Bibliographie 2026 partielle
Articles dans des journaux à comité de lecture
- Aubouin, L., Lécrivain, A., Coussy, B., Chabert, S., Guilbaud, L., Henry, M., . . . Geslin, B. (2026). PollAgri: a new dataset on insect floral visitors of crops in France (first version: from 2004 to 2024). Data Brief, 68, 113161. doi:10.1016/j.dib.2026.113161
- Bell, A. J. S., Tchockang, P. T., Pollet, N., Denys, C., Tindo, M., & Missoup, A. D. (2026). Bat diversity and conservation issues in an unexplored forest of the Littoral region of Cameroon (West Central Africa): a morphological and molecular approach. Biodiversity and Conservation, 35(4), 114. doi:10.1007/s10531-026-03287-y
- Blareau, E., Hignard, C., Decencière, B., Requier, F., & Dajoz, I. (2026). Bumblebees are the most efficient pollinators of raspberry and strawberry in urban environments. Ecological Solutions and Evidence, 7(1), e70211 [70215 p.]. doi:10.1002/2688-8319.70211
- Bridoux, E., Desaegher, J., Allier, F., Decourtye, A., Leilde, R., Guigne, E., & Requier, F. (2026). Spillover from flower plantings benefits apple pollination on a small scale. Agriculture Ecosystems & Environment, 395. doi:10.1016/j.agee.2025.109927
- Cens, T., Rousset, M., Menard, C., Chahine, M., Collet, C., Sandoz, J. C., . . . Charnet, P. (2026). Prepulse facilitation of the honeybee CaV4 channel is produced by a shift in channel activation and requires an intact inactivation sequence. J Gen Physiol, 158(2). doi:10.1085/jgp.202413712
- Colin-Duchevet, L., Couto, A., Charnet, P., & Sandoz, J. C. (2026). Behavioral and neurophysiological evaluation of pyrethroid effects on honey bee olfactory perception and learning. Ecotoxicol Environ Saf, 317, 120198. doi:10.1016/j.ecoenv.2026.120198
- Colin-Duchevet, L., Sangely, A., Charnet, P., & Sandoz, J. C. (2026). Cognitive effects of chlorantraniliprole alone or in mixture with a pyrethroid in honey bees. Journal of Hazardous Materials, 507, 141739. doi:10.1016/j.jhazmat.2026.141739
- Courret, C., Montchamp-Moreau, C., Cordaux, R., & Gilbert, C. (2026). An intricate evolutionary connection between meiotic drive and sex. Current Opinion in Insect Science, 73. doi:10.1016/j.cois.2025.101452
- Da Lage, J. L., Bonneau, M., Moreno, C., & Le Rouzic, A. (2026). Is the alpha-amylase paralogue Amyrel dispensable in Drosophila melanogaster? Open Biol, 16(4). doi:10.1098/rsob.250411
- da Silva, I. B., Justino, A. R., Batista, J. E., Valadares, L., Hartfelder, K., & Nascimento, F. S. D. (2026). Sex-specific division of labor in termites is linked to differential brain architecture and foraging gene expression. iScience, 29(4), 115278. doi:10.1016/j.isci.2026.115278
- David, J. R., Denis, B., Francelle, P., Lemaire, A., Das, A., Mohanty, S., . . . Yassin, A. (2026). Phenotypic plasticity as a function of genetic polymorphism: thermal dominance reversal in Drosophila species with contrasting melanism. Evolution, 80(1), 127-142. doi:10.1093/evolut/qpaf225
- Dawson, E. H., Séguret, A., Couto, A., Marty, S., Konstantakopoulou, M., Sandoz, J. C., . . . d’Ettorre, P. (2026). Molecular Tuning and Morphology of the Olfactory System Underlie Nestmate Recognition in a Polymorphic Ant. Mol Ecol, 35(12), e70445. doi:10.1111/mec.70445
- Doeurk, B., Kasai, S., Maquart, P. O., & Boyer, S. (2026). Nationwide larval mosquito sampling in Cambodian households: Vector species in anthropogenic breeding sites. PLoS Negl Trop Dis, 20(5), e0014342. doi:10.1371/journal.pntd.0014342
- Ghanavi, H. R., Touret, A., Bastide, H., Yassin, A., & Stensmyr, M. C. (2026). Chemosensory evolution in the aquatic predator Drosophila enhydrobia. Curr Biol, 36(10), 2581-2592.e2585. doi:10.1016/j.cub.2026.04.024
- Gonçalves, L. R., Tamborlin, L., Luchessi, A. D., Pollet, N., & Marin-Morales, M. A. (2026). Genotoxic effects of association of the biogenic amines cadaverine and putrescine on the Xenopus tropicalis fibroblast cell line. Environ Sci Pollut Res Int, 33(23), 11962-11976. doi:10.1007/s11356-026-38026-x
