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Rootstocks with Different Vigor Influenced Scion–Water Relations and Stress Responses in AmbrosiaTM Apple Trees (Malus Domestica var. Ambrosia)

机译:具有不同活力的砧木影响了Ambrosiatm苹果树(Malus domestica var。ambrosia)中的水平水关系和压力反应

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摘要

In recent years, awareness has been raised around the benefits of diversifying rootstocks, in order to enhance tree health and sustain apple fruit production under the influence of climate change. However, performances of many rootstocks under stresses remain unclear. This study aimed to set the first step towards a much-needed comprehensive evaluation on water relationships and stress responses of scion–rootstock systems for the popular apple cultivar AmbrosiaTM (Malus domestica var. Ambrosia), because its production and horticultural knowledge had been largely limited to the Malling 9 rootstock (M.9). Five rootstocks were evaluated in a greenhouse water deficit experiment and at the onset of heat stress in a field trial in Summerland, British Columbia, Canada. Multiple stress indicators of leaves and fruits were analyzed to elucidate water use strategies and drought resistance mechanisms. The rootstocks led to differences in scion vigor, and stomatal and photosynthetic characteristics. The largest semi-dwarfing Geneva 202 (G.202) demonstrated more water use and higher stress susceptibility. Large dwarfing Geneva 935 (G.935) and Malling 26 (M.26) showed more stringent stomatal control and reduced water use under stresses, typical of a drought-avoidance strategy. The smallest large dwarfing M.9NIC29® and the small dwarfing Budagovsky 9 (B.9) led to smaller and denser stomata. B.9 demonstrated the most stable water status and drought tolerance. The study suggested that scion stress responses were influenced by rootstock vigor and tree water use strategies. It implied the necessity of vigor-specific irrigation management for alleviating stresses and achieving production goals of different rootstocks.
机译:近年来,在多样化砧木的益处,提高了意识,以提高树木健康,在气候变化的影响下维持苹果果生产。然而,在应力下许多砧木的性能仍然尚不清楚。本研究旨在为流行的苹果品种Ambrosiatm(Malus domestica var。ambrosia)的水关系和应力响应进行迈向水关系和应力反应的第一步(ambrosia),因为它的生产和园艺知识已经很大程度上是有限的到弹出9个砧木(M.9)。在温室水缺陷实验中评估了五种砧木,并在夏天,不列颠哥伦比亚省的野外试验中的热应力发作。分析了叶片和水果的多重应力指示剂,以阐明用水策略和抗旱机制。砧木导致了裂缝活力,气孔和光合特性的差异。最大的半矮星日内瓦202(G.202)展示了更多的用水和更高的应力易感性。大型矮小日内瓦935(G.935)和Malling 26(M.26)显示出更严格的气孔控制和降低的压力,典型的干旱避免策略。最小的大型矮化M.9nic29®和小矮化Budagovsky 9(B.9)导致更小和更密集的气孔。 B.9展示了最稳定的水位和耐旱性。该研究表明,砧木活力和树用水策略的影响受到影响。它暗示了减轻压力和实现不同砧木的生产目标的活力特定的灌溉管理的必要性。

著录项

  • 期刊名称 Plants
  • 作者

    Hao Xu; Danielle Ediger;

  • 作者单位
  • 年(卷),期 2021(10),4
  • 年度 2021
  • 页码 614
  • 总页数 19
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:抗旱;矮化砧木;热应力;叶煤气交换;气孔特征;用水策略;

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