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PUBMED FOR HANDHELDS

Journal Abstract Search


138 related items for PubMed ID: 33417884

  • 1.
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  • 2. Cell wall integrity modulates HOOKLESS1 and PHYTOCHROME INTERACTING FACTOR4 expression controlling apical hook formation.
    Lorrai R, Erguvan Ö, Raggi S, Jonsson K, Široká J, Tarkowská D, Novák O, Griffiths J, Jones AM, Verger S, Robert S, Ferrari S.
    Plant Physiol; 2024 Oct 01; 196(2):1562-1578. PubMed ID: 38976579
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  • 3. Interplay between Cell Wall and Auxin Mediates the Control of Differential Cell Elongation during Apical Hook Development.
    Aryal B, Jonsson K, Baral A, Sancho-Andres G, Routier-Kierzkowska AL, Kierzkowski D, Bhalerao RP.
    Curr Biol; 2020 May 04; 30(9):1733-1739.e3. PubMed ID: 32197084
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  • 4. Plant biology: Positive feedback between auxin and cell wall mechanics during apical hook formation.
    Vissenberg K.
    Curr Biol; 2021 Mar 22; 31(6):R306-R309. PubMed ID: 33756147
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  • 5. Root gravity response module guides differential growth determining both root bending and apical hook formation in Arabidopsis.
    Zhu Q, Gallemí M, Pospíšil J, Žádníková P, Strnad M, Benková E.
    Development; 2019 Sep 12; 146(17):. PubMed ID: 31391194
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  • 6. External Mechanical Cues Reveal a Katanin-Independent Mechanism behind Auxin-Mediated Tissue Bending in Plants.
    Baral A, Aryal B, Jonsson K, Morris E, Demes E, Takatani S, Verger S, Xu T, Bennett M, Hamant O, Bhalerao RP.
    Dev Cell; 2021 Jan 11; 56(1):67-80.e3. PubMed ID: 33434527
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  • 7. BIIDXI, a DUF642 cell wall protein, is involved in hypocotyl growth via auxin efflux.
    Salazar-Iribe A, Cruz-Valderrama JE, Jímenez-Durán K, Gómez-Maqueo X, Gamboa-deBuen A.
    J Plant Physiol; 2018 Dec 11; 231():105-109. PubMed ID: 30253266
    [Abstract] [Full Text] [Related]

  • 8. Growth asymmetry precedes differential auxin response during apical hook initiation in Arabidopsis.
    Peng Y, Zhang D, Qiu Y, Xiao Z, Ji Y, Li W, Xia Y, Wang Y, Guo H.
    J Integr Plant Biol; 2022 Jan 11; 64(1):5-22. PubMed ID: 34786851
    [Abstract] [Full Text] [Related]

  • 9. Endoreplication controls cell size via mechanochemical signaling.
    Bhosale R, Vissenberg K.
    Trends Plant Sci; 2023 Jun 11; 28(6):611-613. PubMed ID: 36997439
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  • 10. Role of PIN-mediated auxin efflux in apical hook development of Arabidopsis thaliana.
    Zádníková P, Petrásek J, Marhavy P, Raz V, Vandenbussche F, Ding Z, Schwarzerová K, Morita MT, Tasaka M, Hejátko J, Van Der Straeten D, Friml J, Benková E.
    Development; 2010 Feb 11; 137(4):607-17. PubMed ID: 20110326
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  • 11. The auxin influx carriers AUX1 and LAX3 are involved in auxin-ethylene interactions during apical hook development in Arabidopsis thaliana seedlings.
    Vandenbussche F, Petrásek J, Zádníková P, Hoyerová K, Pesek B, Raz V, Swarup R, Bennett M, Zazímalová E, Benková E, Van Der Straeten D.
    Development; 2010 Feb 11; 137(4):597-606. PubMed ID: 20110325
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  • 14. RCN1-regulated phosphatase activity and EIN2 modulate hypocotyl gravitropism by a mechanism that does not require ethylene signaling.
    Muday GK, Brady SR, Argueso C, Deruère J, Kieber JJ, DeLong A.
    Plant Physiol; 2006 Aug 11; 141(4):1617-29. PubMed ID: 16798939
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  • 15. Coordination of matrix attachment and ATP-dependent chromatin remodeling regulate auxin biosynthesis and Arabidopsis hypocotyl elongation.
    Lee K, Seo PJ.
    PLoS One; 2017 Aug 11; 12(7):e0181804. PubMed ID: 28746399
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  • 20. Polarization of PIN3-dependent auxin transport for hypocotyl gravitropic response in Arabidopsis thaliana.
    Rakusová H, Gallego-Bartolomé J, Vanstraelen M, Robert HS, Alabadí D, Blázquez MA, Benková E, Friml J.
    Plant J; 2011 Sep 11; 67(5):817-26. PubMed ID: 21569134
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