Shukla Vinay, Barberon Marie
Department of Botany and Plant Biology, University of Geneva, 30 Quai Ernest Ansermet, 1211 Geneva, Switzerland.
Department of Botany and Plant Biology, University of Geneva, 30 Quai Ernest Ansermet, 1211 Geneva, Switzerland.
Curr Opin Plant Biol. 2021 Dec;64:102153. doi: 10.1016/j.pbi.2021.102153. Epub 2021 Nov 30.
Plant cells coated with hydrophobic compounds constitute a protective barrier to control movement of materials through plant tissues. In roots, the endodermis develops two barriers: the Casparian strips establish an apoplastic barrier and suberin lamellae prevent diffusion through the plasma membrane. Suberin is a complex biopolymer and its deposition is highly responsive to the environment. While the enzymatic framework involved in suberin biosynthesis is well characterized, subsequent steps in suberin formation and regulation remained elusive. Recent publications, studying suberin from a cell biological perspective, have enriched our knowledge on suberin transport and polymerization in the cell wall. These studies have also elucidated the molecular mechanisms controlling suberin biosynthesis and regulation as well as its physiological role in plant abiotic and biotic interactions.
被疏水化合物包裹的植物细胞构成了一道保护屏障,以控制物质在植物组织中的移动。在根部,内皮层形成了两道屏障:凯氏带建立了质外体屏障,而木栓质片层则阻止物质通过质膜扩散。木栓质是一种复杂的生物聚合物,其沉积对环境高度敏感。虽然木栓质生物合成所涉及的酶促框架已得到充分表征,但木栓质形成和调控的后续步骤仍不清楚。最近从细胞生物学角度研究木栓质的出版物,丰富了我们对木栓质在细胞壁中的运输和聚合的认识。这些研究还阐明了控制木栓质生物合成、调控及其在植物非生物和生物相互作用中的生理作用的分子机制。