- Guillemin, L., Sandoz, J. C., Rödel, H. G., & d’Ettorre, P. (2026). Individual differences in behavior: a multi-trait study comparing different ant species. Behavioral Ecology, 37(3), arag025. doi:10.1093/beheco/arag025
- Hodge, E. A., Dell’Aglio, D. D., Couto, A., McMillan, W. O., Farnworth, M. S., & Montgomery, S. H. (2026). Conservation of sensory pathways implies a localized change in the mushroom bodies is associated with cognitive evolution in Heliconius butterflies. Evolution. doi:10.1093/evolut/qpag005
- Legendre, L., Père, S., Rebaudo, F., Espinasa, L., Attia, J., & Rétaux, S. (2026). Water parameters and hydrodynamics in rivers and caves hosting Astyanax mexicanus populations reveal macro-, meso- and microhabitat characteristics. Ecology and evolution, 16(1), e72970 [72920 p.]. doi:10.1002/ece3.72970
- Matrougui, I., Oukkal, S., Musset, K., Orieux, E., Drezen, J. M., Charlat, S., & Gilbert, C. (2026). Horizontal transfers of polydnavirus segments extend the known range of parasitoid attacks to stick insects and orthopterans. Mol Biol Evol, 43(6). doi:10.1093/molbev/msag145
- Matrougui, I., Savisaar, R., Dias, C., Calatayud, P. A., Malusi, P., Muller, H., . . . Gilbert, C. (2026). Exploring the Determinants of Polydnavirus Chromosomal Integration Across Host-Parasitoid Wasp Systems. Genome Biol Evol, 18(7). doi:10.1093/gbe/evag150
- Merle, M., Gueddes, T., Gueye, M. M., Foughar, M., Jiogue-Lacdo, J., Maquart, P. O., . . . Filée, J. (2026). The hidden sweet tooth of the black soldier fly (Hermetia illucens). J Exp Biol, 229(8). doi:10.1242/jeb.252160
- Montoliu-Nerin, M., Strunov, A., Heyworth, E., Schneider, D. I., Thoma, J., Hua-Van, A., . . . Miller, W. J. (2026). Evolutionary persistence of a highly prevalent multicopy mitochondrial-derived nuclear insertion (Mega-NUMT) in Neotropical Drosophila flies. Mol Biol Evol. doi:10.1093/molbev/msag227
- Narassimprakash, H., Haccard, O., Li, Z., Pollet, N., & Marheineke, K. (2026). Ploidy-dependent modulation of DNA replication kinetics in Xenopus. Febs j. doi:10.1111/febs.70703
- Petit, A. J. R., Genissel, A., & Le Rouzic, A. (2026). Gene expression plasticity is associated with regulatory complexity but not with specific network motifs. Genetics. doi:10.1093/genetics/iyag009
- Pigeault, R., Dussert, Y., Jorge, R., Ulve, T., Panza, M., Raimond, M., . . . Cordaux, R. (2026). Within-Host Environmental Heterogeneity Is Associated With Phenotypic but Not Genomic Diversity in Wolbachia Endosymbionts. Environmental Microbiology Reports, 18(1), e70286. doi:10.1111/1758-2229.70286
- Policarpo, M., Fumey, J., Milhes, M., Bonillo, C., Campos, A., Hidalgo, M., . . . Casane, D. (2026). Evidence of genome-wide relaxed selection on mildly deleterious mutations in an ancient subterranean catfish. Evolution. doi:10.1093/evolut/qpag158
- Presgraves, D. C., Dawe, R. K., Dyer, K. A., Fishman, L., Bhide, S. A., Bradshaw, S. L., . . . Unckless, R. L. (2026). The evolutionary genomics of meiotic drive. Molecular Biology and Evolution, 43(2), msag020. doi:10.1093/molbev/msag020
- Riva, C., Gachoki, S., Adjlane, N., Bevk, D., Haider, Y., Hatjina, F., . . . Requier, F. (2026). Climate impacts apple pollination, yield and economic outcomes of farmers. Sci Total Environ, 1029, 181767. doi:10.1016/j.scitotenv.2026.181767
- Siegers, J. Y., Auerswald, H., Maquart, P. O., Szentiványi, T., Guillebaud, J., Hoem, T., . . . Karlsson, E. A. (2026). Discovery of a novel coltivirus in a newly identified Bat Bug Species (Heteroptera: Cimicidae) in Cambodia. PLoS Negl Trop Dis, 20(6), e0014372. doi:10.1371/journal.pntd.0014372
- Valadares, L., Rödel, H. G., d’Ettorre, P., & Sandoz, J. C. (2026). Neural investment patterns reflect task specialization in the leaf-cutting ant Acromyrmex subterraneus. iScience, 29(2), 114820. doi:10.1016/j.isci.2026.114820
