Channel: MADS Domain proteins and Arabidopsis

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2023 Articles

641 articles

Vernalization-triggered expression of the antisense transcript COOLAIR is mediated by CBF genes

  • Myeongjune Jeon, Goowon Jeong, Yupeng Yang, …, Youbong Hyun, Yuehui He, Ilha Lee
  • Elife, 10.7554/elife.84594
Comment Section

Thinking outside the F-box: how UFO controls angiosperm development

  • Philippe Rieu, Moïra Arnoux-Courseaux, Gabrielle Tichtinsky, François Parcy
  • New Phytol, 10.1111/nph.19234
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Cracking the Floral Quartet Code: How Do Multimers of MIKCC-Type MADS-Domain Transcription Factors Recognize Their Target Genes?

  • Sandra Käppel, Florian Rümpler, Günter Theißen, Sandra Käppel, Florian Rümpler, Günter Theißen
  • Int J Mol Sci, 10.3390/ijms24098253
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Floral Homeotic Factors: A Question of Specificity

  • Kevin Goslin, Andrea Finocchio, Frank Wellmer, Kevin Goslin, Andrea Finocchio, Frank Wellmer
  • None, 10.3390/plants12051128
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Molecular Cues for Phenological Events in the Flowering Cycle in Avocado

  • Muhammad Umair Ahsan, Francois Barbier, Alice Hayward, …, John Wilkie, Christine Anne Beveridge, Neena Mitter
  • None, 10.3390/plants12122304
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IiSVP of Isatis indigotica can reduce the size and repress the development of floral organs

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Their C-termini divide Brassica rapa FT-like proteins into FD-interacting and FD-independent proteins that have different effects on the floral transition

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GmUFO1 Regulates Floral Organ Number and Shape in Soybean

  • Huimin Yu, Yaohua Zhang, Junling Fang, …, Yu Jiang, Yi Wang, Xianzhong Feng
  • Int J Mol Sci, 10.3390/ijms24119662
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Expression of the Populus Orthologues of AtYY1, YIN and YANG Activates the Floral Identity Genes AGAMOUS and SEPALLATA3 Accelerating Floral Transition in Arabidopsis thaliana

  • Xinying Liu, Qian Xing, Xuemei Liu, …, Qian Xing, Xuemei Liu, Ralf Müller-Xing
  • Int J Mol Sci, 10.3390/ijms24087639
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2022 Articles

65 articles

An Overview of Molecular Basis and Genetic Modification of Floral Organs Genes: Impact of Next-Generation Sequencing

  • Kavita N Hadawale, Aizi Nor Mazila Ramli, Suryakant S Wadkar, …, Aizi Nor Mazila Ramli, Suryakant S Wadkar, Prakash Bhuyar
  • Mol Biotechnol, 10.1007/s12033-022-00633-7
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Distinct responses to autumn and spring temperatures by the key flowering-time regulator FLOWERING LOCUS C

  • Haruki Nishio, Hiroshi Kudoh, Haruki Nishio, …, Hiroshi Kudoh, Haruki Nishio, Hiroshi Kudoh
  • Curr Opin Genet Dev, 10.1016/j.gde.2022.102016
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SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner

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Genome-wide identification, interaction of the MADS-box proteins in Zanthoxylum armatum and functional characterization of ZaMADS80 in floral development

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Insight into the formation of trumpet and needle-type leaf in Ginkgo biloba L. mutant

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Identification of the Genes Encoding B3 Domain-Containing Proteins Related to Vernalization of Beta vulgaris

  • Naiguo Liang, Dayou Cheng, Li Zhao, …, Hedong Lu, Lei Xu, Yanhong Bi
  • Genes (Basel), 10.3390/genes13122217
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Transcriptomic analysis reveals the formation mechanism of anemone-type flower in chrysanthemum

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Orchid NAC Transcription Factors: A Focused Analysis of CUPULIFORMIS Genes

  • Maria Carmen Valoroso, Francesca Lucibelli, Serena Aceto, …, Maria Carmen Valoroso, Francesca Lucibelli, Serena Aceto
  • Genes (Basel), 10.3390/genes13122293
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Plant long non-coding RNAs: biologically relevant and mechanistically intriguing

  • Jun Yang, Federico Ariel, Dong Wang, …, Jun Yang, Federico Ariel, Dong Wang
  • J Exp Bot, 10.1093/jxb/erac482
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A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis

  • Ying Liu, Ludovico Dreni, Haojie Zhang, …, Yajun Yang, Xinyuan Hao, Xinchao Wang
  • Int J Mol Sci, 10.3390/ijms232415711
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