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The New phytologist. 2021 Feb;229(3):1453-1466. doi: 10.1111/nph.16942 Q18.32024

Linking drought-induced xylem embolism resistance to wood anatomical traits in Neotropical trees

干旱诱导的导管栓塞抗性与新热带树种木材解剖学特征的关系 翻译改进

Sébastien Levionnois  1  2, Steven Jansen  3, Ruth Tchana Wandji  1, Jacques Beauchêne  1, Camille Ziegler  1  4, Sabrina Coste  1, Clément Stahl  1, Sylvain Delzon  5, Louise Authier  1, Patrick Heuret  1

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作者单位

  • 1 UMR EcoFoG, AgroParisTech, CIRAD, CNRS, INRAE, Université des Antilles, Université de Guyane, Kourou, 97310, France.
  • 2 UMR AMAP, Université de Montpellier, CIRAD, CNRS, INRAE, IRD, Montpellier, 34000, France.
  • 3 Institute of Systematic Botany and Ecology, Ulm University, Ulm, D-89081, Germany.
  • 4 AgroParisTech, UMR Silva, INRAE, Université de Lorraine, Nancy, F-54000, France.
  • 5 UMR BIOGECO, INRAE, Université de Bordeaux, Pessac, 33615, France.
  • DOI: 10.1111/nph.16942 PMID: 32964439

    摘要 Ai翻译

    Drought-induced xylem embolism is considered to be one of the main factors driving mortality in woody plants worldwide. Although several structure-functional mechanisms have been tested to understand the anatomical determinants of embolism resistance, there is a need to study this topic by integrating anatomical data for many species. We combined optical, laser, and transmission electron microscopy to investigate vessel diameter, vessel grouping, and pit membrane ultrastructure for 26 tropical rainforest tree species across three major clades (magnoliids, rosiids, and asteriids). We then related these anatomical observations to previously published data on drought-induced embolism resistance, with phylogenetic analyses. Vessel diameter, vessel grouping, and pit membrane ultrastructure were all predictive of xylem embolism resistance, but with weak predictive power. While pit membrane thickness was a predictive trait when vestured pits were taken into account, the pit membrane diameter-to-thickness ratio suggests a strong importance of the deflection resistance of the pit membrane. However, phylogenetic analyses weakly support adaptive coevolution. Our results emphasize the functional significance of pit membranes for air-seeding in tropical rainforest trees, highlighting also the need to study their mechanical properties due to the link between embolism resistance and pit membrane diameter-to-thickness ratio. Finding support for adaptive coevolution also remains challenging.

    Keywords: bordered pits; drought-induced embolism; pit membrane; transmission electron microscopy; tropical trees; vessel grouping; xylem anatomy.

    Keywords:wood anatomical traits

    关键词:木材解剖特征

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    期刊名:New phytologist

    缩写:NEW PHYTOL

    ISSN:1469-8137

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    IF/分区:8.3/Q1

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    Linking drought-induced xylem embolism resistance to wood anatomical traits in Neotropical trees