Dr. M. Ajmal Khan Institute for Sustainable Halophyte Utilization, University of Karachi, Sindh 75270, Pakistan.
Agricultural Biotechnology Division, National Institute for Biotechnology & Genetic Engineering (NIBGE), Faisalabad 44000, Pakistan.
Cells. 2021 Aug 7;10(8):2023. doi: 10.3390/cells10082023.
Salinity is a growing problem affecting soils and agriculture in many parts of the world. The presence of salt in plant cells disrupts many basic metabolic processes, contributing to severe negative effects on plant development and growth. This review focuses on the effects of salinity on chloroplasts, including the structures and function of these organelles. Chloroplasts house various important biochemical reactions, including photosynthesis, most of which are considered essential for plant survival. Salinity can affect these reactions in a number of ways, for example, by changing the chloroplast size, number, lamellar organization, lipid and starch accumulation, and interfering with cross-membrane transportation. Research has shown that maintenance of the normal chloroplast physiology is necessary for the survival of the entire plant. Many plant species have evolved different mechanisms to withstand the harmful effects of salt-induced toxicity on their chloroplasts and its machinery. The differences depend on the plant species and growth stage and can be quite different between salt-sensitive (glycophyte) and salt-tolerant (halophyte) plants. Salt stress tolerance is a complex trait, and many aspects of salt tolerance in plants are not entirely clear yet. In this review, we discuss the different mechanisms of salt stress tolerance in plants with a special focus on chloroplast structure and its functions, including the underlying differences between glycophytes and halophytes.
盐度是一个日益严重的问题,影响着世界许多地区的土壤和农业。盐在植物细胞中的存在会破坏许多基本的代谢过程,对植物的发育和生长造成严重的负面影响。本综述重点介绍了盐度对叶绿体的影响,包括这些细胞器的结构和功能。叶绿体容纳着各种重要的生化反应,包括光合作用,其中大多数被认为是植物生存所必需的。盐度可以通过改变叶绿体的大小、数量、层状组织、脂质和淀粉积累以及干扰跨膜运输等多种方式影响这些反应。研究表明,维持叶绿体的正常生理学对整个植物的生存是必要的。许多植物物种已经进化出不同的机制来抵御盐诱导的毒性对其叶绿体及其机制的有害影响。这些差异取决于植物物种和生长阶段,在盐敏感(喜盐植物)和盐耐受(盐生植物)植物之间可能有很大的不同。盐胁迫耐受性是一个复杂的特征,植物的许多方面的耐盐性还不完全清楚。在本综述中,我们讨论了植物耐盐性的不同机制,特别关注叶绿体的结构和功能,包括喜盐植物和盐生植物之间的差异。