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Madelaine Bartlett
Madelaine Bartlett
Sainsbury Laboratory Cambridge University
Bestätigte E-Mail-Adresse bei cam.ac.uk - Startseite
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Zitiert von
Jahr
Engineering quantitative trait variation for crop improvement by genome editing
D Rodríguez-Leal, ZH Lemmon, J Man, ME Bartlett, ZB Lippman
Cell 171 (2), 470-480. e8, 2017
10782017
Enhancing grain-yield-related traits by CRISPR–Cas9 promoter editing of maize CLE genes
L Liu, J Gallagher, ED Arevalo, R Chen, T Skopelitis, Q Wu, M Bartlett, ...
Nature Plants 7 (3), 287-294, 2021
3372021
Signaling from maize organ primordia via FASCIATED EAR3 regulates stem cell proliferation and yield traits
BI Je, J Gruel, YK Lee, P Bommert, ED Arevalo, AL Eveland, Q Wu, ...
Nature genetics 48 (7), 785-791, 2016
2442016
Conserved pleiotropy of an ancient plant homeobox gene uncovered by cis-regulatory dissection
A Hendelman, S Zebell, D Rodriguez-Leal, N Dukler, G Robitaille, X Wu, ...
Cell 184 (7), 1724-1739. e16, 2021
1752021
Evolution of buffering in a genetic circuit controlling plant stem cell proliferation
D Rodriguez-Leal, C Xu, CT Kwon, C Soyars, E Demesa-Arevalo, J Man, ...
Nature genetics 51 (5), 786-792, 2019
1712019
Flower evolution: the origin and subsequent diversification of the angiosperm flower
CD Specht, ME Bartlett
Annual Review of Ecology, Evolution and Systematics 40, 217, 2009
1292009
A well-supported nuclear phylogeny of Poaceae and implications for the evolution of C4 photosynthesis
W Huang, L Zhang, JT Columbus, Y Hu, Y Zhao, L Tang, Z Guo, W Chen, ...
Molecular Plant 15 (4), 755-777, 2022
1102022
The CLAVATA receptor FASCIATED EAR2 responds to distinct CLE peptides by signaling through two downstream effectors
BI Je, F Xu, Q Wu, L Liu, R Meeley, JP Gallagher, L Corcilius, RJ Payne, ...
Elife 7, e35673, 2018
1042018
Bulked-segregant analysis coupled to whole genome sequencing (BSA-Seq) for rapid gene cloning in maize
H Klein, Y Xiao, PA Conklin, R Govindarajulu, JA Kelly, MJ Scanlon, ...
G3: Genes, Genomes, Genetics 8 (11), 3583-3592, 2018
902018
Of puzzles and pavements: a quantitative exploration of leaf epidermal cell shape
RV Vőfély, J Gallagher, GD Pisano, M Bartlett, SA Braybrook
New Phytologist 221 (1), 540-552, 2019
832019
Structural evolution drives diversification of the large LRR‐RLK gene family
J Man, JP Gallagher, M Bartlett
New Phytologist 226 (5), 1492-1505, 2020
752020
Changes in expression pattern of the teosinte branched1‐like genes in the Zingiberales provide a mechanism for evolutionary shifts in symmetry across the order
ME Bartlett, CD Specht
American Journal of Botany 98 (2), 227-243, 2011
712011
Meristem identity and phyllotaxis in inflorescence development
ME Bartlett, B Thompson
Frontiers in plant science 5, 508, 2014
672014
Evidence for the involvement of GLOBOSA‐like gene duplications and expression divergence in the evolution of floral morphology in the Zingiberales
ME Bartlett, CD Specht
New Phytologist 187 (2), 521-541, 2010
602010
Plant science decadal vision 2020–2030: Reimagining the potential of plants for a healthy and sustainable future
N Henkhaus, M Bartlett, D Gang, R Grumet, I Jordon‐Thaden, A Lorence, ...
Plant Direct 4 (8), e00252, 2020
502020
The Maize PI/GLO Ortholog Zmm16/sterile tassel silky ear1 Interacts with the Zygomorphy and Sex Determination Pathways in Flower Development
ME Bartlett, SK Williams, Z Taylor, S DeBlasio, A Goldshmidt, DH Hall, ...
The Plant Cell 27 (11), 3081-3098, 2015
492015
Early floral development of Heliconia latispatha (Heliconiaceae), a key taxon for understanding the evolution of flower development in the Zingiberales
BK Kirchoff, LP Lagomarsino, WH Newman, ME Bartlett, CD Specht
American Journal of Botany 96 (3), 580-593, 2009
442009
Evolutionary dynamics of floral homeotic transcription factor protein–protein interactions
M Bartlett, B Thompson, H Brabazon, R Del Gizzi, T Zhang, C Whipple
Molecular Biology and Evolution 33 (6), 1486-1501, 2016
422016
Changing MADS-box transcription factor protein–protein interactions as a mechanism for generating floral morphological diversity
ME Bartlett
Integrative and Comparative Biology 57 (6), 1312-1321, 2017
362017
Boundary domain genes were recruited to suppress bract growth and promote branching in maize
Y Xiao, J Guo, Z Dong, A Richardson, E Patterson, S Mangrum, S Bybee, ...
Science Advances 8 (24), eabm6835, 2022
352022
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