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芜菁对镉耐受性及积累机制的生理生化分析

Physiological and biochemical analysis of mechanisms underlying cadmium tolerance and accumulation in turnip.

作者信息

Li Xiong, Zhang Xiaoming, Wu Yuansheng, Li Boqun, Yang Yongping

机构信息

Key Laboratory for Plant Diversity and Biogeography of East Asia, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China.

China Germplasm Bank of Wild Species, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China.

出版信息

Plant Divers. 2018 Jan 4;40(1):19-27. doi: 10.1016/j.pld.2017.12.005. eCollection 2018 Feb.

Abstract

The capacity of plants to accumulate cadmium (Cd) is significant for phytoremediation of Cd-polluted soils. Turnips cultivated in China include species featuring high Cd accumulation and some of these plants act as Cd hyperaccumulator landraces. These plants can accumulate over 100 mg Cd kg dry weight in leaves without injury. Hence, studies that explore mechanisms underlying Cd detoxification and transport in turnip plants are essential. In the present study, we compared physiological and biochemical changes in turnip leaves treated with two Cd concentrations to controls. We discovered that Cd stress significantly increased the enzymatic activities or compound contents in the antioxidant system, including members of the glutathione-ascorbic acid cycle, whereas oxidation of reactive oxygen species (ROS) remained stable. Cd treatments also increased the contents of phytochelatins as well as a number of amino acids. Based on these results, we conclude that turnips initiate a series of response processes to manage Cd treatment. First, the antioxidant system maintaining ROS homeostasis and osmotic adjustment is excited to maintain stability of cell osmotic potential. Cd is chelated into its stable form to reduce its toxicity. Cd is possibly transported to vacuoles or non-protoplasts for isolation. Amino acid synthesis may directly and indirectly play an important role in these processes. This study partly revealed physiological and biochemical mechanisms underlying turnip response to Cd stress and provides information on artificially increasing or decreasing Cd accumulation in turnips and other plants.

摘要

植物积累镉(Cd)的能力对于镉污染土壤的植物修复具有重要意义。在中国种植的芜菁包括一些具有高镉积累特性的品种,其中一些植物可作为镉超积累地方品种。这些植物叶片中可积累超过100毫克镉/千克干重而不受损伤。因此,探索芜菁植物中镉解毒和转运潜在机制的研究至关重要。在本研究中,我们比较了用两种镉浓度处理的芜菁叶片与对照叶片的生理和生化变化。我们发现,镉胁迫显著提高了抗氧化系统中的酶活性或化合物含量,包括谷胱甘肽 - 抗坏血酸循环的成员,而活性氧(ROS)的氧化作用保持稳定。镉处理还增加了植物螯合肽以及多种氨基酸的含量。基于这些结果,我们得出结论,芜菁启动了一系列应对镉处理的反应过程。首先,维持ROS稳态和渗透调节的抗氧化系统被激活,以维持细胞渗透势的稳定性。镉被螯合为稳定形式以降低其毒性。镉可能被转运到液泡或非原生质体中进行隔离。氨基酸合成可能在这些过程中直接和间接地发挥重要作用。本研究部分揭示了芜菁对镉胁迫响应的生理和生化机制,并为人工增加或减少芜菁及其他植物中的镉积累提供了信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f579/6091934/a8c190d59489/gr1.jpg

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