Glinkerman Christopher M, Lin Shaoting, Ni Jiahua, Li Fu-Shuang, Zhao Xuanhe, Weng Jing-Ke
Whitehead Institute for Biomedical Research, Cambridge, MA, 02142, USA.
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Commun Chem. 2022 Sep 12;5(1):110. doi: 10.1038/s42004-022-00729-w.
Sporopollenin is a mechanically robust and chemically inert biopolymer that constitutes the outer protective exine layer of plant spores and pollen grains. Recent investigation of the molecular structure of pine sporopollenin revealed unique monomeric units and inter-unit linkages distinct from other previously known biopolymers, which could be harnessed for new material design. Herein, we report the bioinspired synthesis of a series of sporopollenin analogues. This exercise confirms large portions of our previously proposed pine sporopollenin structural model, while the measured chemical, thermal, and mechanical properties of the synthetic sporopollenins constitute favorable attributes of a new kind of robust material. This study explores a new design framework of robust materials inspired by natural sporopollenins, and provides insights and reagents for future elucidation and engineering of sporopollenin biosynthesis in plants.
孢粉素是一种机械性能强大且化学性质稳定的生物聚合物,构成了植物孢子和花粉粒的外层保护性外壁。最近对松树孢粉素分子结构的研究揭示了独特的单体单元和单元间连接方式,与其他先前已知的生物聚合物不同,这些特性可用于新材料设计。在此,我们报告了一系列孢粉素类似物的仿生合成。这项工作证实了我们之前提出的松树孢粉素结构模型的大部分内容,而合成孢粉素的化学、热学和力学性能测量结果构成了一种新型坚固材料的有利属性。本研究探索了受天然孢粉素启发的坚固材料新设计框架,并为未来阐明和改造植物中孢粉素生物合成提供了见解和试剂。