Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
GÓMEZ-MORACHO, TAMARA
MASIDE, XULIO
MARTÍN-HERNÁNDEZ, RAQUEL
HIGES, MARIANO
and
BARTOLOMÉ, CAROLINA
2014.
High levels of genetic diversity inNosema ceranaewithinApis melliferacolonies.
Parasitology,
Vol. 141,
Issue. 4,
p.
475.
Stankus, Tony
2014.
Reviews of Science for Science Librarians: An Update on Honeybee Colony Collapse Disorder.
Science & Technology Libraries,
Vol. 33,
Issue. 3,
p.
228.
Van der Zee, Romee
Gómez‐Moracho, Tamara
Pisa, Lennard
Sagastume, Soledad
García‐Palencia, Pilar
Maside, Xulio
Bartolomé, Carolina
Martín‐Hernández, Raquel
and
Higes, Mariano
2014.
Virulence and polar tube protein genetic diversity of Nosema ceranae (Microsporidia) field isolates from Northern and Southern Europe in honeybees (Apis mellifera iberiensis).
Environmental Microbiology Reports,
Vol. 6,
Issue. 4,
p.
401.
Pelin, Adrian
Selman, Mohammed
Aris‐Brosou, Stéphane
Farinelli, Laurent
and
Corradi, Nicolas
2015.
Genome analyses suggest the presence of polyploidy and recent human‐driven expansions in eight global populations of the honeybee pathogen Nosema ceranae.
Environmental Microbiology,
Vol. 17,
Issue. 11,
p.
4443.
Faure, Denis
Bonin, Patricia
and
Duran, Robert
2015.
Environmental microbiology as a mosaic of explored ecosystems and issues.
Environmental Science and Pollution Research,
Vol. 22,
Issue. 18,
p.
13577.
Peyretaillade, E
Boucher, D
Parisot, N
Gasc, C
Butler, R
Pombert, J-F
Lerat, E
and
Peyret, P
2015.
Exploiting the architecture and the features of the microsporidian genomes to investigate diversity and impact of these parasites on ecosystems.
Heredity,
Vol. 114,
Issue. 5,
p.
441.
Gómez‐Moracho, Tamara
Bartolomé, Carolina
Martín‐Hernández, Raquel
Higes, Mariano
and
Maside, Xulio
2015.
Evidence for weak genetic recombination at the PTP2 locus of Nosema ceranae.
Environmental Microbiology,
Vol. 17,
Issue. 4,
p.
1300.
Maside, Xulio
Gómez-Moracho, Tamara
Jara, Laura
Martín-Hernández, Raquel
De la Rúa, Pilar
Higes, Mariano
Bartolomé, Carolina
and
Corradi, Nicolas
2015.
Population Genetics of Nosema apis and Nosema ceranae: One Host (Apis mellifera) and Two Different Histories.
PLOS ONE,
Vol. 10,
Issue. 12,
p.
e0145609.
Gómez-Moracho, T.
Bartolomé, C.
Bello, X.
Martín-Hernández, R.
Higes, M.
and
Maside, X.
2015.
Recent worldwide expansion of Nosema ceranae (Microsporidia) in Apis mellifera populations inferred from multilocus patterns of genetic variation.
Infection, Genetics and Evolution,
Vol. 31,
Issue. ,
p.
87.
Rangel, Juliana
Baum, Kristen
Rubink, William L.
Coulson, Robert N.
Johnston, J. Spencer
and
Traver, Brenna E.
2016.
Prevalence of Nosema species in a feral honey bee population: a 20-year survey.
Apidologie,
Vol. 47,
Issue. 4,
p.
561.
BATEMAN, K. S.
WIREDU-BOAKYE, D.
KERR, R.
WILLIAMS, B. A. P.
and
STENTIFORD, G. D.
2016.
Single and multi-gene phylogeny ofHepatospora(Microsporidia) – a generalist pathogen of farmed and wild crustacean hosts.
Parasitology,
Vol. 143,
Issue. 8,
p.
971.
Wan, Qiang
Xiao, Lihua
Zhang, Xichen
Li, Yijing
Lu, Yixin
Song, Mingxin
Li, Wei
and
Escalante, Ananias A.
2016.
Clonal Evolution of Enterocytozoon bieneusi Populations in Swine and Genetic Differentiation in Subpopulations between Isolates from Swine and Humans.
PLOS Neglected Tropical Diseases,
Vol. 10,
Issue. 8,
p.
e0004966.
Sagastume, Soledad
Martín-Hernández, Raquel
Higes, Mariano
and
Henriques-Gil, Nuno
2016.
Genotype diversity in the honey bee parasite Nosema ceranae: multi-strain isolates, cryptic sex or both?.
BMC Evolutionary Biology,
Vol. 16,
Issue. 1,
Ansari, Mohammad Javed
Al-Ghamdi, Ahmad
Nuru, Adgaba
Khan, Khalid Ali
and
Alattal, Yehya
2017.
Geographical distribution and molecular detection of Nosema ceranae from indigenous honey bees of Saudi Arabia.
Saudi Journal of Biological Sciences,
Vol. 24,
Issue. 5,
p.
983.
Branchiccela, B.
Arredondo, D.
Higes, M.
Invernizzi, C.
Martín-Hernández, R.
Tomasco, I.
Zunino, P.
and
Antúnez, K.
2017.
Characterization of Nosema ceranae Genetic Variants from Different Geographic Origins.
Microbial Ecology,
Vol. 73,
Issue. 4,
p.
978.
Odnosum, H. V.
Yefimenko, Т. М.
and
Soroka, N. М.
2017.
Dynamics of bees extinction under condition of their invasion with different doses of spores of Nosema apis and Nosema ceranae.
The Animal Biology,
Vol. 19,
Issue. 2,
p.
87.
Paris, Laurianne
El Alaoui, Hicham
Delbac, Frédéric
and
Diogon, Marie
2018.
Effects of the gut parasite Nosema ceranae on honey bee physiology and behavior.
Current Opinion in Insect Science,
Vol. 26,
Issue. ,
p.
149.
Martín‐Hernández, Raquel
Bartolomé, Carolina
Chejanovsky, Nor
Le Conte, Yves
Dalmon, Anne
Dussaubat, Claudia
García‐Palencia, Pilar
Meana, Aranzazu
Pinto, M. Alice
Soroker, Victoria
and
Higes, Mariano
2018.
Nosema ceranae in Apis mellifera: a 12 years postdetection perspective.
Environmental Microbiology,
Vol. 20,
Issue. 4,
p.
1302.
Peters, Melissa J.
Suwannapong, Guntima
Pelin, Adrian
and
Corradi, Nicolas
2019.
Genetic and Genome Analyses Reveal Genetically Distinct Populations of the Bee Pathogen Nosema ceranae from Thailand.
Microbial Ecology,
Vol. 77,
Issue. 4,
p.
877.
Hosaka, Yuki
Kato, Yuto
Hayashi, Shinya
Nakai, Madoka
Barribeau, Seth M.
and
Inoue, Maki N.
2021.
The effects of Nosema ceranae (Microspora: Nosematidae) isolated from wild Apis cerana japonica (Hymenoptera: Apidae) on Apis mellifera.
Applied Entomology and Zoology,
Vol. 56,
Issue. 3,
p.
311.