- Verhulst, E. C., & Cordaux, R. (2026). Insect Sex Determination: A Rapidly Shifting Evolutionary Landscape. Curr Opin Insect Sci, 101549. doi:10.1016/j.cois.2026.101549
- Wang, M., Grimm, V., Requier, F., Groeneveld, J., Bargen, H., Knaebe, S., & Odemer, R. (2026). Pesticide impacts on honey bee foraging behaviour : a field-relevant scoping review. Environmental Sciences Europe, 38(1), 50 [13 p.]. doi:10.1186/s12302-025-01325-0
- Yean, S., Krib, D., Chea, R., Sum, S., Ren, T., San, S., . . . Boyer, S. (2026). Tick diversity and tick-borne pathogens in livestock and companion animals in Cambodia: A narrative review and new field data (2022-2023). Vet Parasitol Reg Stud Reports, 67, 101407. doi:10.1016/j.vprsr.2025.101407
- Yean, S., Maquart, P. O., Delvallez, G., & Boyer, S. (2026). First evidence of human borreliosis local transmission in Cambodia. Int J Infect Dis, 163, 108208. doi:10.1016/j.ijid.2025.108208
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https://www.egce.universite-paris-saclay.fr/wp-content/plugins/zotpress/
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Aubouin, L., Lécrivain, A., Coussy, B., Chabert, S., Guilbaud, L., Henry, M., Morison, N., Vaissière, B., Rollin, O., Proesmans, W., Blareau, E., Dajoz, I., Requier, F., Auffret, M.-S., Breton, E., Cadet, C., Dellaica, I., Dupuy, C., Eisenberg, A., … Geslin, B. (2026). PollAgri: a new dataset on insect floral visitors of crops in France (first version: from 2004 to 2024). Data in Brief, 113161. https://doi.org/10.1016/j.dib.2026.113161
Bell-Sakyi, L., Koivisto, E., Strunov, A., Hartley, C., Khoo, J. J., Chrostek, E., Hua-Van, A., Makepeace, B. L., & Miller, W. J. (2026). New cell lines derived from larvae of the neotropical fruit fly Drosophila willistoni persistently infected with Wolbachia. Fly, 20(1), 2690767. https://doi.org/10.1080/19336934.2026.2690767
Blareau, E., Hignard, C., Decencière, B., Requier, F., & Dajoz, I. (2026). Bumblebees are the most efficient pollinators of raspberry and strawberry in urban environments. Ecological Solutions and Evidence, 7(1), e70211. https://doi.org/10.1002/2688-8319.70211
Blareau, E., Hignard, C., Decencière, B., Requier, F., & Dajoz, I. (2026). Bumblebees are the most efficient pollinators of raspberry and strawberry in urban environments. Ecological Solutions and Evidence, 7(1), e70211. https://doi.org/10.1002/2688-8319.70211
Bridoux, E., Desaegher, J., Allier, F., Decourtye, A., Leilde, R., Guigne, E., & Requier, F. (2026). Spillover from flower plantings benefits apple pollination on a small scale. Agriculture, Ecosystems & Environment, 395, 109927. https://doi.org/10.1016/j.agee.2025.109927
Buydens, L., Keller, A., Parreño, M. A., Werle, S., Filipiak, M., Leroy, C., Requier, F., Leonhardt, S. D., Piot, N., & Meeus, I. (2026). Bee pathogen sharing and prevalence are linked with flower sharing and taxonomic distance within the bee community. Communications Biology. https://doi.org/10.1038/s42003-026-10755-2
Da Lage J.-L., Bonneau M., Moreno C., Le Rouzic A. (2026). Is the alpha-amylase paralogue Amyrel dispensable in Drosophila melanogaster? Open Biology, 16, 250411. https://doi.org/https://doi.org/10.1098/rsob.250411
David, J. R., Denis, B., Francelle, P., Lemaire, A., Das, A., Mohanty, S., Gibert, P., & Yassin, A. (2026). Phenotypic plasticity as a function of genetic polymorphism: thermal dominance reversal in Drosophila species with contrasting melanism. Evolution, 80(1), 127–142. https://doi.org/10.1093/evolut/qpaf225
Dawson, E. H., Séguret, A., Couto, A., Marty, S., Konstantakopoulou, M., Sandoz, J., Montgomery, S. H., & d’Ettorre, P. (2026). Molecular Tuning and Morphology of the Olfactory System Underlie Nestmate Recognition in a Polymorphic Ant. Molecular Ecology, 35(12), e70445. https://doi.org/10.1111/mec.70445
