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Effects of water stress on fruit growth and water relations between fruits and leaves in a hedgerow olive orchard

机译:水分胁迫对树篱橄榄果园水果生长和水关系的影响

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Yield, the final goal in agricultural systems, is highly determined by fruit growth. However, most works on deficit irrigation did not consider the physiology and dynamics of fruit growth. In this study, we explore the effect of water relations between leaves and fruits on fruit growth in well-watered (WW) and water-stressed (WS) trees in a super-high-density olive orchard (cv. Arbequina) over a full irrigation season (June October of 2017) in southern Spain. Both leaf and fruit water potential were measured, along with pressure-volume curves. Concomitantly, fruit growth and diurnal changes in six fruits of each irrigation treatment were continuously monitored with fruit gauges, which recorded changes in the equatorial diameter of the fruit. Fruit water status and growth were greatly affected by water stress, the latter recovering markedly, following our regulated deficit irrigation strategy. The gradient between leaf and fruit water potential was positive most of the time for both irrigation treatments, and greater for WS than WW trees, which suggests water flow into the fruit. However, we also observed negative fruit growth in WS which, together with the positive gradient, suggests that water flow from the parent plant to the fruit was insufficient to balance fruit transpiration under conditions of water deficit. Although a strong correlation was found between leaf water potential and the amplitude of fruit contraction in WW trees, this relationship did not hold for WS trees, suggesting a progressive decoupling of fruit water status from leaves as water stress progressed. Accordingly, an osmotic adjustment as evidenced by the analyses of pressure-volume curves occurred in WS fruits towards the end of the season. These results indicate that leaf-fruit water potential measurements may not be sufficient to study fruit-leaf water relationships in the canopy; however, fruit gauges may serve as highly useful instruments to understand the water status and daily dynamics of fruit growth.
机译:产量,农业系统的最终目标是通过果实生长的高度决定。然而,大多数关于赤字灌溉的作品并没有考虑果实生长的生理学和动态。在这项研究中,我们探讨了叶片和水果之间的水关系对水果生长的果实在一个完整的超高密度橄榄果园(CV)中浇水(WW)和水胁迫(WS)树木灌溉季节(2017年10月6月)在西班牙南部。测量叶片和果实水电位,以及压力量曲线。伴随着,用水果量仪连续监测各种灌溉处理的六个果实的果实生长和昼夜变化,记录了果实赤道直径的变化。水果水状况和增长受到水分压力的大大影响,后者在我们规范的赤字灌溉策略之后显着康复。叶片和水果水潜力之间的梯度大部分时间是灌溉治疗的大部分时间,并且对于WS的WS树更大,这表明水流进入水果。然而,我们也观察到WS的负果实生长,以及阳性梯度,表明从母体植物到水果中的水流量不足以在水赤字条件下平衡果子蒸腾。虽然在叶子水势和WW树的果实收缩之间发现了强烈的相关性,但这种关系没有持有WS树,因为水压力进展,叶片从叶子的渐进果实水位脱落。因此,通过分析压力体积曲线的分析在季节末端发生的渗透调整。这些结果表明,叶果水势测量可能不足以研究树冠中的果叶水关系;然而,水果仪可以作为高度有用的仪器,以了解水果生长的水位和日常动态。

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