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PUBMED FOR HANDHELDS

Journal Abstract Search


192 related items for PubMed ID: 17081253

  • 21. A putative role for TIP and PIP aquaporins in dynamics of leaf hydraulic and stomatal conductances in grapevine under water stress and re-watering.
    Pou A, Medrano H, Flexas J, Tyerman SD.
    Plant Cell Environ; 2013 Apr; 36(4):828-43. PubMed ID: 23046275
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  • 22. Combined high leaf hydraulic safety and efficiency provides drought tolerance in Caragana species adapted to low mean annual precipitation.
    Yao GQ, Nie ZF, Turner NC, Li FM, Gao TP, Fang XW, Scoffoni C.
    New Phytol; 2021 Jan; 229(1):230-244. PubMed ID: 32749703
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  • 23. Impacts of tree height on leaf hydraulic architecture and stomatal control in Douglas-fir.
    Woodruff DR, McCulloh KA, Warren JM, Meinzer FC, Lachenbruch B.
    Plant Cell Environ; 2007 May; 30(5):559-69. PubMed ID: 17407534
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  • 24. Neither xylem collapse, cavitation, or changing leaf conductance drive stomatal closure in wheat.
    Corso D, Delzon S, Lamarque LJ, Cochard H, Torres-Ruiz JM, King A, Brodribb T.
    Plant Cell Environ; 2020 Apr; 43(4):854-865. PubMed ID: 31953855
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  • 25. Hydraulic failure defines the recovery and point of death in water-stressed conifers.
    Brodribb TJ, Cochard H.
    Plant Physiol; 2009 Jan; 149(1):575-84. PubMed ID: 19011001
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  • 27. Functional relationships between hydraulic traits and the timing of diurnal depression of photosynthesis.
    Bucci SJ, Carbonell Silletta LM, Garré A, Cavallaro A, Efron ST, Arias NS, Goldstein G, Scholz FG.
    Plant Cell Environ; 2019 May; 42(5):1603-1614. PubMed ID: 30613989
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  • 28. An ecophysiological approach of hydraulic performance for nine Mediterranean species.
    Iovi K, Kolovou C, Kyparissis A.
    Tree Physiol; 2009 Jul; 29(7):889-900. PubMed ID: 19448264
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  • 29. The contribution of vascular and extra-vascular water pathways to drought-induced decline of leaf hydraulic conductance.
    Trifiló P, Raimondo F, Savi T, Lo Gullo MA, Nardini A.
    J Exp Bot; 2016 Sep; 67(17):5029-39. PubMed ID: 27388214
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  • 30. Leaf hydraulic conductance varies with vein anatomy across Arabidopsis thaliana wild-type and leaf vein mutants.
    Caringella MA, Bongers FJ, Sack L.
    Plant Cell Environ; 2015 Dec; 38(12):2735-46. PubMed ID: 26047314
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  • 36. Leaf hydraulic capacity in ferns, conifers and angiosperms: impacts on photosynthetic maxima.
    Brodribb TJ, Holbrook NM, Zwieniecki MA, Palma B.
    New Phytol; 2005 Mar; 165(3):839-46. PubMed ID: 15720695
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  • 37. Leaf hydraulic conductance and mesophyll conductance are not closely related within a single species.
    Loucos KE, Simonin KA, Barbour MM.
    Plant Cell Environ; 2017 Feb; 40(2):203-215. PubMed ID: 27861995
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  • 38. Internal coordination between hydraulics and stomatal control in leaves.
    Brodribb TJ, Jordan GJ.
    Plant Cell Environ; 2008 Nov; 31(11):1557-64. PubMed ID: 18684244
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  • 40. The causes and consequences of leaf hydraulic decline with dehydration.
    Scoffoni C, Sack L, Ort D.
    J Exp Bot; 2017 Jul 20; 68(16):4479-4496. PubMed ID: 28981777
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