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Water Shortage Strongly Alters Formation of Calcium Oxalate Druse Crystals and Leaf Traits in Fagopyrum esculentum

机译:缺水缺水强烈改变了在Fagopyrum Esculentum中的草酸钙糊涂晶体和叶状性状的形成

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摘要

Common buckwheat ( Moench) is a robust plant with high resistance to different environmental constraints. It contains high levels of calcium oxalate (CaOx) druse crystals, although their role remains obscure. The objective was to examine the effects of water shortage on plant biomass partition and leaf traits and formation of CaOx druse crystals in common buckwheat. Buckwheat plants were exposed to favorable and reduced water availability for 28 days. The element composition and morphological, biochemical, physiological and optical traits of the leaves, and the plant biomass were investigated under these conditions. Measurements of photochemical efficiency of photosystem II showed undisturbed functioning for buckwheat exposed to water shortage, apparently due to partially closed stomata and more efficient water regulation. Strong relationships were seen between water-related parameters and Ca, Mn and S content, and size and density of CaOx druse crystals. Redundancy analysis revealed the importance of the size of CaOx druse crystals to explain reflection in the UV range. Water shortage resulted in shorter plants with the same leaf mass (i.e., increased mass:height ratio), which, together with denser leaf tissue and higher content of photosynthetic pigments and protective substances, provides an advantage under extreme weather conditions.
机译:常见的荞麦(Moench)是一种强大的植物,具有高抗性环境约束。它含有高水平的草酸钙(CAOX)DRUSE晶体,尽管它们的作用仍然模糊不清。目的是探讨缺水对植物生物质分区和叶状性状的影响以及常见荞麦中的曹莫德晶体的形成。荞麦植物暴露于有利,降低水可用性28天。在这些条件下研究了叶片的元素组成和形态学,生物化学,生理学,生理学和光学性状,植物生物质。照相系统II的光化学效率的测量显示出不受干扰的荞麦污水缺水功能,显然是由于部分闭合的气孔和更有效的水调节。在水有关的参数和Ca,Mn和S含量和CaOX druse晶体的尺寸和密度之间看到了强烈的关系。冗余分析揭示了Caox Druse晶体大小的重要性,以解释UV范围的反射。缺水导致较短的植物具有相同的叶片(即质量增加:高度比率),其与密集叶组织和更高的光合色素和保护物质一起,提供了极端天气条件下的优势。

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