Follow
Cedar Warman
Title
Cited by
Cited by
Year
No evidence for transient transformation via pollen magnetofection in several monocot species
Z Vejlupkova, C Warman, R Sharma, HV Scheller, JC Mortimer, JE Fowler
Nature Plants 6 (11), 1323-1324, 2020
382020
High expression in maize pollen correlates with genetic contributions to pollen fitness as well as with coordinated transcription from neighboring transposable elements
C Warman, K Panda, Z Vejlupkova, S Hokin, E Unger-Wallace, RA Cole, ...
PLoS genetics 16 (4), e1008462, 2020
342020
A cost‐effective maize ear phenotyping platform enables rapid categorization and quantification of kernels
C Warman, CM Sullivan, J Preece, ME Buchanan, Z Vejlupkova, ...
The Plant Journal 106 (2), 566-579, 2021
31*2021
Deep learning-based high-throughput phenotyping can drive future discoveries in plant reproductive biology
C Warman, JE Fowler
Plant Reproduction 34 (2), 81-89, 2021
42021
A maize male gametophyte-specific gene encodes ZmLARP6c1, a potential RNA-binding protein required for competitive pollen tube growth
L Zhou, Z Vejlupkova, C Warman, JE Fowler
Frontiers in Plant Science 12, 301, 2021
22021
Apparatus and method to quantify maize seed phenotypes
C Warman, JE Fowler
US Patent 11,823,408, 2023
12023
Seeing Genes: Multiscale Phenotyping Reveals Gene Functions in Maize Pollen
CD Warman
2020
The system can't perform the operation now. Try again later.
Articles 1–7