Accueil
Sarah E Zanders
Sarah E Zanders
Affiliations
Stowers Institute for Medical Research, Kansas City, MO 64110, USA; Department of Molecular and Integrative Physiology, University of Kansas Medical Center, Kansas City, KS 66160, USA. Electronic address: sez@stowers.edu.
Publications (14)
Meiotic drive.
Current biology : CB
Avec:
Ananya Nidamangala Srinivasa
,
What can we learn from selfish loci that break Mendel's law?
PLoS biology
Avec:
Genome-wide quantification of contributions to sexual fitness identifies genes required for spore viability and health in fission yeast.
PLoS genetics
Avec:
R Blake Billmyre
,
Michael T Eickbush
,
Caroline J Craig
,
Jeffrey J Lange
,
Christopher Wood
,
Rachel M Helston
,
S. pombe wtf drivers use dual transcriptional regulation and selective protein exclusion from spores to cause meiotic drive.
PLoS genetics
Avec:
Nicole L Nuckolls
,
Ananya Nidamangala Srinivasa
,
Anthony C Mok
,
Rachel M Helston
,
María Angélica Bravo Núñez
,
Jeffrey J Lange
,
Todd J Gallagher
,
Chris W Seidel
,
Diverse mating phenotypes impact the spread of
eLife
Avec:
José Fabricio López Hernández
,
Rachel M Helston
,
Jeffrey J Lange
,
R Blake Billmyre
,
Samantha H Schaffner
,
Michael T Eickbush
,
Scott McCroskey
,
The
eLife
Avec:
Nicole L Nuckolls
,
Anthony C Mok
,
Jeffrey J Lange
,
Kexi Yi
,
Tejbir S Kandola
,
Andrew M Hunn
,
Scott McCroskey
,
Julia L Snyder
,
María Angélica Bravo Núñez
,
Melainia McClain
,
Sean A McKinney
,
Christopher Wood
,
Randal Halfmann
,
Atypical meiosis can be adaptive in outcrossed
eLife
Avec:
María Angélica Bravo Núñez
,
Ibrahim M Sabbarini
,
Lauren E Eide
,
Robert L Unckless
,
The
eLife
Avec:
Mickaël De Carvalho
,
Guo-Song Jia
,
Ananya Nidamangala Srinivasa
,
R Blake Billmyre
,
Yan-Hui Xu
,
Jeffrey J Lange
,
Ibrahim M Sabbarini
,
Li-Lin Du
,
Dramatically diverse Schizosaccharomyces pombe wtf meiotic drivers all display high gamete-killing efficiency.
PLoS genetics
Avec:
María Angélica Bravo Núñez
,
Ibrahim M Sabbarini
,
Michael T Eickbush
,
Yue Liang
,
Jeffrey J Lange
,
Aubrey M Kent
,
Fertility Costs of Meiotic Drivers.
Current biology : CB
Avec:
Robert L Unckless
Killer Meiotic Drive and Dynamic Evolution of the wtf Gene Family.
Molecular biology and evolution
Avec:
Michael T Eickbush
,
Janet M Young
,
Gene conversion generates evolutionary novelty that fuels genetic conflicts.
Current opinion in genetics & development
Avec:
Matthew D Daugherty
,
Saturation transposon mutagenesis enables genome-wide identification of genes required for growth and fluconazole resistance in the human fungal pathogen
bioRxiv : the preprint server for biology
Avec:
R Blake Billmyre
,
Caroline J Craig
,
Joshua Lyon
,
Claire Reichardt
,
Michael T Eickbush
,
Modeling the Evolution of S. pombe Populations with Multiple Killer Meiotic Drivers.
G3 (Bethesda, Md.)
Avec:
José Fabricio López Hernández
,
Boris Y Rubinstein
,
Robert L Unckless
,
Réseau de co-auteurs
Jeffrey J Lange
6 collaborations
Michael T Eickbush
5 collaborations
R Blake Billmyre
4 collaborations
María Angélica Bravo Núñez
4 collaborations
Ananya Nidamangala Srinivasa
3 collaborations
Rachel M Helston
3 collaborations
Ibrahim M Sabbarini
3 collaborations
Robert L Unckless
3 collaborations
Caroline J Craig
2 collaborations
Christopher Wood
2 collaborations
Nicole L Nuckolls
2 collaborations
Anthony C Mok
2 collaborations
José Fabricio López Hernández
2 collaborations
Scott McCroskey
2 collaborations
Todd J Gallagher
1 collaboration
Chris W Seidel
1 collaboration
Samantha H Schaffner
1 collaboration
Kexi Yi
1 collaboration
Tejbir S Kandola
1 collaboration
Andrew M Hunn
1 collaboration
Julia L Snyder
1 collaboration
Melainia McClain
1 collaboration
Sean A McKinney
1 collaboration
Randal Halfmann
1 collaboration
Lauren E Eide
1 collaboration
Mickaël De Carvalho
1 collaboration
Guo-Song Jia
1 collaboration
Yan-Hui Xu
1 collaboration
Li-Lin Du
1 collaboration
Yue Liang
1 collaboration
Aubrey M Kent
1 collaboration
Janet M Young
1 collaboration
Matthew D Daugherty
1 collaboration
Joshua Lyon
1 collaboration
Claire Reichardt
1 collaboration
Boris Y Rubinstein
1 collaboration