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Journal Abstract Search


400 related items for PubMed ID: 7766890

  • 21. Auxin and ethylene regulate elongation responses to neighbor proximity signals independent of gibberellin and della proteins in Arabidopsis.
    Pierik R, Djakovic-Petrovic T, Keuskamp DH, de Wit M, Voesenek LA.
    Plant Physiol; 2009 Apr; 149(4):1701-12. PubMed ID: 19211699
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  • 22. The MSG1 and AXR1 genes of Arabidopsis are likely to act independently in growth-curvature responses of hypocotyls.
    Watahiki MK, Tatematsu K, Fujihira K, Yamamoto M, Yamamoto KT.
    Planta; 1999 Jan; 207(3):362-9. PubMed ID: 9951732
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  • 23. Arabidopsis gulliver1/SUPERROOT2-7 identifies a metabolic basis for auxin and brassinosteroid synergy.
    Maharjan PM, Dilkes BP, Fujioka S, Pěnčík A, Ljung K, Burow M, Halkier BA, Choe S.
    Plant J; 2014 Dec; 80(5):797-808. PubMed ID: 25256367
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  • 24. Overexpression of OsWRKY72 gene interferes in the abscisic acid signal and auxin transport pathway of Arabidopsis.
    Yu S, Ligang C, Liping Z, Diqiu Y.
    J Biosci; 2010 Sep; 35(3):459-71. PubMed ID: 20826955
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  • 25. A network of stress-related genes regulates hypocotyl elongation downstream of selective auxin perception.
    Rigal A, Doyle SM, Ritter A, Raggi S, Vain T, O'Brien JA, Goossens A, Pauwels L, Robert S.
    Plant Physiol; 2021 Sep 04; 187(1):430-445. PubMed ID: 34618142
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  • 26. Auxin activates the plasma membrane H+-ATPase by phosphorylation during hypocotyl elongation in Arabidopsis.
    Takahashi K, Hayashi K, Kinoshita T.
    Plant Physiol; 2012 Jun 04; 159(2):632-41. PubMed ID: 22492846
    [Abstract] [Full Text] [Related]

  • 27. 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 04; 141(4):1617-29. PubMed ID: 16798939
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  • 28. Expression of TWISTED DWARF1 lacking its in-plane membrane anchor leads to increased cell elongation and hypermorphic growth.
    Bailly A, Wang B, Zwiewka M, Pollmann S, Schenck D, Lüthen H, Schulz A, Friml J, Geisler M.
    Plant J; 2014 Jan 04; 77(1):108-18. PubMed ID: 24313847
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  • 29. Patatin-related phospholipase pPLAIIIδ influences auxin-responsive cell morphology and organ size in Arabidopsis and Brassica napus.
    Dong Y, Li M, Zhang P, Wang X, Fan C, Zhou Y.
    BMC Plant Biol; 2014 Nov 27; 14():332. PubMed ID: 25428555
    [Abstract] [Full Text] [Related]

  • 30. Disruption and overexpression of auxin response factor 8 gene of Arabidopsis affect hypocotyl elongation and root growth habit, indicating its possible involvement in auxin homeostasis in light condition.
    Tian CE, Muto H, Higuchi K, Matamura T, Tatematsu K, Koshiba T, Yamamoto KT.
    Plant J; 2004 Nov 27; 40(3):333-43. PubMed ID: 15469491
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  • 31. The SAR1 gene of Arabidopsis acts downstream of the AXR1 gene in auxin response.
    Cernac A, Lincoln C, Lammer D, Estelle M.
    Development; 1997 Apr 27; 124(8):1583-91. PubMed ID: 9108374
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  • 32. Two homologous ATP-binding cassette transporter proteins, AtMDR1 and AtPGP1, regulate Arabidopsis photomorphogenesis and root development by mediating polar auxin transport.
    Lin R, Wang H.
    Plant Physiol; 2005 Jun 27; 138(2):949-64. PubMed ID: 15908594
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  • 33. 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 27; 137(4):597-606. PubMed ID: 20110325
    [Abstract] [Full Text] [Related]

  • 34. Constitutive Expression of Arabidopsis SMALL AUXIN UP RNA19 (SAUR19) in Tomato Confers Auxin-Independent Hypocotyl Elongation.
    Spartz AK, Lor VS, Ren H, Olszewski NE, Miller ND, Wu G, Spalding EP, Gray WM.
    Plant Physiol; 2017 Feb 27; 173(2):1453-1462. PubMed ID: 27999086
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  • 35. IPyA glucosylation mediates light and temperature signaling to regulate auxin-dependent hypocotyl elongation in Arabidopsis.
    Chen L, Huang XX, Zhao SM, Xiao DW, Xiao LT, Tong JH, Wang WS, Li YJ, Ding Z, Hou BK.
    Proc Natl Acad Sci U S A; 2020 Mar 24; 117(12):6910-6917. PubMed ID: 32152121
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  • 36. IAA3-mediated repression of PIF proteins coordinates light and auxin signaling in Arabidopsis.
    Xi Y, Yang Y, Yang J, Zhang X, Pan Y, Guo H.
    PLoS Genet; 2021 Feb 24; 17(2):e1009384. PubMed ID: 33600444
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  • 37. Auxin transport through PIN-FORMED 3 (PIN3) controls shade avoidance and fitness during competition.
    Keuskamp DH, Pollmann S, Voesenek LA, Peeters AJ, Pierik R.
    Proc Natl Acad Sci U S A; 2010 Dec 28; 107(52):22740-4. PubMed ID: 21149713
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  • 38. AXR1 is involved in BR-mediated elongation and SAUR-AC1 gene expression in Arabidopsis.
    Nakamura A, Shimada Y, Goda H, Fujiwara MT, Asami T, Yoshida S.
    FEBS Lett; 2003 Oct 09; 553(1-2):28-32. PubMed ID: 14550541
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  • 39. ydk1-D, an auxin-responsive GH3 mutant that is involved in hypocotyl and root elongation.
    Takase T, Nakazawa M, Ishikawa A, Kawashima M, Ichikawa T, Takahashi N, Shimada H, Manabe K, Matsui M.
    Plant J; 2004 Feb 09; 37(4):471-83. PubMed ID: 14756757
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  • 40. Local auxin metabolism regulates environment-induced hypocotyl elongation.
    Zheng Z, Guo Y, Novák O, Chen W, Ljung K, Noel JP, Chory J.
    Nat Plants; 2016 Mar 21; 2():16025. PubMed ID: 27249562
    [Abstract] [Full Text] [Related]


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