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Suberin: the biopolyester at the frontier of plants

机译:Suberin:植物前沿的生物聚酯

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摘要

Suberin is a lipophilic macromolecule found in specialized plant cell walls, wherever insulation or protection toward the surroundings is needed. Suberized cells form the periderm, the tissue that envelops secondary stems as part of the bark, and develop as the sealing tissue after wounding or leaf abscission. Suberin is a complex polyester built from poly-functional long-chain fatty acids (suberin acids) and glycerol. The suberin acids composition of a number of plant tissues and species is now established, but how the polyester macromolecule is assembled within the suberized cell walls is not known. In the last years contributions from several areas have however significantly enriched our understanding of suberin. The primary structure of the polyester, i.e., how the suberin acids and glycerol are sequentially linked was revealed, together with the stereochemistry of the mid-chain functional groups some suberin acids have; solid-state NMR studies showed the presence of methylene chains spatially separated and with different molecular mobility; biophysical studies showed the membrane behavior of suberin acids derivatives, allowing new insights on structure-properties relationships; and a number of candidate genes were conclusively related to suberin biosynthesis. The comprehension of suberin as a macromolecule will be essential to understand its vital protective roles in plants and how they will deal with eventual environmental changes. Suberin is also expected to be a source for high-performing bio-based chemicals, taking advantage of the structural uniqueness of their constituent suberin acids.
机译:Suberin是一种亲脂性大分子,存在于专门的植物细胞壁中,需要隔离或保护周围环境。枯萎的细胞形成皮层,皮层包裹着作为树皮一部分的次生茎,并在受伤或脱落后发展成密封组织。 Suberin是一种由多官能长链脂肪酸(Suberin酸)和甘油构成的复杂聚酯。现在已经确定了许多植物组织和物种的枯草酸酸组成,但是尚不清楚聚酯大分子如何在枯草化的细胞壁内组装。在过去的几年中,来自几个领域的贡献极大地丰富了我们对木栓质的了解。揭示了聚酯的主要结构,即,乌木香酸和甘油是如何顺序连接的,以及一些乌木香酸具有的中链官能团的立体化学。固态NMR研究表明,亚甲基链的存在在空间上是分开的,并且具有不同的分子迁移率。生物物理研究表明,木栓质酸衍生物的膜行为,使人们对结构-性质关系有了新的认识。并且许多候选基因最终与suberin生物合成有关。了解木栓质作为大分子对于理解其在植物中的重要保护作用以及它们如何应对最终的环境变化将至关重要。 Suberin还有望利用其组成的Suberin酸的结构独特性,成为高性能生物基化学品的来源。

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