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首页> 外文期刊>Trees. Structure and Function >Intraspecific drought tolerance of Betula pendula genotypes: an evaluation using leaf turgor loss in a botanical collection
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Intraspecific drought tolerance of Betula pendula genotypes: an evaluation using leaf turgor loss in a botanical collection

机译:桦木氏肾上腺素基因型的可造身耐受性:在植物收集中使用叶片损失的评价

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摘要

Key message The results showed a significant relationship between the potential evapotranspiration of the provenance collection site and the leaf turgor loss point and significant positive differences in drought tolerance between provenances and subspecies of B. pendula. The ecosystem services provided by urban trees make substantial contributions to the quality of urban living and securing resilience towards the challenges posed by a changing climate. Water deficits are a major abiotic stress for trees in urban environments and, in many regions, this stress is likely to be amplified under future climate scenarios. Although wide variation in drought tolerance exists at the species level, many species also show substantial intraspecific variation in drought tolerance. The aim of this study is to evaluate how drought tolerance, inferred from the water potential at leaf turgor loss point (psi(P0)), varies in Betula pendula from different geographical origins and determine if the observed drought tolerance can be related to the local climate and seasonal water balance from the provenance of origin, despite the trees now being established in similar soil and climatic conditions within a single botanical collection. Six subsp. betula, five subsp. mandshurica and two subsp. szechuanica were evaluated, giving a total of 12 different provenances. The results showed a significant relationship between the potential evapotranspiration of the provenance collection site and the leaf turgor loss point and significant positive differences in drought tolerance between provenances and subspecies of B. pendula. By directing efforts towards identifying more drought-tolerant genotypes, it will be possible to diversify the palette of trees that could confidently be integrated by urban tree planners and landscape architects into the urban landscape. The results of this study on different ecotypes of B. pendula clearly show that it is possible to find more drought-tolerant plant material.
机译:关键信息:结果表明,种源收集点的潜在蒸散量与叶片膨大损失点之间存在显著关系,并且种源和悬铃木亚种之间的耐旱性存在显著正差异。城市树木提供的生态系统服务对城市生活质量和应对气候变化带来的挑战的恢复力做出了重大贡献。缺水是城市环境中树木的主要非生物压力,在许多地区,这种压力在未来气候情景下可能会加剧。虽然耐旱性在物种水平上存在广泛差异,但许多物种在耐旱性方面也表现出显著的种内差异。本研究的目的是评估不同地理来源的垂桦的耐旱性(根据叶片膨大损失点的水势(psi(P0))如何变化,并确定观察到的耐旱性是否与当地气候和来源地的季节水平衡有关,尽管这些树木现在是在类似的土壤和气候条件下,在一个单一的植物收集。六亚种。桦树,五亚种。曼陀罗和两个亚种。对四川进行了评估,共给出了12个不同的种源。结果表明,种源收集点的潜在蒸散量与叶片膨大损失点之间存在显著的相关性,并且种源和悬铃木亚种之间的耐旱性存在显著的正差异。通过努力识别更耐旱的基因型,将有可能使树木的颜色多样化,城市树木规划师和景观设计师可以放心地将其融入城市景观。本研究对不同生态型悬铃木的研究结果清楚地表明,寻找更多耐旱植物材料是可能的。

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  • 来源
    《Trees. Structure and Function》 |2021年第2期|共13页
  • 作者单位

    Swedish Univ Agr Sci Dept Landscape Architecture Planning &

    Management Fac Landscape Planning Hort &

    Agr Sci POB 66 S-23053 Alnarp Sweden;

    Univ Ctr Myerscough Preston PR3 0RY Lancs England;

    Univ Liverpool Ness Bot Gardens Neston Rd Ness Cheshire England;

    Univ Liverpool Ness Bot Gardens Neston Rd Ness Cheshire England;

    Swedish Univ Agr Sci Dept Landscape Architecture Planning &

    Management Fac Landscape Planning Hort &

    Agr Sci POB 66 S-23053 Alnarp Sweden;

    Swedish Univ Agr Sci Dept Landscape Architecture Planning &

    Management Fac Landscape Planning Hort &

    Agr Sci POB 66 S-23053 Alnarp Sweden;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Urban trees; Urban forestry; Tree selection; Urban planning;

    机译:城市树木;城市林业;树选择;城市规划;

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