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从对活的针叶树茎干的溶质排斥研究中推断纹孔膜在溶质运输中的作用。

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

作者信息

Yang Dongmei, Wei Kailu, Li Junhui, Peng Guoquan, Tyree Melvin T

机构信息

College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua 321004, China.

出版信息

J Exp Bot. 2020 May 9;71(9):2828-2837. doi: 10.1093/jxb/eraa058.

Abstract

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.

摘要

活细胞与死细胞之间纹孔的功能作用已从解剖学研究中推断出来,但积累生理学证据一直具有挑战性。采用离心法从木质部导管中去除水分,与传统方法相比,这种方法能更定量地通过重量法测定细胞壁的水分和固体含量。利用定量解剖学证据评估木质部导管中的水量和活细胞的含水量。用不同分子量的聚乙二醇对茎进行定量灌注,以确定无溶质空间。我们测量了茎中各解剖成分之间的水分和无溶质空间分配情况,并证明木质素阻碍了分子量>300的溶质的自由移动。因此,大溶质从活细胞向木质部导管的移动必然局限于纹孔结构,这些纹孔允许溶质通过无木质素的初生壁进行跨膜运输。将本文的数据与先前对缺乏死木纤维和导管之间纹孔的木本植物异常渗透关系的研究相结合,进一步表明了纹孔的功能作用。纹孔的缺失,再加上分子量>300的溶质被排除的证据,解释了这些意外的渗透特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/222b/7210765/6f558ab41ce9/eraa058f0001.jpg

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