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  • Marie Buysse
Marie Buysse

Marie Buysse
Université de Montpellier | UM1 · Unité mixte de recherche Maladies Infectieuses et Vecteurs : Écologie, Génétique, Évolution et Contrôle (MIVEGEC)

Seeking a post-doc position abroad - a new challenge

About

29
Publications
3,385
Reads
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392
Citations
Citations since 2017
29 Research Items
392 Citations
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2017201820192020202120222023020406080100120
2017201820192020202120222023020406080100120
2017201820192020202120222023020406080100120
Additional affiliations
October 2019 - April 2020
Université de Montpellier
Position
  • PhD Student
Description
  • Studying symbiotic interactions between ticks and their bacterial, in particular those suspected of being involved in nutritional benefits and defenses against natural enemies
April 2019 - April 2019
MIVEGEC, Montpellier
Position
  • Technician
Description
  • Molecular analysis on tick samples and assistance on a field work in a seabird colony (France)
November 2018 - March 2019
MIVEGEC, Montpellier
Position
  • Engineer
Description
  • Genetic typing and quantification of endosymbionts in ticks from French Guiana (including a field work in French Guiana)
Education
September 2017 - June 2018
Claude Bernard University Lyon 1
Field of study
  • Evolutionary biology and Medecine
September 2015 - July 2017
Université de Montpellier
Field of study
  • Emergence of infectious and parasitic diseases
September 2014 - July 2015
Université de Montpellier
Field of study
  • Biology and Ecology

