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杨树叶片水力结构的尺度变化。

The scaling of the hydraulic architecture in poplar leaves.

机构信息

Plant Biology Section, School of Integrative Plant Science, Cornell University, Ithaca, NY, 14853, USA.

出版信息

New Phytol. 2017 Apr;214(1):145-157. doi: 10.1111/nph.14385. Epub 2017 Jan 5.

Abstract

Although much is known about the hydraulics of xylem, the hydraulic interconnectivity and dimensional scaling of phloem with respect to xylem in leaves has not been adequately studied to test alternative hydraulic architectural rules such as da Vinci's rule or Murray's rule, or physiological models such as Münch's Pressure Flow hypothesis. Using confocal and electron microscopy as well as mathematical analyses, we examined the hydraulic architecture of the mature leaves of the model species Populus tremula × alba across all seven hierarchical orders of the vascular branching. We show that: phloem and xylem conductive areas increase from minor to major veins; the sum of the conductive areas for each vein order increases exponentially from major to minor veins; the volume of individual sieve tube and vessel members increases from minor to major veins; and phloem conductive area scales isometrically with respect to xylem area across all vein orders. The application of first principles to our data shows that conductive areas scale according to da Vinci's rule and not according to Murray's rule, and that the phloem network in poplar leaves can generate the pressure gradient envisioned in Münch's hypothesis.

摘要

尽管人们对木质部的水力学有了很多了解,但对于叶片中韧皮部相对于木质部的水力连通性和尺寸比例关系,尚未进行充分的研究,无法验证替代的水力结构规则,如达芬奇规则或默里规则,或生理模型,如明希的压力流假说。我们使用共聚焦和电子显微镜以及数学分析,研究了模式物种欧洲山杨×杂种白杨成熟叶片在所有七个血管分支层次等级上的水力结构。我们表明:韧皮部和木质部的导水面积从小脉到主脉逐渐增加;每个脉序的导水面积之和从主脉到小脉呈指数增长;单个筛管和导管成员的体积从小脉到主脉逐渐增加;并且韧皮部导水面积与木质部面积在所有脉序上呈等比关系。将第一性原理应用于我们的数据表明,导水面积符合达芬奇规则,而不符合默里规则,并且杨树叶中的韧皮部网络可以产生明希假说中设想的压力梯度。

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