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Inferring the role of pit membranes in solute transport from solute exclusion studies in living conifer stems

机译:推断坑膜在活针叶树茎中溶质排斥研究中的溶质膜的作用

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摘要

The functional role of pits between living and dead cells has been inferred from anatomical studies but amassing physiological evidence has been challenging. Centrifugation methods were used to strip water from xylem conduits, permitting a more quantitative gravimetric determination of the water and solid contents of cell walls than is possible by more traditional methods. Quantitative anatomical evidence was used to evaluate the water volume in xylem conduits and the water content of living cells. Quantitative perfusion of stems with polyethylene glycol of different molecular weight was used to determine the solute-free space. We measured the portioning of water and solute-free space among anatomical components in stems and demonstrated that lignin impeded the free movement of solutes with molecular weight >300. Hence, movement of large solutes from living cells to xylem conduits is necessarily confined to pit structures that permit transmembrane solute transport via primary walls without lignin. The functional role of pits was additionally indicated by combining data in this paper with previous studies of unusual osmotic relationships in woody species that lack pits between dead wood fibers and vessels. The absence of pits, combined with the evidence of exclusion of solutes of molecular weight >300, explains the unexpected osmotic properties.
机译:从解剖学研究中推断出生物和死细胞之间的凹坑的功能作用,但是大使生理证据一直在具有挑战性。离心方法用于从木质导管中剥离水,允许更多定量的重量测定水和固体含量的细胞壁的固体含量,而不是通过更传统的方法。定量解剖证据用于评估木质导管和活细胞的水含量的水量。使用不同分子量的聚乙二醇的茎的定量灌注来确定无溶质空间。我们测量了茎中解剖组分之间的水和无溶质空间的分布,并证明了木质素阻碍了用分子量> 300的溶质的自由运动。因此,从活细胞到木耳导管的大溶质的运动必然限于允许通过没有木质素的初级壁的跨膜溶质转运。通过将本文中的数据与先前的木质物种中缺乏凹陷在死木纤维和血管之间的凹坑中的异常渗透关系的研究,另外表明了凹坑的功能作用。没有凹坑,与排除分子量> 300的溶质的证据结合,解释了意外的渗透性质。

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