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Effectiveness of cuticular transpiration barriers in a desert plant at controlling water loss at high temperatures

机译:沙漠植物表皮蒸腾屏障在控制高温失水情况下的有效性

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摘要

Maintaining the integrity of the cuticular transpiration barrier even at elevated temperatures is of vital importance especially for hot-desert plants. Currently, the temperature dependence of the leaf cuticular water permeability and its relationship with the chemistry of the cuticles are not known for a single desert plant. This study investigates whether (i) the cuticular permeability of a desert plant is lower than that of species from non-desert habitats, (ii) the temperature-dependent increase of permeability is less pronounced than in those species and (iii) whether the susceptibility of the cuticular permeability barrier to high temperatures is related to the amounts or properties of the cutin or the cuticular waxes. We test these questions with Rhazya stricta using the minimum leaf water vapour conductance (gmin) as a proxy for cuticular water permeability. gmin of R. stricta (5.41 × 10−5 m s−1 at 25 °C) is in the upper range of all existing data for woody species from various non-desert habitats. At the same time, in R. stricta, the effect of temperature (15–50 °C) on gmin (2.4-fold) is lower than in all other species (up to 12-fold). Rhazya stricta is also special since the temperature dependence of gmin does not become steeper above a certain transition temperature. For identifying the chemical and physical foundation of this phenomenon, the amounts and the compositions of cuticular waxes and cutin were determined. The leaf cuticular wax (251.4 μg cm−2) is mainly composed of pentacyclic triterpenoids (85.2% of total wax) while long-chain aliphatics contribute only 3.4%. In comparison with many other species, the triterpenoid-to-cutin ratio of R. stricta (0.63) is high. We propose that the triterpenoids deposited within the cutin matrix restrict the thermal expansion of the polymer and, thus, prevent thermal damage to the highly ordered aliphatic wax barrier even at high temperatures.
机译:即使在高温下,保持表皮蒸腾屏障的完整性也至关重要,尤其是对于热沙漠植物。目前,对于单个沙漠植物而言,尚不知道叶片表皮透水性的温度依赖性及其与表皮化学性质的关系。这项研究调查(i)沙漠植物的表皮渗透性是否低于非沙漠生境物种的表皮渗透性;(ii)温度依赖性渗透性的增加不如那些物种显着,以及(iii)是否易感性表皮渗透性屏障对高温的影响与角质或表皮蜡的量或性质有关。我们使用最小叶片水蒸气传导率(gmin)作为表皮透水性的代用品,用Rhazya stricta测试了这些问题。严格罗非鱼的gmin(在25°C时为5.41×10 −5 ms −1 )在所有现有的来自各种非沙漠化木本物种数据的上限中栖息地。同时,在R.stricta中,温度(15–50°C)对gmin的影响(2.4倍)低于所有其他物种(最高12倍)。严格的Rhazya stricta也很特别,因为gmin的温度依赖性在一定的转变温度以上不会变得更陡峭。为了确定该现象的化学和物理基础,确定了表皮蜡和角质的含量和组成。叶片表皮蜡(251.4μgcm −2 )主要由五环三萜类化合物构成(占蜡总量的85.2%),而长链脂肪族化合物仅占3.4%。与许多其他物种相比,严格罗非鱼的三萜与角质素比率(0.63)很高。我们提出沉积在角质基质中的三萜类化合物限制了聚合物的热膨胀,因此即使在高温下也可以防止对高度有序的脂肪族蜡阻隔层的热破坏。

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