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首页> 外文期刊>Agroforestry Systems >Thinking in the sustainability of Nothofagus antarctica silvopastoral systems, how differ the responses of seedlings from different provenances to water shortage?
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Thinking in the sustainability of Nothofagus antarctica silvopastoral systems, how differ the responses of seedlings from different provenances to water shortage?

机译:在Nothofagus南极洲硅质系统的可持续性思考,幼苗从不同销量的反应差异如何与缺水缺水?

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摘要

Nothofagus antarctica, is the most important species of the silvopastoral systems of southern Patagonia. However, there is limited information on the ecophysiological response mechanisms of seedlings for survival under different resource availability regimes, and whether such processes may differ between provenances. In this study, we evaluated the functional response to water shortage of seedlings of four N. antarctica provenances grown under controlled conditions. After an initial full irrigation period, seedlings were subjected to a water shortage cycle. Measurements of the diameter at the base of the stem, net photosynthesis (A(n)), stomatal conductance to water vapour (g(s)), predawn water potential ((pd)), osmotic potential at maximum and zero turgor ((100); (0)), relative water content at zero turgor (RWC0) and maximum modulus of elasticity (E-max) were carried out during the experimental period. Differences between provenances concerning An and g(s) rates were recorded under full irrigation conditions, but were not detected in association with drought stress. All provenances had similar osmotic potential values ((100) and (0)) at full irrigation, but water shortage led to significant osmotic potential differences between provenances. During the whole experimental period, no significant differences on RWC0 and E-max values were recorded among provenances. Under full irrigation conditions, all N. antarctica provenances had a similar physiological performance which suggests that environmental conditions may be the main driver for phenotypic differences in this species. From the osmotic adjustment results gathered, it is derived that a major osmoregulation capacity in response to water shortage is a common feature of all the N. antarctica provenances evaluated.
机译:Nothofagus南极洲是南巴拉哥尼亚硅晶体系统最重要的物种。然而,关于不同资源可用性制度的生存生存的生态学响应机制有限的信息,以及这些过程是否有所不同。在这项研究中,我们评估了在受控条件下生长的四个N.抗野草杂粮的幼苗幼苗缺水的功能反应。在初始完整的灌溉期后,幼苗进行缺水循环。茎底部直径的测量,净光合作用(A(n)),水蒸气的气孔导率(g(s)),预先预测水((pd)),最大渗透液和零η(( 100);(0)),在实验期间进行零凝血(RWC0)的相对含水量和最大弹性模量(E-MAX)。在完全灌溉条件下记录了有关促进率和G(S)率的差异,但没有与干旱胁迫结合检测到的。所有种类在完全灌溉时具有相似的渗透势值((100)和(0)),但水短缺导致培养之间的显着渗透潜在差异。在整个实验期间,在毕业中没有对RWC0和E-MAX值的显着差异。在完整的灌溉条件下,所有N.抗野猫种植具有类似的生理性能,这表明环境条件可能是该物种表型差异的主要驱动因素。从收集的渗透调整结果来看,得出的主要OsmoreGulation容量是响应水资源短缺的是评估所有N.南极洲销量的共同特征。

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  • 来源
    《Agroforestry Systems》 |2019年第2期|共13页
  • 作者单位

    INTA Cc 332 RA-9400 Rio Gallegos Santa Cruz Argentina;

    Ctr Invest Forestal Intituto Nacl Invest &

    Tecnol Agr &

    Alimentarias CIFOR INIA Carretera La Coruna Km 7-5 Madrid Spain;

    Consejo Nacl Invest Cient &

    Tecn Consejo Nacl Invest Cient &

    Tecn Buenos Aires DF Argentina;

    INTA Cc 332 RA-9400 Rio Gallegos Santa Cruz Argentina;

    Univ Nacl La Plata LISEA Diagonal 13 469 La Plata Buenos Aires Argentina;

    Ctr Invest Forestal Intituto Nacl Invest &

    Tecnol Agr &

    Alimentarias CIFOR INIA Carretera La Coruna Km 7-5 Madrid Spain;

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

    Native forest; Nire; Water stress; Photosynthesis; Osmotic adjustment;

    机译:原生森林;胭脂;水胁迫;光合作用;渗透调整;

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