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首页> 外文期刊>Functional Plant Biology >Effects of drought on light-energy dissipation mechanisms in high-light-acclimated, field-grown grapevines
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Effects of drought on light-energy dissipation mechanisms in high-light-acclimated, field-grown grapevines

机译:干旱对高光适应,田间种植葡萄的光能耗散机制的影响

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摘要

The response of several light-energy dissipation mechanisms to water shortage was analysed in a 10-year study in field-grown, high-light-acclimated grapevines, and compared with those of greenhouse-grown, low-light-acclimated grapevines. Dissipation mechanisms, except leaf photochemistry, differ among cultivars and acclimate to the prevailing light conditions during growth. However, no additional acclimation to drought was observed. The dependence of the dissipation responses on stomatal conductance suggests that low CO2 availability in the chloroplasts during drought triggers variations in the energy dissipation pattern. In irrigated grapevines under high light, more than 50% of total absorbed energy is thermally dissipated. There is evidence that implicates the xanthophyll cycle as the main thermal dissipation processes. CO2 assimilation is the most important photochemical pathway of dissipation in irrigated plants, but is replaced by photorespiration when CO2 assimilation declines under mild drought. Under moderate to severe drought, both photosynthesis and photorespiration decline, and thermal dissipation increases to account for up to 90% of total dissipation. Involvement of other processes in light dissipation is minimal in grapevines. Even in severely-stressed leaves, the incidence of photoinhibition is very low, indicating that safe dissipation of absorbed energy is very effective in grapevines.
机译:在一项为期10年的田间种植,高光适应葡萄树的研究中,分析了几种光能耗散机制对缺水的响应,并与温室种植,低光适应葡萄树进行了比较。除叶片光化学外,其他品种的耗散机制也不同,并适应生长过程中的主要光照条件。然而,没有观察到对干旱的额外适应。耗散响应对气孔导度的依赖性表明,干旱期间叶绿体中低的CO2利用率会触发能量耗散模式的变化。在强光下灌溉的葡萄树中,总吸收能量的50%以上是热耗散的。有证据表明叶黄素循环是主要的散热过程。 CO2同化是灌溉植物中最重要的光化学耗散途径,但是当CO2同化在轻度干旱下下降时,将被光呼吸所取代。在中度至重度干旱下,光合作用和光呼吸均下降,并且散热增加,占总散热量的90%。在葡萄树中,其他过程对光耗散的影响最小。即使在压力很大的叶片中,光抑制的发生率也很低,这表明安全消散吸收能量在葡萄树中非常有效。

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