Literature DB >> 22965850

A global analysis of xylem vessel length in woody plants.

Anna L Jacobsen1, R Brandon Pratt, Michael F Tobin, Uwe G Hacke, Frank W Ewers.   

Abstract

PREMISE OF THE STUDY: Vessels are the chief conduit for long-distance water transport in the majority of flowering plants. Vessel length is a key trait that determines plant hydraulic efficiency and safety, yet relatively little is known about this xylem feature. •
METHODS: We used previously published studies to generate a new global data set of vessel length in woody plants. These data were used to examine how evolutionary history, plant habit, environment, and growth ring porosity influenced vessel length. We also examined the relationship between mean vessel length and mean vessel diameter and maximum vessel length. • KEY
RESULTS: Data on mean vessel length were available for stems of 130 species and on maximum vessel length for stems of 91 species. A phylogenetic analysis indicated that vessel length did not exhibit significant phylogenetic signal. Liana species had longer vessel lengths than in tree or shrub species. Vessel diameter was not predictive of mean vessel length, but maximum vessel length strongly predicted mean vessel length. Vessel length did not vary between species that differed in growth ring porosity. •
CONCLUSIONS: Many traits often assumed to be linked to vessel length, including growth ring porosity and vessel diameter, are not associated with vessel length when compared interspecifically. Sampling for vessel length has been nonrandom, e.g., there are virtually no data available for roots, and sampling for environment has been confounded with sampling for habit. Increased knowledge of vessel length is key to understanding the structure and function of the plant hydraulic pathway.

Entities:  

Mesh:

Year:  2012        PMID: 22965850     DOI: 10.3732/ajb.1200140

Source DB:  PubMed          Journal:  Am J Bot        ISSN: 0002-9122            Impact factor:   3.844


  17 in total

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5.  Traits and trade-offs in whole-tree hydraulic architecture along the vertical axis of Eucalyptus grandis.

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6.  Low Vulnerability to Xylem Embolism in Leaves and Stems of North American Oaks.

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Journal:  Plant Physiol       Date:  2018-05-22       Impact factor: 8.340

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Authors:  Juliana S Medeiros; Joy K Ward
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8.  Plant height and hydraulic vulnerability to drought and cold.

Authors:  Mark E Olson; Diana Soriano; Julieta A Rosell; Tommaso Anfodillo; Michael J Donoghue; Erika J Edwards; Calixto León-Gómez; Todd Dawson; J Julio Camarero Martínez; Matiss Castorena; Alberto Echeverría; Carlos I Espinosa; Alex Fajardo; Antonio Gazol; Sandrine Isnard; Rivete S Lima; Carmen R Marcati; Rodrigo Méndez-Alonzo
Journal:  Proc Natl Acad Sci U S A       Date:  2018-07-02       Impact factor: 11.205

9.  Arabidopsis thaliana as a model species for xylem hydraulics: does size matter?

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10.  Species divergence and phylogenetic variation of ecophysiological traits in lianas and trees.

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