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质外体:植物生存的关键因素

The Apoplast: A Key Player in Plant Survival.

作者信息

Farvardin Atefeh, González-Hernández Ana Isabel, Llorens Eugenio, García-Agustín Pilar, Scalschi Loredana, Vicedo Begonya

机构信息

Grupo de Bioquímica y Biotecnología, Departamento de Ciencias Agrarias y del Medio Natural, Universitat Jaume I de Castellón, Avenida de Vicent Sos Baynat, s/n, 12071 Castellón de la Plana, Spain.

出版信息

Antioxidants (Basel). 2020 Jul 10;9(7):604. doi: 10.3390/antiox9070604.

Abstract

The apoplast comprises the intercellular space, the cell walls, and the xylem. Important functions for the plant, such as nutrient and water transport, cellulose synthesis, and the synthesis of molecules involved in plant defense against both biotic and abiotic stresses, take place in it. The most important molecules are ROS, antioxidants, proteins, and hormones. Even though only a small quantity of ROS is localized within the apoplast, apoplastic ROS have an important role in plant development and plant responses to various stress conditions. In the apoplast, like in the intracellular cell compartments, a specific set of antioxidants can be found that can detoxify the different types of ROS produced in it. These scavenging ROS components confer stress tolerance and avoid cellular damage. Moreover, the production and accumulation of proteins and peptides in the apoplast take place in response to various stresses. Hormones are also present in the apoplast where they perform important functions. In addition, the apoplast is also the space where microbe-associated molecular Patterns (MAMPs) are secreted by pathogens. In summary, the diversity of molecules found in the apoplast highlights its importance in the survival of plant cells.

摘要

质外体包括细胞间隙、细胞壁和木质部。植物的重要功能,如养分和水分运输、纤维素合成以及参与植物抵御生物和非生物胁迫的分子合成,都在其中发生。最重要的分子是活性氧(ROS)、抗氧化剂、蛋白质和激素。尽管质外体中仅定位有少量的活性氧,但质外体活性氧在植物发育和植物对各种胁迫条件的反应中发挥着重要作用。在质外体中,如同在细胞内的细胞器中一样,可以发现一组特定的抗氧化剂,它们能够清除质外体中产生的不同类型的活性氧。这些清除活性氧的成分赋予植物胁迫耐受性并避免细胞损伤。此外,质外体中蛋白质和肽的产生与积累是对各种胁迫的响应。激素也存在于质外体中并在其中发挥重要功能。此外,质外体也是病原体分泌微生物相关分子模式(MAMP)的空间。总之,在质外体中发现的分子多样性突出了其在植物细胞存活中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e2e/7402137/e8d971058872/antioxidants-09-00604-g001.jpg

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