Exploring Cd tolerance and detoxification strategies of Arabidopsis halleri ssp. gemmifera under high cadmium exposure.

IF 3.4 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Syarifah Hikmah Julinda Sari, Mei-Fang Chien, Chihiro Inoue
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引用次数: 0

Abstract

Arabidopsis halleri ssp. gemmifera is well known as a Cd hyperaccumulator. Yet, understanding how this plant survives in a high Cd environment without appearing toxicity signs is far from complete. Therefore, this study emphasized on high level of Cd to be applied to evaluate Cd detoxification and tolerance strategies in the hyperaccumulator A. halleri ssp. gemmifera. The results showed that under 300 µM of Cd exposure in a hydroponic system for 56 days, Cd tends to be transported to the stem and leaves. The availability of more than 60% of Cd mobile fractions supported Cd translocation to leaves. EPMA at the cellular level identified Cd localization at the rim of leaf cells that might be associated with the Cd-cell wall form. The Cd soluble fraction in the leaves was found as Cd-free ion and Cd-complexed compound. Interestingly, this plant can still grow despite some inhibition, such as significantly decreasing total chlorophyll and anthocyanins content in the leaves. It was predicted that Cd-free ions were sequestered into the vacuole of leaves cells, by complexing it into organic acid compounds. Therefore, tolerance strategies in A. halleri ssp. gemmifera at high Cd is proved to be associated to compartmentalization and complexation strategies.

拟南芥对Cd的耐受性及脱毒策略研究。高镉暴露下的金银花。
拟南芥gemmifera是众所周知的Cd超累加器。然而,了解这种植物如何在高镉环境中存活而不出现毒性迹象还远远不够。因此,本研究的重点是利用高水平的Cd来评价超积累植物哈勒利的Cd解毒和耐受策略。gemmifera。结果表明,在300µM的水培环境中,Cd暴露56 d后,Cd倾向于向茎叶转运。超过60%的镉流动组分的有效性支持镉向叶片的转运。细胞水平的EPMA鉴定出Cd定位于叶片细胞边缘,这可能与Cd细胞壁的形成有关。叶片中镉可溶部分以无镉离子和镉络合物的形式存在。有趣的是,这种植物仍然可以生长,尽管有一些抑制,如显著降低叶片中的总叶绿素和花青素含量。预测无镉离子通过络合成有机酸化合物而被隔离在叶片细胞的液泡中。因此,该菌株的耐受性策略。高Cd条件下的双胞菌被证明与区隔化和络合策略有关。
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来源期刊
International Journal of Phytoremediation
International Journal of Phytoremediation 环境科学-环境科学
CiteScore
7.60
自引率
5.40%
发文量
145
审稿时长
3.4 months
期刊介绍: The International Journal of Phytoremediation (IJP) is the first journal devoted to the publication of laboratory and field research describing the use of plant systems to solve environmental problems by enabling the remediation of soil, water, and air quality and by restoring ecosystem services in managed landscapes. Traditional phytoremediation has largely focused on soil and groundwater clean-up of hazardous contaminants. Phytotechnology expands this umbrella to include many of the natural resource management challenges we face in cities, on farms, and other landscapes more integrated with daily public activities. Wetlands that treat wastewater, rain gardens that treat stormwater, poplar tree plantings that contain pollutants, urban tree canopies that treat air pollution, and specialized plants that treat decommissioned mine sites are just a few examples of phytotechnologies.
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