Showing results (11-20 of 20) with videos related to
Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 20 results.
Development (Cambridge, England)|February 18, 2005
thick tassel dwarf1 encodes a putative maize ortholog of the Arabidopsis CLAVATA1 leucine-rich repeat receptor-like kinasePeter Bommert, China Lunde, Judith Nardmann, et al.Nature Communications|August 25, 2019
The regulatory landscape of a core maize domestication module controlling bud dormancy and growth repressionZhaobin Dong, Yuguo Xiao, Rajanikanth Govindarajulu, et al.Science Advances|June 15, 2022
Boundary domain genes were recruited to suppress bract growth and promote branching in maizeYuguo Xiao, Jinyan Guo, Zhaobin Dong, et al.Proceedings of the National Academy of Sciences of the United States of America|January 8, 2022
Recruitment of an ancient branching program to suppress carpel development in maize flowersHarry Klein, Joseph Gallagher, Edgar Demesa-Arevalo, et al.G3 (Bethesda, Md.)|March 13, 2021
Integration of high-density genetic mapping with transcriptome analysis uncovers numerous agronomic QTL and reveals candidate genes for the control of tillering in sorghumRajanikanth Govindarajulu, Ashley N Hostetler, Yuguo Xiao, et al.Nature Communications|March 28, 2026
KATANIN promotes cell elongation and division to generate proper cell numbers in maize organsStephanie E Martinez, Kin H Lau, Lindy A Allsman, et al.Biorxiv : the Preprint Server for Biology|June 19, 2024
Transcription factor binding site divergence across maize inbred lines drives transcriptional and phenotypic variationMary Galli, Zongliang Chen, Tara Ghandour, et al.Nature Genetics|May 17, 2016
Signaling from maize organ primordia via FASCIATED EAR3 regulates stem cell proliferation and yield traitsByoung Il Je, Jeremy Gruel, Young Koung Lee, et al.Nature Plants|June 12, 2025
Transcription factor binding divergence drives transcriptional and phenotypic variation in maizeMary Galli, Zongliang Chen, Tara Ghandour, et al.Nature Communications|March 17, 2017
Altered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division durationXiaohuan Sun, James Cahill, Tom Van Hautegem, et al.Pageof 2