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首页> 外文期刊>Progress in Artificial Intelligence >Investigating Effects of Bordered Pit Membrane Morphology and Properties on Plant Xylem Hydraulic Functions-A Case Study from 3D Reconstruction and Microflow Modelling of Pit Membranes in Angiosperm Xylem
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Investigating Effects of Bordered Pit Membrane Morphology and Properties on Plant Xylem Hydraulic Functions-A Case Study from 3D Reconstruction and Microflow Modelling of Pit Membranes in Angiosperm Xylem

机译:侧边坑膜形态与特性对植物木质液体函数的影响 - 以高血管纸坑膜的三维重建与微射线建模的案例研究

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摘要

Pit membranes in between neighboring conduits of xylem play a crucial role in plant water transport. In this review, the morphological characteristics, chemical composition and mechanical properties of bordered pit membranes were summarized and linked with their functional roles in xylem hydraulics. The trade-off between xylem hydraulic efficiency and safety was closely related with morphology and properties of pit membranes, and xylem embolism resistance was also determined by the pit membrane morphology and properties. Besides, to further investigate the effects of bordered pit membranes morphology and properties on plant xylem hydraulic functions, here we modelled three-dimensional structure of bordered pit membranes by applying a deposition technique. Based on reconstructed 3D pit membrane structures, a virtual fibril network was generated to model the microflow pattern across inter-vessel pit membranes. Moreover, the mechanical behavior of intervessel pit membranes was estimated from a single microfibril's mechanical property. Pit membranes morphology varied among different angiosperm and gymnosperm species. Our modelling work suggested that larger pores of pit membranes do not necessarily contribute to major flow rate across pit membranes; instead, the obstructed degree of flow pathway across the pit membranes plays a more important role. Our work provides useful information for studying the mechanism of microfluid flow transport across pit membranes and also sheds light on investigating the response of pit membranes both at normal and stressed conditions, thus improving our understanding on functional roles of pit membranes in xylem hydraulic function. Further work could be done to study the morphological and mechanical response of bordered pit membranes under different dehydrated conditions, as well as the related microflow behavior, based on our constructed model.
机译:在近距离的近距离导管之间的坑膜在植物水运输中发挥着至关重要的作用。在本次综述中,围绕腹膜膜的形态特征,化学成分和机械性能,与其在木质液压液中的功能作用相关联。木质液压效率和安全之间的折衷与坑膜的形态和性质密切相关,并且通过坑膜形态和性质也决定了木质栓塞抗性。此外,为了进一步调查腹部坑膜形态和性质对植物木质液体功能的影响,在这里,通过应用沉积技术,我们通过应用沉积技术建模了侧边坑膜的三维结构。基于重建的3D坑膜结构,产生虚拟原纤维网络以将微射线图案模拟血管间坑膜。此外,从单纤维的机械性能估计了术术坑膜的力学行为。坑膜形态在不同的血管植物和裸子植物种类中变化。我们的建模工作表明,孔膜的孔孔不一定有助于坑膜的主要流速;相反,坑膜穿过堵塞的流动程度起着更重要的作用。我们的工作提供了研究坑膜微流体流动运输机制的有用信息,并且在正常和胁迫条件下研究坑膜的响应,从而提高了对木质液体函数坑膜功能作用的理解。可以采取进一步的工作来研究不同脱水条件下边界坑膜的形态和机械响应,以及基于我们构建的模型的相关微流动行为。

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