Xin Anzhou, Herburger Klaus
The Edinburgh Cell Wall Group, Institute of Molecular Plant Sciences, School of Biological Sciences, The University of Edinburgh, Edinburgh, United Kingdom.
Section for Plant Glycobiology, Department of Plant and Environmental Sciences, University of Copenhagen, Copenhagen, Denmark.
Front Plant Sci. 2021 Jan 7;11:590990. doi: 10.3389/fpls.2020.590990. eCollection 2020.
The plant apoplast contains the four hydrophobic polymer, lignin, suberin, cutin, and cutan, that are crucial for stress resistance, controlling solute diffusion, and strengthening the cell wall. Some of these polymers are widely used in industry and daily life products, such as all wood-containing goods (lignin) and wine cork (suberin). Despite the importance of these polymers, several aspects of their formation remain unknown. This mini review highlights technical bottlenecks in the current research and summarizes recent insights into the precursor transmembrane transport, an essential step in the polymer formation. We also briefly discuss how some of the remaining knowledge gaps can be closed and how a better understanding of these biopolymers will benefit other research fields.
植物质外体包含四种疏水性聚合物,即木质素、木栓质、角质和角质素,它们对于抗逆性、控制溶质扩散以及强化细胞壁至关重要。这些聚合物中的一些广泛应用于工业和日常生活用品中,例如所有含木材的产品(木质素)和葡萄酒瓶塞(木栓质)。尽管这些聚合物很重要,但其形成的几个方面仍不清楚。本综述强调了当前研究中的技术瓶颈,并总结了对聚合物形成过程中一个关键步骤——前体跨膜运输的最新见解。我们还简要讨论了如何填补一些尚存的知识空白,以及更好地理解这些生物聚合物将如何惠及其他研究领域。