Mir Ricardo, Mircea Diana M, Ruiz-González Mario X, Brocal-Rubio Paco, Boscaiu Monica, Vicente Oscar
Institute for the Conservation and Improvement of Valencian Agrodiversity (COMAV), Universitat Politècnica de València, Camino de Vera s/n, 46022 Valencia, Spain.
Mediterranean Agroforestry Institute (IAM), Universitat Politècnica de València, Camino de Vera s/n, 46022 Valencia, Spain.
Plants (Basel). 2024 Oct 15;13(20):2880. doi: 10.3390/plants13202880.
Salinity is an increasing problem for agriculture. Most plant species tolerate low or, at best, moderate soil salinities. However, a small (<1%) proportion of species, termed halophytes, can survive and complete their life cycle in natural habitats with salinities equivalent to 200 mM NaCl or more. is a succulent annual halophyte belonging to the Brassicaceae family; it is dispersed worldwide and mainly grows in foreshores. growth is optimal under slight (i.e., 100 mM NaCl) saline conditions, measured by biomass and seed production. Higher salt concentrations, up to 500 mM NaCl, significantly impact its growth but do not compromise its survival. alleviates sodium toxicity through different strategies, including anatomical and morphological adaptations, ion transport regulation, biosynthesis of osmolytes, and activation of antioxidative mechanisms. The species is potentially useful as a cash crop for the so-called biosaline agriculture due to its production of secondary metabolites of medical and nutritional interest and the high oil accumulation in its seeds. In this review, we highlight the relevance of this species as a model for studying the basic mechanisms of salt tolerance and for sustainable biosaline agriculture in the context of soil salination and climate change.
盐度对农业来说是一个日益严重的问题。大多数植物物种只能耐受低盐度,或者至多中等盐度的土壤。然而,一小部分(<1%)物种,即盐生植物,能够在盐度相当于200 mM NaCl或更高的自然栖息地中存活并完成其生命周期。盐芥是一种属于十字花科的肉质一年生盐生植物;它分布于世界各地,主要生长在海岸边。通过生物量和种子产量衡量,盐芥在轻度(即100 mM NaCl)盐渍条件下生长最佳。高达500 mM NaCl的更高盐浓度会显著影响其生长,但不会危及它的存活。盐芥通过不同策略缓解钠毒性,包括解剖学和形态学适应、离子运输调节、渗透调节剂的生物合成以及抗氧化机制的激活。由于其产生具有医学和营养价值的次生代谢产物以及种子中高油积累,该物种作为所谓生物盐农业的经济作物具有潜在用途。在本综述中,我们强调了该物种作为研究耐盐基本机制以及在土壤盐渍化和气候变化背景下可持续生物盐农业模型的相关性。