Guerra-Guimarães Leonor, Pinheiro Carla, Chaves Inês, Barros Danielle R, Ricardo Cândido P
Centro de Investigação das Ferrugens do Cafeeiro (CIFC), Instituto Superior de Agronomia (ISA), Universidade de Lisboa (UL), Quinta do Marquês, 2784-505 Oeiras, Portugal.
Linking Landscape, Environment, Agriculture and Food (LEAF), Instituto Superior de Agronomia (ISA), Universidade de Lisboa (UL), 1349-017 Lisboa, Portugal.
Proteomes. 2016 Jul 13;4(3):22. doi: 10.3390/proteomes4030022.
The extracellular space (ECS or apoplast) is the plant cell compartment external to the plasma membrane, which includes the cell walls, the intercellular space and the apoplastic fluid (APF). The present review is focused on APF proteomics papers and intends to draw information on the metabolic processes occurring in the ECS under abiotic and biotic stresses, as well as under non-challenged conditions. The large majority of the proteins detected are involved in "cell wall organization and biogenesis", "response to stimulus" and "protein metabolism". It becomes apparent that some proteins are always detected, irrespective of the experimental conditions, although with different relative contribution. This fact suggests that non-challenged plants have intrinsic constitutive metabolic processes of stress/defense in the ECS. In addition to the multiple functions ascribed to the ECS proteins, should be considered the interactions established between themselves and with the plasma membrane and its components. These interactions are crucial in connecting exterior and interior of the cell, and even simple protein actions in the ECS can have profound effects on plant performance. The proteins of the ECS are permanently contributing to the high dynamic nature of this plant compartment, which seems fundamental to plant development and adaptation to the environmental conditions.
细胞外空间(ECS或质外体)是质膜外部的植物细胞区室,包括细胞壁、细胞间隙和质外体流体(APF)。本综述聚焦于APF蛋白质组学论文,旨在获取有关在非生物和生物胁迫下以及非胁迫条件下ECS中发生的代谢过程的信息。检测到的绝大多数蛋白质参与“细胞壁组织与生物合成”、“对刺激的反应”和“蛋白质代谢”。显而易见,无论实验条件如何,总会检测到一些蛋白质,尽管其相对贡献不同。这一事实表明,未受胁迫的植物在ECS中具有内在的应激/防御组成型代谢过程。除了赋予ECS蛋白质的多种功能外,还应考虑它们自身之间以及与质膜及其成分之间建立的相互作用。这些相互作用对于连接细胞的外部和内部至关重要,甚至ECS中简单的蛋白质作用也会对植物性能产生深远影响。ECS的蛋白质持续促成该植物区室的高度动态性质,这似乎对植物发育和适应环境条件至关重要。