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Water relations of apple trees (Malus x domestica Borkh., cv. Gala) under partial rootzone drying irrigation.

机译:部分根区干燥灌溉下苹果树(Malus x domestica Borkh。,cv。Gala)的水关系。

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摘要

Single-leaf water relations, fruit growth and quality were monitored from 2001-2003 for field-grown apple (Malus x domestica Borkh. cv. 'Gala') trees. Trees were subjected to three irrigation treatments: (1) well-watered Control, (2) (DI50) 50% of irrigation volume applied the same way, and (3) (PRD50) 50% irrigation volume applied to half the surface area of the Control. In all years, average fruit size, yield and quality were not affected by irrigation treatments. Gas exchange was very low, irrespective of treatments, however leaf water potential (Psi) did not attain levels previously suggested to close stomata. Leaf abscisic acid (ABA) concentration did not differ among treatments. Stomata of apple leaves responded sensitively to the vapor pressure deficit (VPD) of the atmosphere regardless of soil moisture status. Water use efficiency (WUE) was not increased by deficit irrigation, but regulation of gas exchange by VPD allowed apple orchards to be irrigated at approximately 30% of reference evapo-transpiration (ETo).; In 2003, a split-rooted containerized system was developed by approach-grafting, one-year-old 'Gala' apple trees. Four irrigation treatments were imposed in 2004 over a 30-day experimental period: Control (>100% of ETc applied to both containers; PRD100 (>100% ETc) applied to one container only; and two treatments receiving 50% ETc applied to either one (PRD50) or both containers (DI50). Both PRD treatments had water alternated between containers when a threshold soil water content was attained. Monitoring of sap flow under fully irrigated conditions showed the dependency of root sap flow on root cross-sectional area. Previously dried roots responded rapidly to irrigation events. Both 50% ETc treatments experienced similar declines in predawn Psi (Psipd) and single-leaf gas exchange, relative to Controls. Leaf ABA concentration was similar for PRD50 and DI50, and was significantly higher than both >100% ETc treatments. The PRD100 and Control had similar Psipd, however gas exchange was reduced in PRD100 by 30% compared to Controls. Leaf ABA concentration was higher in PRD100 than Controls, but could not unequivocally account for the down-regulation of PRD100 stomata. As similarly reported in field experiments, WUE was not increased with deficit treatments.
机译:2001年至2003年,对田间种植的苹果树(Malus x domestica Borkh。cv。'Gala')树的单叶水关系,果实生长和质量进行了监测。对树木进行三种灌溉处理:(1)浇水良好的对照,(2)(DI50)以相同的方式施加50%的灌溉量,(3)(PRD50)50%的灌溉量施加到树木的一半表面积控制。在所有年份中,平均果实大小,产量和质量均不受灌溉处理的影响。无论采用何种处理方式,气体交换量都非常低,但是叶水势(Psi)并未达到先前建议的关闭气孔的水平。叶片脱落酸(ABA)的浓度在处理之间没有差异。无论土壤湿度如何,苹果叶片的气孔对大气的蒸气压亏缺(VPD)都敏感。亏缺灌溉并未提高用水效率(WUE),但是通过VPD调节气体交换使苹果园的灌溉量约为参考蒸发蒸腾量(ETo)的30%。 2003年,通过植根一岁的“ Gala”苹果树,开发了一种分叉的容器化系统。在30天的试验期内,2004年实施了四种灌溉处理:对照(​​两个容器均使用ETc大于100%;两个容器中PRD100(大于100%ETc);两个容器均接受50%ETc一个(PRD50)或两个容器(DI50),当达到一定的土壤含水量时,两种PRD处理都在容器之间交替水,在完全灌溉条件下对树液流量的监测表明,根汁液流量对根系横截面面积的依赖性。之前干燥的根对灌溉事件反应迅速,与对照相比,两种50%ETc处理的黎明前Psi(Psipd)和单叶气体交换均出现相似的下降,PRD50和DI50的叶片ABA浓度相似,且均高于两者> 100%ETc处理。PRD100和对照的Psipd相似,但是与对照相比,PRD100的气体交换减少了30%。PRD100中的叶片ABA浓度比对照高,但是d不能明确解释PRD100气孔的下调。如在田间实验中类似报道的那样,缺乏治疗不会增加WUE。

著录项

  • 作者

    Einhorn, Todd C.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Agriculture Horticulture.; Agriculture Plant Culture.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 作物生物学原理、栽培技术与方法;植物学;
  • 关键词

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