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首页> 外文期刊>Royal Society Open Science >How water availability influences morphological and biomechanical properties in the one-leaf plant Monophyllaea horsfieldii
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How water availability influences morphological and biomechanical properties in the one-leaf plant Monophyllaea horsfieldii

机译:水分如何影响单叶植物霍氏单叶植物的形态和生物力学特性

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摘要

In its natural habitat, the one-leaf plant Monophyllaea horsfieldii (Gesneriaceae) shows striking postural changes and dramatic loss of stability in response to intermittently occurring droughts. As the morphological, anatomical and biomechanical bases of these alterations are as yet unclear, we examined the influence of varying water contents on M. horsfieldii by conducting dehydration–rehydration experiments together with various imaging techniques as well as quantitative bending and turgor pressure measurements. As long as only moderate water stress was applied, gradual reductions in hypocotyl diameters and structural bending moduli during dehydration were almost always rapidly recovered in acropetal direction upon rehydration. On an anatomical scale, M. horsfieldii hypocotyls revealed substantial water stress-induced alterations in parenchymatous tissues, whereas the cell form and structure of epidermal and vascular tissues hardly changed. In summary, the functional morphology and biomechanics of M. horsfieldii hypocotyls directly correlated with water status alterations and associated physiological parameters (i.e. turgor pressure). Moreover, M. horsfieldii showed only little passive structural–functional adaptations to dehydration in comparison with poikilohydrous Ramonda myconi .
机译:在其自然栖息地中,一叶植物马鞭草(Gesneriaceae)表现出惊人的姿势变化,并响应间歇性干旱而急剧丧失稳定性。由于这些变化的形态学,解剖学和生物力学基础尚不清楚,我们通过进行脱水-再水化实验,各种成像技术以及定量弯曲和膨胀压力测量,研究了水分含量对霍斯菲尔德梭菌的影响。只要仅施加适度的水分胁迫,脱水后下胚轴直径和结构弯曲模量的逐渐减小几乎总是在再水化时沿顶盖方向迅速恢复。在解剖学上,霍斯分枝杆菌的下胚轴显示出实质性水分胁迫引起的实质组织的改变,而表皮和血管组织的细胞形式和结构几乎不变。综上所述,霍斯菲尔分枝杆菌下胚轴的功能形态和生物力学与水的状态变化和相关的生理参数(即膨大压力)直接相关。此外,与无水产的雷蒙达菌myconi相比,霍斯菲尔德杆菌对脱水仅表现出很少的被动结构-功能适应性。

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