Kremer, Natacha, 1982-....
Natacha Kremer researcher ORCID ID = 0000-0001-5678-9416
VIAF ID: 212189995 ( Personal )
Permalink: http://viaf.org/viaf/212189995
Preferred Forms
4xx's: Alternate Name Forms (1)
Works
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Animals in a bacterial world, a new imperative for the life sciences |
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Biology, ecology and evolution of the MtrBTN2 transmissible cancer of Mytilus sp. mussels. |
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Characterization and diversity of mechanisms of mortality syndrome affecting juvenile Crassostrea gigas. |
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The chemistry of negotiation: rhythmic, glycan-driven acidification in a symbiotic conversation |
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Chromosomal scale assembly of parasitic wasp genome reveals symbiotic virus colonization |
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Development of a PCR-RFLP assay to identify among field-collected larvae |
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Do variable compensatory mechanisms explain the polymorphism of the dependence phenotype in the Asobara tabida-wolbachia association? |
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Does a parthenogenesis-inducing Wolbachia induce vestigial cytoplasmic incompatibility? |
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The dual nature of haemocyanin in the establishment and persistence of the squid-vibrio symbiosis. |
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Écologie et évolution des interactions tripartites entre Culex pipiens, Wolbachia et les Densovirus |
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Évolution de la dépendance dans les symbioses à Wolbachia : étude du genre Asobara (Hymenoptera : braconidae) |
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The evolution of mechanism underlying the allocation of resources and consequences on the shape of trade-offs in multicellular organisms |
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Evolutionary ecology of the host / sources of heterogeneity of vectors' infection. |
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The first engagement of partners in the Euprymna scolopes-Vibrio fischeri symbiosis is a two-step process initiated by a few environmental symbiont cells |
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La flexibilité des symbioses entre bivalves et bactéries chimiotrophes : mécanismes, régulation et résilience |
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Flexibility of the symbiosis between Bivalves and chemosynthetic bacteria : mechanism, control and resilience. |
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Impact of Wolbachia on oxidative stress sensitivity in the parasitic wasp Asobara japonica |
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Influence of oxidative homeostasis on bacterial density and cost of infection in Drosophila-Wolbachia symbioses. |
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Influence of Wolbachia on host gene expression in an obligatory symbiosis. |
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Involvement of a host Cathepsin L in symbiont-induced cell death. |
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Microbial impacts on insect evolutionary diversification: from patterns to mechanisms |
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A model symbiosis reveals a role for sheathed-flagellum rotation in the release of immunogenic lipopolysaccharide |
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Modulation of symbiont lipid A signaling by host alkaline phosphatases in the squid-vibrio symbiosis |
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The oxidative environment: a mediator of interspecies communication that drives symbiosis evolution |
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SNP calling from RNA-seq data without a reference genome: identification, quantification, differential analysis and impact on the protein sequence |
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Survie intracellulaire, effets cytopathiques et virulence de Vibrio tasmaniensis LGP32, pathogène de l'huître Crassostrea gigas |
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Unicoloniality, recognition and genetic differentiation in a native Formica ant. |
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Wolbachia interferes with ferritin expression and iron metabolism in insects |
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