Publications

Publications (29)
Article
Full-text available
Background Ticks and tick-borne pathogens significantly impact both human and animal health and therefore are of major concern to the scientific community. Knowledge of tick-borne pathogens is crucial for prescription of mitigation measures. In Africa, much research on ticks has focused on domestic animals. Little is known about ticks and their pat...
Article
Full-text available
Background Trypanosomes are protozoan parasites of vertebrates that are of medical and veterinary concern. A variety of blood-feeding invertebrates have been identified as vectors, but the role of ticks in trypanosome transmission remains unclear. Methods In this study, we undertook extensive molecular screening for the presence and genetic divers...
Preprint
Full-text available
A bstract The Coxiellaceae family is composed of five genera showing lifestyles ranging from free-living to symbiosis. Among them, Coxiella burnetii is a well-known pathogen causing Q fever in humans. This bacterium presents both intracellular (parasitic) and environmental (resistant) forms. Recently, several environmental Coxiella genomes have bee...
Article
We report a case of unusual human anaplasmosis in the Amazon rainforest of French Guiana. Molecular typing demonstrated that the pathogen is a novel Anaplasma species, distinct to all known species, and more genetically related to recently described Anaplasma spp. causing infections in rainforest wild fauna of Brazil.
Article
Full-text available
Symbiosis with vitamin-provisioning microbes is essential for the nutrition of animals with some specialized feeding habits. While coevolution favors the interdependence between symbiotic partners, their associations are not necessarily stable: Recently acquired symbionts can replace ancestral symbionts. In this study, we demonstrate successful rep...
Article
Full-text available
The symbiont-associated (SA) environmental package is a new extension to the minimum information about any (x) sequence (MIxS) standards, established by the Parasite Microbiome Project (PMP) consortium, in collaboration with the Genomics Standard Consortium. The SA was built upon the host-associated MIxS standard, but reflects the nestedness of sym...
Article
Full-text available
Many animals are dependent on microbial partners that provide essential nutrients lacking from their diet. Ticks, whose diet consists exclusively on vertebrate blood, rely on maternally inherited bacterial symbionts to supply B vitamins. While previously studied tick species consistently harbor a single lineage of those nutritional symbionts, we ev...
Preprint
Full-text available
Many animals are dependent on microbial partners that provide essential nutrients lacking from their diet. Ticks, whose diet consists exclusively on vertebrate blood, rely on maternally inherited bacterial symbionts to supply B vitamins. While previously studied tick species consistently harbor a single lineage of those nutritional symbionts, we ev...
Article
Jia et al. (Jia et al., 2020) reported major discoveries on genetic basis of hematophagy and vector capacities in ticks. Our re-examination of the tick metagenomic datasets shows that nutritional endosymbionts required for hematophagy were also widely present. They were misidentified as tick-borne pathogens, indicating that the risk of infection as...
Preprint
Full-text available
Symbiosis with vitamin-provisioning microbes is essential for the nutrition of animals with specialized feeding habits. While coevolution stabilizes the interactions between symbiotic partners, their associations are not necessarily permanent: Recently acquired symbionts can replace ancestral symbionts. In this study, we demonstrate successful repl...
Article
Full-text available
Q fever is a widespread zoonotic disease caused by the intracellular bacterium Coxiella burnetii . While transmission is primarily but not exclusively airborne, ticks are usually thought to act as vectors on the basis of early microscopy studies. However, recent observations revealed that endosymbionts of ticks have been commonly misidentified as C...
Article
Full-text available
Lyme disease (LD) and relapsing fevers (RF) are vector-borne diseases caused by bacteria of the Borrelia genus. Here, we report on the widespread infection by a non-described Borrelia species in passerine-associated ticks in tropical rainforests of French Guiana, South America. This novel Borrelia species is common in two tick species, Amblyomma lo...
Preprint
Full-text available
Assays used to evaluate the transmission-blocking activity of antimalarial drugs are largely focused on their potential to inhibit or reduce the infectivity of gametocytes, the blood stages of the parasite that are responsible for the onward transmission to the mosquito vector. For this purpose, the drug is administered concomitantly with the gamet...
Article
Full-text available
Rickettsia are obligate intracellular bacteria often associated with ticks and best known for causing human diseases (rickettsiosis), including typhus fever and sporadic cases of serious infection. In this study, we conducted a large survey of ticks in French Guiana to understand the overall diversity of Rickettsia in this remote area largely cover...
Article
Full-text available
Mutualistic interactions with microbes have facilitated the adaptation of major eukaryotic lineages to restricted diet niches. Hence, ticks with their strictly blood‐feeding lifestyle are associated with intracellular bacterial symbionts through an essential B vitamin supplementation. In this study, examination of the whole bacterial diversity in 2...
Article
Rickettsia are obligate intracellular bacteria often reported from hard ticks but more rarely from soft ticks. In this study, we detected in Northern Africa two putatively novel Rickettsia species in soft tick species of the Ornithodoros erraticus complex: Ornithodoros occidentalis from Morocco, Ornithodoros erraticus from Algeria and Ornithodoros...
Article
Assays used to evaluate the transmission-blocking activity of antimalarial drugs are largely focused on their potential to inhibit or reduce the infectivity of gametocytes, the blood stages of the parasite that are responsible for the onward transmission to the mosquito vector. For this purpose, the drug is administered concomitantly with the gamet...
Article
Full-text available
Background Ticks are obligate blood feeders transmitting major pathogens worldwide. Over the past few years, considerable research efforts have focused on the diversity, distribution and impact of gut and intracellular bacterial symbionts on tick development and tick-borne pathogen transmission. The study of this internal microbiome requires the us...
Article
Ticks are commonly infected by Coxiella-like endosymbionts (Coxiella-LE) which are thought to supply missing B vitamin nutrients required for blood digestion.While this nutritional symbiosis is essential for the survival and reproduction of infected tick species, our knowledge of where Coxiella-LE is localized in tick tissues is partial at best sin...
Poster
Full-text available
Macroorganisms are typically colonized by an aggregate of microorganisms that resides within their body. In arthropods, microorganisms use a large panel of lifestyle strategies to spread and persist within host populations: while some are pathogens, moving from through infectious (horizontal) transmission, some others, at the opposite of the contin...
Article
Full-text available
Candidatus Midichloria mitochondrii is a maternally inherited bacterium of ticks with a unique intra-mitochondrial lifestyle. Here, we investigate on the evolutionary history of these associations and the degree of Midichloria –tick specificity. While previous surveys used the 16S rRNA gene as an exclusive molecular marker, we rather developed a mu...
Article
Mutualistic interactions with microbes have facilitated the radiation of major eukaryotic lineages [1, 2]. Microbes can notably provide biochemical abilities, allowing eukaryotes to adapt to novel habitats or to specialize on particular feeding niches [2-4]. To investigate the importance of mutualisms for the exclusive blood feeding habits of ticks...

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