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PUBMED FOR HANDHELDS

Journal Abstract Search


432 related items for PubMed ID: 35038332

  • 1. Lack of phenotypic plasticity in leaf hydraulics for 10 woody species common to urban forests of North China.
    Han H, Xi B, Wang Y, Feng J, Li X, Tissue DT.
    Tree Physiol; 2022 Jun 09; 42(6):1203-1215. PubMed ID: 35038332
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  • 3. Tree hydraulic traits are coordinated and strongly linked to climate-of-origin across a rainfall gradient.
    Li X, Blackman CJ, Choat B, Duursma RA, Rymer PD, Medlyn BE, Tissue DT.
    Plant Cell Environ; 2018 Mar 09; 41(3):646-660. PubMed ID: 29314083
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  • 4. Linking coordinated hydraulic traits to drought and recovery responses in a tropical montane cloud forest.
    Berry ZC, Espejel X, Williams-Linera G, Asbjornsen H.
    Am J Bot; 2019 Oct 09; 106(10):1316-1326. PubMed ID: 31518000
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  • 5. Stem hydraulic conductivity and embolism resistance of Quercus species are associated with their climatic niche.
    Guan X, Wen Y, Zhang Y, Chen Z, Cao KF.
    Tree Physiol; 2023 Feb 04; 43(2):234-247. PubMed ID: 36209451
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  • 6. The hydraulic efficiency-safety trade-off differs between lianas and trees.
    van der Sande MT, Poorter L, Schnitzer SA, Engelbrecht BMJ, Markesteijn L.
    Ecology; 2019 May 04; 100(5):e02666. PubMed ID: 30801680
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  • 7. Herb hydraulics: Variation and correlation for traits governing drought tolerance and efficiency of water transport.
    Huang R, Di N, Xi B, Yang J, Duan J, Li X, Feng J, Choat B, Tissue D.
    Sci Total Environ; 2024 Jan 10; 907():168095. PubMed ID: 37879470
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  • 9. Gas exchange recovery following natural drought is rapid unless limited by loss of leaf hydraulic conductance: evidence from an evergreen woodland.
    Skelton RP, Brodribb TJ, McAdam SAM, Mitchell PJ.
    New Phytol; 2017 Sep 10; 215(4):1399-1412. PubMed ID: 28620915
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  • 11. Linking xylem hydraulic conductivity and vulnerability to the leaf economics spectrum--a cross-species study of 39 evergreen and deciduous broadleaved subtropical tree species.
    Kröber W, Zhang S, Ehmig M, Bruelheide H.
    PLoS One; 2014 Sep 10; 9(11):e109211. PubMed ID: 25423316
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  • 17. Stem and leaf hydraulics of congeneric tree species from adjacent tropical savanna and forest ecosystems.
    Hao GY, Hoffmann WA, Scholz FG, Bucci SJ, Meinzer FC, Franco AC, Cao KF, Goldstein G.
    Oecologia; 2008 Mar 10; 155(3):405-15. PubMed ID: 18049826
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  • 18. Living on the edge: A continental-scale assessment of forest vulnerability to drought.
    Peters JMR, López R, Nolf M, Hutley LB, Wardlaw T, Cernusak LA, Choat B.
    Glob Chang Biol; 2021 Aug 10; 27(15):3620-3641. PubMed ID: 33852767
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  • 19. Hydraulics and life history of tropical dry forest tree species: coordination of species' drought and shade tolerance.
    Markesteijn L, Poorter L, Bongers F, Paz H, Sack L.
    New Phytol; 2011 Jul 10; 191(2):480-495. PubMed ID: 21477008
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  • 20. Intraspecific plasticity in hydraulic and stomatal regulation under drought is linked to aridity at the seed source in a wild pear species.
    Paudel I, Gerbi H, Zisovich A, Sapir G, Klein T.
    Tree Physiol; 2021 Jun 07; 41(6):960-973. PubMed ID: 33215204
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