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基于木聚糖的纳米隔间协调植物导管壁的图案形成。

Xylan-based nanocompartments orchestrate plant vessel wall patterning.

机构信息

State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, The Innovative Academy of Seed Design, Chinese Academy of Sciences, Beijing, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Nat Plants. 2022 Mar;8(3):295-306. doi: 10.1038/s41477-022-01113-1. Epub 2022 Mar 22.

Abstract

Nanoclustering of biomacromolecules allows cells to efficiently orchestrate biological processes. The plant cell wall is a highly organized polysaccharide network but is heterogeneous in chemistry and structure. However, polysaccharide-based nanocompartments remain ill-defined. Here, we identify a xylan-rich nanodomain at pit borders of xylem vessels. We show that these nanocompartments maintain distinct wall patterns by anchoring cellulosic nanofibrils at the pit borders, critically supporting vessel robustness, water transport and leaf transpiration. The nanocompartments are produced by the activity of IRREGULAR XYLEM (IRX)10 and its homologues, which we show are de novo xylan synthases. Our study hence outlines a mechanism of how xylans are synthesized, how they assemble into nanocompartments and how the nanocompartments sustain cell wall pit patterning to support efficient water transport throughout the plant body.

摘要

生物大分子的纳米簇集使细胞能够有效地协调生物过程。植物细胞壁是一个高度组织化的多糖网络,但在化学和结构上是不均匀的。然而,基于多糖的纳米隔间仍然定义不明确。在这里,我们在木质部导管的纹孔边缘鉴定出富含木聚糖的纳米域。我们表明,这些纳米隔间通过在纹孔边缘锚定纤维素纳米纤维来维持独特的细胞壁模式,这对导管的坚固性、水分运输和叶片蒸腾至关重要。纳米隔间是由不规则木质部(IRX)10 及其同源物的活性产生的,我们表明它们是从头开始的木聚糖合成酶。因此,我们的研究概述了木聚糖如何合成、如何组装成纳米隔间以及纳米隔间如何维持细胞壁纹孔模式以支持整个植物体中高效的水分运输的机制。

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