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Xylem Hydraulic Properties of Five Pinus Species Grown in Common Environment Vary From Needles to Roots With Needle Length and Native-Range Climate.

Publication ,  Journal Article
Wang, N; Domec, J-C; Palmroth, S; Maier, CA; Xie, L; Yin, C; Chen, Y-J; Oren, R
Published in: Plant, cell & environment
October 2025

Plant hydraulics govern water transport linking root to mesophyll surfaces, affecting gas-exchange, survival and growth. Xylem and leaf structural and functional characteristics vary widely among Pinus species, even when growing under similar conditions. We quantified the variation of xylem anatomy, hydraulic function, and within-tree hydraulic resistivity distribution, among five widely ranging southern US species: Pinus echinata, Pinus elliottii, Pinus palustris, Pinus taeda and Pinus virginiana. We found that, across species, needle length (NL) explained most of the variation in needle hydraulic properties. Resistivity to water flow in needles through tracheids' bordered-pits decreased linearly from ~99% to 8% with increasing NL; total tracheid resistivity in branches and roots was partitioned between bordered-pits and lumens similarly regardless of NL. Mean annual precipitation typical of the species' climatic range (CR) accounted for the variation in root hydraulic properties. Despite strong root-to-branch correlations of several attributes, neither NL nor CR explained the variation of any branch attribute. The results suggest that NL dominates needle xylem anatomy and function in a manner consistent with increasing hydraulic efficiency with NL, but CR produces genetic differences resulting in increased resistance to more negative xylem pressures with decreasing precipitation, at a cost of reduced hydraulic efficiency.

Duke Scholars

Published In

Plant, cell & environment

DOI

EISSN

1365-3040

ISSN

0140-7791

Publication Date

October 2025

Volume

48

Issue

10

Start / End Page

7225 / 7239

Related Subject Headings

  • Xylem
  • Water
  • Species Specificity
  • Plant Transpiration
  • Plant Roots
  • Plant Leaves
  • Plant Biology & Botany
  • Pinus
  • Climate
  • 3108 Plant biology
 

Citation

APA
Chicago
ICMJE
MLA
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Wang, N., Domec, J.-C., Palmroth, S., Maier, C. A., Xie, L., Yin, C., … Oren, R. (2025). Xylem Hydraulic Properties of Five Pinus Species Grown in Common Environment Vary From Needles to Roots With Needle Length and Native-Range Climate. Plant, Cell & Environment, 48(10), 7225–7239. https://doi.org/10.1111/pce.70015
Wang, Na, Jean-Christophe Domec, Sari Palmroth, Christopher A. Maier, Lulu Xie, Chunying Yin, Ya-Jun Chen, and Ram Oren. “Xylem Hydraulic Properties of Five Pinus Species Grown in Common Environment Vary From Needles to Roots With Needle Length and Native-Range Climate.Plant, Cell & Environment 48, no. 10 (October 2025): 7225–39. https://doi.org/10.1111/pce.70015.
Wang N, Domec J-C, Palmroth S, Maier CA, Xie L, Yin C, et al. Xylem Hydraulic Properties of Five Pinus Species Grown in Common Environment Vary From Needles to Roots With Needle Length and Native-Range Climate. Plant, cell & environment. 2025 Oct;48(10):7225–39.
Wang, Na, et al. “Xylem Hydraulic Properties of Five Pinus Species Grown in Common Environment Vary From Needles to Roots With Needle Length and Native-Range Climate.Plant, Cell & Environment, vol. 48, no. 10, Oct. 2025, pp. 7225–39. Epmc, doi:10.1111/pce.70015.
Wang N, Domec J-C, Palmroth S, Maier CA, Xie L, Yin C, Chen Y-J, Oren R. Xylem Hydraulic Properties of Five Pinus Species Grown in Common Environment Vary From Needles to Roots With Needle Length and Native-Range Climate. Plant, cell & environment. 2025 Oct;48(10):7225–7239.
Journal cover image

Published In

Plant, cell & environment

DOI

EISSN

1365-3040

ISSN

0140-7791

Publication Date

October 2025

Volume

48

Issue

10

Start / End Page

7225 / 7239

Related Subject Headings

  • Xylem
  • Water
  • Species Specificity
  • Plant Transpiration
  • Plant Roots
  • Plant Leaves
  • Plant Biology & Botany
  • Pinus
  • Climate
  • 3108 Plant biology