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Stomatal Movements in Laurophyllous Plants

机译:在劳教植物中的气孔运动

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Stomata are the structural elements of plant epidermis which control transpiration and gas exchange. Each stoma consists of two guard cells divided by the stomatal aperture. These cells are capable of reversible deformations determining the width of aperture. It is known that these deformations depend on the value of turgor pressure in the guard cells and on the structure of their walls. In this work, the influence of the outer tangential wall geometry of the guard cells on stomatal movements is estimated by means of the finite element method in the ANSYS software. The application of modelling has shown that cuticular outgrowths on the tangential walls influence the degree and pattern of guard cell deformations. The outgrowths prevent wide opening of the stomatal aperture and cause its sinking deep into leaf epidermis. The functional significance of such stomatal movements is discussed. It is deduced that the discovered phenomenon had great importance to the survival of laurophyllous plants in conditions of aridization.
机译:气孔是植物表皮的结构元素,控制蒸腾和气体交换。每个造口由两个保护单元组成,除以气孔孔径。这些细胞能够确定确定孔径的宽度的可逆变形。众所周知,这些变形取决于护罩细胞中的Turgor压力的值以及它们的壁的结构。在这项工作中,通过ANSYS软件中的有限元方法估计了防护电池对气孔运动的外切壁几何学的影响。建模的应用表明,切向壁上的切口产物会影响防护细胞变形的程度和模式。生来的生长防止气孔孔的宽开口,并导致其深入进入叶片表皮。讨论了这种气孔运动的功能意义。推导出来,发现的现象对稀糖植物的存活率在引发条件下具有重要意义。

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