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1.
  • LEC1 sequentially regulates... LEC1 sequentially regulates the transcription of genes involved in diverse developmental processes during seed development
    Pelletier, Julie M.; Kwong, Raymond W.; Park, Soomin ... Proceedings of the National Academy of Sciences, 08/2017, Volume: 114, Issue: 32
    Journal Article
    Peer reviewed
    Open access

    LEAFY COTYLEDON1 (LEC1), an atypical subunit of the nuclear transcription factor Y (NF-Y) CCAAT-binding transcription factor, is a central regulator that controls many aspects of seed development ...
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2.
  • Central role of the LEAFY C... Central role of the LEAFY COTYLEDON1 transcription factor in seed development
    Jo, Leonardo; Pelletier, Julie M.; Harada, John J. Journal of integrative plant biology, 20/May , Volume: 61, Issue: 5
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    Open access

    Seed development is a complex period of the flowering plant life cycle. After fertilization, the three main regions of the seed, embryo, endosperm and seed coat, undergo a series of developmental ...
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  • Comprehensive developmental... Comprehensive developmental profiles of gene activity in regions and subregions of the Arabidopsis seed
    Belmonte, Mark F; Kirkbride, Ryan C; Stone, Sandra L ... Proceedings of the National Academy of Sciences - PNAS, 01/2013, Volume: 110, Issue: 5
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    Significance Seeds are complex structures that are comprised of the embryo, endosperm, and seed coat. Despite their importance for food, fiber, and fuel, the cellular processes that characterize ...
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  • Combinatorial interactions ... Combinatorial interactions of the LEC1 transcription factor specify diverse developmental programs during soybean seed development
    Jo, Leonardo; Pelletier, Julie M.; Hsu, Ssu-Wei ... Proceedings of the National Academy of Sciences - PNAS, 01/2020, Volume: 117, Issue: 2
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    Open access

    The LEAFY COTYLEDON1 (LEC1) transcription factor is a central regulator of seed development, because it controls diverse biological programs during seed development, such as embryo morphogenesis, ...
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  • Similarity between soybean ... Similarity between soybean and Arabidopsis seed methylomes and loss of non-CG methylation does not affect seed development
    Lin, Jer-Young; Le, Brandon H.; Chen, Min ... Proceedings of the National Academy of Sciences - PNAS, 11/2017, Volume: 114, Issue: 45
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    We profiled soybean and Arabidopsis methylomes from the globular stage through dormancy and germination to understand the role of methylation in seed formation. CHH methylation increases ...
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  • Light-Induced Indeterminacy... Light-Induced Indeterminacy Alters Shade-Avoiding Tomato Leaf Morphology
    Chitwood, Daniel H.; Kumar, Ravi; Ranjan, Aashish ... Plant physiology (Bethesda), 11/2015, Volume: 169, Issue: 3
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    Open access

    Plants sense the foliar shade of competitors and alter their developmental programs through the shade-avoidance response. Internode and petiole elongation, and changes in overall leaf area and leaf ...
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  • Seed genome hypomethylated ... Seed genome hypomethylated regions are enriched in transcription factor genes
    Chen, Min; Lin, Jer-Young; Hur, Jungim ... Proceedings of the National Academy of Sciences - PNAS, 08/2018, Volume: 115, Issue: 35
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    The precise mechanisms that control gene activity during seed development remain largely unknown. Previously, we showed that several genes essential for seed development, including those encoding ...
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  • Comparative analysis of emb... Comparative analysis of embryo proper and suspensor transcriptomes in plant embryos with different morphologies
    Chen, Min; Lin, Jer-Young; Wu, Xiaomeng ... Proceedings of the National Academy of Sciences - PNAS, 02/2021, Volume: 118, Issue: 6
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    An important question is what genes govern the differentiation of plant embryos into suspensor and embryo proper regions following fertilization and division of the zygote. We compared embryo proper ...
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  • Down-Regulating the Express... Down-Regulating the Expression of 53 Soybean Transcription Factor Genes Uncovers a Role for SPEECHLESS in Initiating Stomatal Cell Lineages during Embryo Development
    Danzer, John; Mellott, Eric; Bui, Anhthu Q. ... Plant physiology (Bethesda), 07/2015, Volume: 168, Issue: 3
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    We used an RNA interference screen to assay the function of 53 transcription factor messenger RNAs (mRNAs) that accumulate specifically within soybean (Glycine max) seed regions, subregions, and ...
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  • A reevaluation of the role ... A reevaluation of the role of the ASIL trihelix transcription factors as repressors of the seed maturation program
    Ruiz, Kevin A.; Pelletier, Julie M.; Wang, Yuchi ... Plant direct, October 2021, Volume: 5, Issue: 10
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    Open access

    Developmental transitions are typically tightly controlled at the transcriptional level. Two of these transitions involve the induction of the embryo maturation program midway through seed ...
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