European Commission. Directorate-General for Environment, Michez, D., Boustani, M., Sentil, A., Benrezkallah, J., de Manincor, N., Wood, T. J., Álvarez Fidalgo, P., Aubert, M., Bellotto, V., Biella, P., Bogusch, P., Bosch, J., Brau, T., Browne, K., Carion, F., Castro, L., Cederberg, B., Clay, J., … Ghisbain, G. (2026). European red list of bees. Publications Office of the European Union. https://data.europa.eu/doi/10.2779/521877
European Commission. Directorate-General for Environment, Michez, D., Boustani, M., Sentil, A., Benrezkallah, J., de Manincor, N., Wood, T. J., Álvarez Fidalgo, P., Aubert, M., Bellotto, V., Biella, P., Bogusch, P., Bosch, J., Brau, T., Browne, K., Carion, F., Castro, L., Cederberg, B., Clay, J., … Ghisbain, G. (2026). European red list of bees. Publications Office of the European Union. https://data.europa.eu/doi/10.2779/521877
Gachoki, S., Riva, C., Bevk, D., Haider, Y., Adjlane, N., Manthos, I., Stipešević, B., Puškadija, Z., Kovačić, M., Charistos, L., Hatjina, F., & Requier, F. (2026). Climate change reduces pollination services and sunflower yields across Europe and Northern Africa. Basic and Applied Ecology, 93, 85–94. https://doi.org/10.1016/j.baae.2026.05.005
Gonçalves, L. R., Tamborlin, L., Luchessi, A. D., Pollet, N., & Marin-Morales, M. A. (2026). Genotoxic effects of association of the biogenic amines cadaverine and putrescine on the Xenopus tropicalis fibroblast cell line. Environmental Science and Pollution Research International, 33(23), 11962–11976. https://doi.org/10.1007/s11356-026-38026-x
Lammers, D., Requier, F., Focks, A., & Groeneveld, J. (2026). Food for thought: could the queen’s egg-laying rate in the BEEHAVE honey bee model emerge from the effects of brood pheromones, weather conditions, and pollen availability? Individual-Based Ecology, 2, e185721. https://doi.org/10.3897/ibe.2.185721
Narassimprakash, H., Haccard, O., Li, Z., Pollet, N., & Marheineke, K. (2026). Ploidy-dependent modulation of DNA replication kinetics in Xenopus. The FEBS Journal. https://doi.org/10.1111/febs.70703
Riva, C., Gachoki, S., Adjlane, N., Bevk, D., Haider, Y., Hatjina, F., Kolega, Š., Kovačić, M., Manthos, I., Puškadija, Z., Sotiropoulos, T., Stipešević, B., & Requier, F. (2026). Climate impacts apple pollination, yield and economic outcomes of farmers. Science of The Total Environment, 1029, 181767. https://doi.org/10.1016/j.scitotenv.2026.181767
Riva, C., Gachoki, S., Adjlane, N., Bevk, D., Haider, Y., Hatjina, F., Kolega, Š., Kovačić, M., Manthos, I., Puškadija, Z., Sotiropoulos, T., Stipešević, B., & Requier, F. (2026). Climate impacts apple pollination, yield and economic outcomes of farmers. Science of The Total Environment, 1029, 181767. https://doi.org/10.1016/j.scitotenv.2026.181767
Sibaja Leyton, M., Antúnez, K., Nates-Parra, G., Da Silva, F. O., Porrini, M., Velarde, R. A., Xolalpa-Aroche, A., Cardenas, T., Correa-Benítez, A., Freitas, B. M., Haag, K. L., Puerto, F. L., Müller, P. F., Parra-H, A., Castro, E. P., De Melo E Silva Neto, C., & Requier, F. (2026). Colony losses of stingless bees in Latin America increase in agricultural areas, but decrease in forested areas. Basic and Applied Ecology, S1439179126000514. https://doi.org/10.1016/j.baae.2026.07.003
Sock Bell, A. J., Tchockang, P. T., Pollet, N., Denys, C., Tindo, M., & Missoup, A. D. (2026). Bat diversity and conservation issues in an unexplored forest of the Littoral region of Cameroon (West Central Africa): a morphological and molecular approach. Biodiversity and Conservation, 35(4), 114. https://doi.org/10.1007/s10531-026-03287-y
Wang, M., Grimm, V., Requier, F., Groeneveld, J., Bargen, H., Knaebe, S., & Odemer, R. (2026). Pesticide impacts on honey bee foraging behaviour: a field-relevant scoping review. Environmental Sciences Europe, 38(1), 50. https://doi.org/10.1186/s12302-025-01325-0
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