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Journal Abstract Search


411 related items for PubMed ID: 18715029

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  • 3. Apical F-actin-regulated exocytic targeting of NtPPME1 is essential for construction and rigidity of the pollen tube cell wall.
    Wang H, Zhuang X, Cai Y, Cheung AY, Jiang L.
    Plant J; 2013 Nov; 76(3):367-79. PubMed ID: 23906068
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  • 4. The pollen organelle membrane proteome reveals highly spatial-temporal dynamics during germination and tube growth of lily pollen.
    Pertl H, Schulze WX, Obermeyer G.
    J Proteome Res; 2009 Nov; 8(11):5142-52. PubMed ID: 19799449
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  • 7. Characterization of pollen tube development in Pinus strobus (Eastern white pine) through proteomic analysis of differentially expressed proteins.
    Fernando DD.
    Proteomics; 2005 Dec; 5(18):4917-26. PubMed ID: 16247732
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  • 8. [Effects of G-protein regulators and stylar S-RNase on the growth and Ca2+ concentration of Pyrus pyrifolia pollen tube].
    Zhao CP, Xu GH, Zhang SL, Liu ZQ, Wang CL.
    Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao; 2007 Oct; 33(5):395-401. PubMed ID: 17960042
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  • 9. Spatial and temporal integration of signalling networks regulating pollen tube growth.
    Zonia L.
    J Exp Bot; 2010 Apr; 61(7):1939-57. PubMed ID: 20378665
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  • 10. Vesicular trafficking, cytoskeleton and signalling in root hairs and pollen tubes.
    Samaj J, Müller J, Beck M, Böhm N, Menzel D.
    Trends Plant Sci; 2006 Dec; 11(12):594-600. PubMed ID: 17092761
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  • 12. Combined proteomic and cytological analysis of Ca2+-calmodulin regulation in Picea meyeri pollen tube growth.
    Chen T, Wu X, Chen Y, Li X, Huang M, Zheng M, Baluska F, Samaj J, Lin J.
    Plant Physiol; 2009 Feb; 149(2):1111-26. PubMed ID: 19011005
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  • 13. Calcium-dependent protein kinases regulate polarized tip growth in pollen tubes.
    Myers C, Romanowsky SM, Barron YD, Garg S, Azuse CL, Curran A, Davis RM, Hatton J, Harmon AC, Harper JF.
    Plant J; 2009 Aug; 59(4):528-39. PubMed ID: 19392698
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  • 14. Calcium dynamics in tomato pollen tubes using the Yellow Cameleon 3.6 sensor.
    Barberini ML, Sigaut L, Huang W, Mangano S, Juarez SPD, Marzol E, Estevez J, Obertello M, Pietrasanta L, Tang W, Muschietti J.
    Plant Reprod; 2018 Jun; 31(2):159-169. PubMed ID: 29236154
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  • 15. Pollen tube growth: a delicate equilibrium between secretory and endocytic pathways.
    Moscatelli A, Idilli AI.
    J Integr Plant Biol; 2009 Aug; 51(8):727-39. PubMed ID: 19686370
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  • 16. Comparative proteomic analysis of Arabidopsis mature pollen and germinated pollen.
    Zou J, Song L, Zhang W, Wang Y, Ruan S, Wu WH.
    J Integr Plant Biol; 2009 May; 51(5):438-55. PubMed ID: 19508356
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  • 17. The role of ion fluxes in polarized cell growth and morphogenesis: the pollen tube as an experimental paradigm.
    Michard E, Alves F, Feijó JA.
    Int J Dev Biol; 2009 May; 53(8-10):1609-22. PubMed ID: 19247955
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  • 18. Rates of exocytosis and endocytosis in Arabidopsis root hairs and pollen tubes.
    Ketelaar T, Galway ME, Mulder BM, Emons AM.
    J Microsc; 2008 Aug; 231(2):265-73. PubMed ID: 18778424
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  • 19. Addition of Phenylboronic Acid to Malus domestica Pollen Tubes Alters Calcium Dynamics, Disrupts Actin Filaments and Affects Cell Wall Architecture.
    Fang K, Gao S, Zhang W, Xing Y, Cao Q, Qin L.
    PLoS One; 2016 Aug; 11(2):e0149232. PubMed ID: 26886907
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  • 20. Calcium channel blocker and calmodulin antagonists affect the gradient of free calcium ions in lily pollen tubes.
    Obermeyer G, Weisenseel MH.
    Eur J Cell Biol; 1991 Dec; 56(2):319-27. PubMed ID: 1802716
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