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Extensive Demethylation of Repetitive Elements During Seed Development Underlies Gene Imprinting
Science
◽
10.1126/science.1171609
◽
2009
◽
Vol 324
(5933)
◽
pp. 1447-1451
◽
Cited By ~ 381
Author(s):
M. Gehring
◽
K. L. Bubb
◽
S. Henikoff
Keyword(s):
Seed Development
◽
Repetitive Elements
◽
Gene Imprinting
Download Full-text
Related Documents
Cited By
References
Faculty Opinions recommendation of Extensive demethylation of repetitive elements during seed development underlies gene imprinting.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1161299.621792
◽
2009
◽
Author(s):
Elizabeth Dennis
Keyword(s):
Seed Development
◽
Repetitive Elements
◽
Gene Imprinting
Download Full-text
Endosperm gene imprinting and seed development
Current Opinion in Genetics & Development
◽
10.1016/j.gde.2007.08.011
◽
2007
◽
Vol 17
(6)
◽
pp. 480-485
◽
Cited By ~ 43
Author(s):
Jin Hoe Huh
◽
Matthew J Bauer
◽
Tzung-Fu Hsieh
◽
Robert Fischer
Keyword(s):
Seed Development
◽
Gene Imprinting
Download Full-text
PHERES1 Controls Endosperm Gene Imprinting and Seed Development
Trends in Plant Science
◽
10.1016/j.tplants.2020.03.004
◽
2020
◽
Vol 25
(6)
◽
pp. 517-519
Author(s):
Yongyan Wang
◽
Hua Jiang
◽
Guifeng Wang
Keyword(s):
Seed Development
◽
Gene Imprinting
Download Full-text
Genetic basis of isoflavone accumulation during soybean seed development : special focus on water-deficit conditions
10.32469/10355/6852
◽
2009
◽
Author(s):
Juan Jose Gutierrez-Gonzalez
Keyword(s):
Water Deficit
◽
Seed Development
◽
Genetic Basis
◽
Soybean Seed
◽
Special Focus
Download Full-text
Abnormalities of Seed Development in a Parthenocarpic Japanese Persimmon, Diospyros kaki cv. Hiratanenashi
Engei Gakkai zasshi
◽
10.2503/jjshs.59.65
◽
1990
◽
Vol 59
(1)
◽
pp. 65-73
◽
Cited By ~ 4
Author(s):
Masashi ISHIDA
◽
Masami KONISHI
◽
Akira KITAJIMA
◽
Yoshitsugu SOBAJIMA
Keyword(s):
Seed Development
◽
Diospyros Kaki
◽
Japanese Persimmon
Download Full-text
Effects of parental exposure to temperatures during seed development on the seedling growth in rice (Oryza sativa L.).
Environment Control in Biology
◽
10.2525/ecb1963.23.19
◽
1985
◽
Vol 23
(2/3)
◽
pp. 19-25
Author(s):
Norindo TAKAHASHI
◽
Yukihiro SUGAWARA
Keyword(s):
Oryza Sativa
◽
Seed Development
◽
Seedling Growth
◽
Oryza Sativa L
◽
Parental Exposure
Download Full-text
Faculty Opinions recommendation of The Polycomb-group protein MEDEA regulates seed development by controlling expression of the MADS-box gene PHERES1.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1014008.192815
◽
2003
◽
Author(s):
Guenter Theissen
Keyword(s):
Seed Development
◽
Polycomb Group
◽
Mads Box
◽
Polycomb Group Protein
◽
Mads Box Gene
◽
Group Protein
Download Full-text
Faculty Opinions recommendation of Energy state and its control on seed development: starch accumulation is associated with high ATP and steep oxygen gradients within barley grains.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1018871.214464
◽
2004
◽
Author(s):
John Patrick
Keyword(s):
Seed Development
◽
Energy State
◽
Starch Accumulation
◽
Oxygen Gradients
◽
Barley Grains
Download Full-text
Faculty Opinions recommendation of Bypassing genomic imprinting allows seed development.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1083033.539727
◽
2007
◽
Author(s):
Eric Lam
Keyword(s):
Seed Development
◽
Genomic Imprinting
Download Full-text
Faculty Opinions recommendation of Bypassing genomic imprinting allows seed development.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1083033.536013
◽
2007
◽
Author(s):
Lieven De Veylder
Keyword(s):
Seed Development
◽
Genomic Imprinting
Download Full-text
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