Uptake, accumulation, and metabolic fate of thioarsenates in plants
Uptake, accumulation, and metabolic fate of thioarsenates in plants
批准号:
406370610
负责人:
Professor Dr. Stephan Clemens
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2018
资助国家:
德国
项目状态:
已结题
起止时间:
2017-12-31 至 2022-12-31
中文摘要
由于自然和人为影响过程,类金属砷在环境中普遍存在。砷对所有类型的生物都有毒,对人类来说,它被归类为1类致癌物。砷不经意间通过转运体被植物吸收为必需或有益的营养物质。因此,从饮食中摄取植物性食物,特别是稻米是人类接触慢性毒性砷的主要途径。环境中存在不同种类的无机和有机砷。两种主要的无机As通常被认为是在氧化条件下的砷酸盐和在还原条件下的亚砷酸盐。此外,根际细菌可以甲基化砷,植物也可以吸收相应的有机砷。近年来,我们在稻田还原性条件下发现了无机和有机硫化即含硫砷的存在。尽管这些形式在各种野外条件下代表了总砷的很大一部分,但它们通常逃脱了常规的采样和分析方法。我们的初步研究证明了植物对硫代砷酸盐的吸收和相应的毒性。鉴于植物砷积累与食品安全的相关性,这两个观察结果迫切需要对硫砷酸盐对植物的影响以及硫砷酸盐对植物砷负荷的贡献进行机制理解。该项目旨在剖析植物对各种硫代砷酸盐的吸收途径,通过植物细胞内的还原和复合物形成的硫代砷酸盐的代谢转化,硫代砷酸盐衍生的砷种在植物组织之间的迁移,以及硫代砷酸盐暴露对植物砷负荷的总体贡献。研究的两种模式系统是水稻和拟南芥,前者也是食品安全的主要目标生物,后者在了解砷的运输和代谢方面取得了许多重大突破。对植物-硫代砷酸盐相互作用机制的深入了解,将使我们能够大大减少作物中普遍存在的砷的积累,从而减少人类的慢性中毒。
英文摘要
The metalloid arsenic is ubiquitous in the environment due to both natural and anthropogenically influenced processes. Arsenic is toxic to all types of organisms and for humans it is categorized as a class 1 carcinogen. Arsenic is inadvertently taken up by plants via transporters for essential or beneficial nutrients. Therefore, dietary intake of plant-derived food and especially of rice grains is a major route for human exposure to chronically toxic arsenic. Different inorganic and organic arsenic species are found in the environment. The two main inorganic As species generally considered to account for most of the As accumulation in plants are arsenate under oxidizing conditions and arsenite under reducing conditions. Also, rhizosphere bacteria can methylate arsenic and the respective organic arsenic species are taken up by plants, too.Recently, we discovered the occurrence of inorganic and organic thiolated, i.e. sulfur-containing, arsenic species under the reducing conditions of rice paddy fields. These forms typically escape routine sampling and analysis methods even though they represent a substantial fraction of total arsenic under various field conditions. Our pilot study demonstrated plant uptake of thioarsenates and respective toxicity. Given the relevance of plant arsenic accumulation for food safety, these two observations urgently demand a mechanistic understanding of thioarsenate effects on plants and the contribution of thioarsenates to the As load of plants. The proposed project aims at dissecting the uptake pathways for various thioarsenates in plants, the metabolic conversion of thioarsenates through reduction and complex formation within plant cells, the mobility of thioarsenate-derived arsenic species between plant tissues and finally the overall contribution of thioarsenate exposure to the arsenic load of plants. The two studied model systems are rice, which is also the main target organism with respect to food safety, and Arabidopsis thaliana, the plant that has enabled many of the major breakthroughs in understanding arsenic transport and metabolism. Mechanistic insights into the plant-thioarsenate interaction will enable approaches to substantially reduce the accumulation of ubiquitous arsenic in crop plants and thus the chronic poisoning of humans.
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会议论文
Natural variation, underlying molecular basis and ecological role of metal hyperaccumulation in Arabidopsis halleri
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批准号:197968016
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项目类别:Priority Programmes
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资助金额:$0.0万
-
财政年份:2011
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负责人:Professor Dr. Stephan Clemens
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依托单位:
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批准号:152515935
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2009
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负责人:Professor Dr. Stephan Clemens
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依托单位:
Molecular analysis of plant metal homeostasis, tolerance and accumulation in the model system Arabidopsis halleri
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批准号:5437998
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2004
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负责人:Professor Dr. Stephan Clemens
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依托单位:
Die molekulare Analyse der pflanzlichen Schwermetallhomöostase und -toleranz im Modellsystem Arabidopsis halleri
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批准号:5280142
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:2000
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负责人:Professor Dr. Stephan Clemens
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依托单位:
国内基金
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资助金额:48.0万元
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负责人:张波
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项目类别:面上项目
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