/p>\n<p>CAZEMAJOR M., <strong>JOLY D<\/strong>. and MONTCHAMP-MOREAU C. 2000 Sex-ratio meiotic drive in Drosophila simulans is related to equational nondisjunction of the Y chromosome. Genetics 154(1): 229<\/p>\n<p><strong>JOLY D.<\/strong>, BAZIN C., ZENG L.-W. and SING R.S. 1997 Genetic basis of sperm and testis length differences and epistatic effect on hybrid inviability and sperm motility between Drosophila simulans and Drosophila sechellia. Heredity 78(4): 354<\/p>\n<p><strong>JOLY D.<\/strong>, BRESSAC C. and LACHAISE D. 1997 Gradually elongating testis and &lsquo;sperm roller&rsquo; in Drosophila bifurca. Drosophila Information Service 80: 7<\/p>\n<p>MONTCHAMP-MOREAU C. and <strong>JOLY D.<\/strong> 1997 Abnormal spermiogenesis is associated with the sex-ratio trait in Drosophila simulans. Heredity 79(1): 24<\/p>\n<p>PAILLETTE M., BIZAT N. and <strong>JOLY D.<\/strong> 1997 Differentiation of dialects and courtship strategies in allopatric populations of Drosophila teissieri. J. Insect Physiol. 43(9): 809<\/p>\n<p>BRESSAC C., <strong>JOLY D<\/strong>. and LACHAISE D. 1997 Huge spermatic diversity in Drosophila: sperm competition as a constraint in its evolution. Advances in Ethology suppl 32: 227<\/p>\n<p>VIANEY-LIAUD M., <strong>JOLY D<\/strong>. and DUSSART G. 1996 Sperm competition in the simultaneous hermaphrodite freshwater snail Biomphalaria glabrata (Gastropoda: Pulmonata). J. Molluscan Studies 62(4): 449<\/p>\n<p>BRESSAC C., FLEURY A., <strong>JOLY D<\/strong>. and LACHAISE D. 1995 The giant-sperm strategy: another way of being a male. The Journal of NIH Research 7: 53<\/p>\n<p><strong>JOLY D.<\/strong>, BRESSAC, C. and LACHAISE, D 1995 Disentangling giant sperm. Nature 377(6546): 202<\/p>\n<p><strong>JOLY D.<\/strong> and BRESSAC C. 1994 Testis and receptacle lengths used as estimators of sperm length in the Drosophilidae family. Int. J. Insect Morphol. &amp; Embryol. 23: 85<\/p>\n<p><strong>JOLY D.<\/strong> and LACHAISE D. 1994 Polymorphism in the sperm heteromorphic species of the Drosophila obscura group. J. Insect Physiol. 40(11): 933<\/p>\n<p><strong>JOLY, D<\/strong>. 1994 Number of spermatocytes per cyst in six species of the Drosophila melanogaster subgroup. Drosophila Information Service 75: 115<\/p>\n<p><strong>JOLY D.<\/strong> and LACHAISE D. 1993 Multiple mating frequency differs in two different geographic strains of D. teissieri. Drosophila Information Service 72: 126<\/p>\n<p>BRESSAC C., <strong>JOLY D.<\/strong>, DEVAUX J. and LACHAISE D. 1991 Can we predict the mating pattern of Drosophila females from the sperm length distribution in males? Experientia 47(1): 111<\/p>\n<p>BRESSAC C., <strong>JOLY D.<\/strong>, DEVAUX J., SERRES C., FENEUX D. and LACHAISE, D. 1991 Comparative kinetics of short and long sperm in sperm dimorphic Drosophila species. Cell Motility And The Cytoskeleton 19(4): 269 pdf<\/p>\n<p><strong>JOLY D.<\/strong>, BRESSAC C, DEVAUX J. and LACHAISE D. 1991 Sperm length diversity in Drosophilidae Drosophila Information Service 70: 104<\/p>\n<p><strong>JOLY D.,<\/strong> CARIOU M.-L. and LACHAISE D. 1991 Can sperm competition explain sperm polymorphism in Drosophila teissieri? Evolucion Biologica 5: 25<\/p>\n<p>LACHAISE D., BRESSAC C. and <strong>JOLY D.<\/strong> 1991 Polymorphisme, Competition &amp; Evolution des spermatozo\u00efdes Pathologie Biologie (Editorial) 39(7): 654<\/p>\n<p><strong>JOLY D.<\/strong>, BRESSAC C., SERRES C., FENEUX D. and FENEUX D. &amp; LACHAISE D. 1991 Comparative kinetics of short and long sperm in sperm dimorphic Drosophila species. In Comparative Spermatology, 20 years after, B. Baccetti (ed.) Serono Symposia Publications from Raven Press, New York 75: 973<\/p>\n<p><strong>JOLY D.<\/strong>, CARIOU M. L. and LACHAISE D. 1991 Can female polyandry explain within ejaculate sperm dimorphism? In Comparative Spermatology, 20 years after, B. Baccetti (ed.), Serono Symposia Publications from Raven Press, New York 75: 771<\/p>\n<p>LACHAISE D. and <strong>JOLY D.<\/strong> 1991 Sperm and Evolution in Drosophila: morphological &amp; molecular aspects. In Molecular Techniques in Taxonomy, G. Hewitt (ed.) Nato Asi Series Volume, Springer Verlag, Berlin. 0: 201<\/p>\n<p><strong>JOLY D.<\/strong>, CARIOU M.-L, LACHAISE D. and DAVID J.R. 1989 Variation of sperm length and heteromorphism in drosophilid species Genet. Sel. Evol. 21(3): 283<\/p>\n<p>CLOAREC A. and <strong>JOLY D.<\/strong> 1988 Choice of perch by the water stick insect. Behavioural Process 17(2): 131<\/p>\n<p><strong>JOLY D.<\/strong> and CLOAREC A 1988 The influence of light intensity on vertical distribution in Ranatra linearis L. (Heteroptera: Nepidae). J. Ethol. 6(2): 111<\/p>\n<p><strong>JOLY D.<\/strong> and LACHAISE D. 1988 Density of flies and male crowding affect the outcome of interspecific crosses between Drosophila simulans and D. mauritiana and the hybrid progeny number. Experientia 44(7): 0<\/p>\n<p><strong>JOLY, D<\/strong>. 1987 Between species divergence of cyst length distributions in the Drosophila melanogaster species complex. Jpn. J. Genet. 62(3): 257<\/p>\n<p><strong><a href=\"https:\/\/www.egce.universite-paris-saclay.fr\/?p=741\">\u00a0<\/a><\/strong><\/p>\n","protected":false},"excerpt":{"rendered":"<p>\u00a0 Directrice de Recherche CNRS (PhD, HDR) T\u00e8l: 33 1 69 15 49 89 Fax: 33 1 69 82 37 36 M\u00e8l. &#x44;o&#x6d;i&#x6e;&#105;&#x71;&#117;e&#x2e;J&#x6f;&#108;&#x79;&#64;&#x75;&#110;i&#x76;e&#x72;&#115;&#x69;&#116;&#x65;&#x2d;p&#x61;r&#x69;&#115;&#x2d;&#115;a&#x63;l&#x61;&#121;&#x2e;&#102;&#x72; Th\u00e8mes de Recherche Quatre axes th\u00e9matiques ont \u00e9t\u00e9 d\u00e9velopp\u00e9s ces derni\u00e8res ann\u00e9es : 1- le premier axe est centr\u00e9 sur l\u2019\u00e9tude de la s\u00e9lection sexuelle postcopulatoire et des adaptations qui influencent la 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