Publications

Le Centre de Biologie pour la Gestion des Populations a pour vocation de comprendre les mécanismes qui régissent l’évolution de populations d’organismes importants pour l’agronomie, les forêts, la santé humaine ou la conservation de la biodiversité.

Lotfalizadeh H., Karimpour Y., Delvare G. & Rasplus J.-Y. 2020. Chalcidoidea (Hymenoptera) obtained from common reed, Phragmites australis (Cav.) Trin. ex Steud. (Poaceae) in Iran with new records and descriptions of two new species. European Journal of Taxonomy 710 : 1-35. (https://dx.doi.org/10.5852/ejt.2020.710)
Lotfalizadeh H., Rasplus J.-Y., Cristofaro M. & Marini F. 2020. Tetramesa amica and its parasitoid Eurytoma amicophaga (Hymenoptera, Eurytomidae): two new species associated with medusahead, Taeniatherum caput-medusae (Poaceae). ZooKeys 1005 : 133-149. (https://dx.doi.org/10.3897/zookeys.1005.56353)
Madrières S., Tatard C., Murri S., Vulin J., Galan M., Piry S., Pulido C., Loiseau A., Artige E., Benoit L., Leménager N., Lakhdar L., Charbonnel N., Marianneau P. & Castel G. 2020. How bank vole-PUUV interactions influence the eco-evolutionary processes driving nephropathia epidemica epidemiology—an experimental and genomic approach. Pathogens 9 : 789. (https://dx.doi.org/10.3390/pathogens9100789)
Maeno K.O., Piou C. & Ghaout S. 2020. The desert locust, Schistocerca gregaria, plastically manipulates egg size by regulating both egg numbers and production rate according to population density. Journal of Insect Physiology 122 : 104020. (https://dx.doi.org/10.1016/j.jinsphys.2020.104020)
Manzano-Marin A. 2020. No evidence for Wolbachia as a nutritional co-obligate endosymbiont in the aphid Pentalonia nigronervosa. Microbiome 8 : 72. (https://dx.doi.org/0.1186/s40168-020-00865-2)
Manzano-Marin A., Coeur d'acier A., Clamens A.-L., Orvain C., Cruaud C., Barbe V. & Jousselin E. 2020. Serial horizontal transfer of vitamin-biosynthetic genes enables the establishment of new nutritional symbionts in aphids' di-symbiotic systems. The ISME Journal 14 : 259-273. (https://dx.doi.org/10.1038/s41396-019-0533-6)
Marrao R., Frago E., Pereira J.A. & Tena A. 2020. An autoparasitoid wasp, inferior at resource exploitation, outcompetes primary parasitoids by using competitor females to produce males. Ecological Entomology 45 : 727-740. (https://dx.doi.org/10.1111/een.12846)
Mateille T., Tavoillot J., Goillon C., Pares L., Lefèvre A., Védie H., Navarrete M., Palloix A., Sage-Palloix A.-M., Castagnone-Sereno P., Fazari A., Marteu N. & Djian-Caporalino C. 2020. Competitive interactions in plant-parasitic nematode communities affecting organic vegetable cropping systems. Crop Protection 135 : 105206. (https://dx.doi.org/10.1016/j.cropro.2020.105206)
Matějková T., Hájková P., Stopková R., Stanko M., Martin J.-F., Kreisinger J. & Stopka P. 2020. Oral and vaginal microbiota in selected field mice of the genus Apodemus: a wild population study. Scientific Reports 10 : 13246. (https://dx.doi.org/10.1038/s41598-020-70249-x)
Mekonnen B., Haran J., Copeland R.S., Pirk C.W.W., Yusuf A.A. & Deletre E. 2020. First report of a gall midge as a parasitoid of weaver ants. Entomologia Generalis 40 : 437-441. (https://dx.doi.org/10.1127/entomologia/2020/0908)