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韧皮部运输在种子植物中的普遍性。

Universality of phloem transport in seed plants.

机构信息

Department of Physics, Center for Fluid Dynamics, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.

出版信息

Plant Cell Environ. 2012 Jun;35(6):1065-76. doi: 10.1111/j.1365-3040.2011.02472.x. Epub 2012 Jan 6.

Abstract

Since Münch in the 1920s proposed that sugar transport in the phloem vascular system is driven by osmotic pressure gradients, his hypothesis has been strongly supported by evidence from herbaceous angiosperms. Experimental constraints made it difficult to test this proposal in large trees, where the distance between source and sink might prove incompatible with the hypothesis. Recently, the theoretical optimization of the Münch mechanism was shown to lead to surprisingly simple predictions for the dimensions of the phloem sieve elements in relation to that of fast growing angiosperms. These results can be obtained in a very transparent way using a simple coupled resistor model. To test the universality of the Münch mechanism, we compiled anatomical data for 32 angiosperm and 38 gymnosperm trees with heights spanning 0.1-50 m. The species studied showed a remarkable correlation with the scaling predictions. The compiled data allowed calculating stem sieve element conductivity and predicting phloem sap flow velocity. The central finding of this work is that all vascular plants seem to have evolved efficient osmotic pumping units, despite their huge disparity in size and morphology. This contribution extends the physical understanding of phloem transport, and will facilitate detailed comparison between theory and field experiments.

摘要

自 20 世纪 20 年代 Münch 提出韧皮部中的糖分运输是由渗透压梯度驱动的假说以来,草本被子植物的大量证据强烈支持了这一假说。实验上的限制使得在大型树木中很难验证这一假说,因为源和汇之间的距离可能与假说不符。最近,Münch 机制的理论优化表明,对于与快速生长的被子植物相关的韧皮部筛分子的尺寸,会产生出人意料的简单预测。使用简单的耦合电阻器模型可以非常透明地获得这些结果。为了检验 Münch 机制的普遍性,我们编译了 32 种被子植物和 38 种裸子植物的解剖学数据,这些植物的高度范围为 0.1-50 米。研究的物种与比例预测显示出显著的相关性。编译的数据允许计算茎筛管的电导率并预测韧皮部汁液的流速。这项工作的中心发现是,尽管所有的维管植物在大小和形态上存在巨大差异,但它们似乎都进化出了高效的渗透泵送单元。这一贡献扩展了对韧皮部运输的物理理解,并将促进理论与田间实验之间的详细比较。

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