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Effect of heavy metals and organic matter on root exudates (low molecular weight organic acids) of herbaceous species: An assessment in sand and soil conditions under different levels of contamination

机译:重金属和有机物对草本物种根系分泌物(低分子量有机酸)的影响:在不同污染水平下沙土条件下的评估

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Bioavailability of heavy metals can be modified by different root exudates. Among them, low molecular weight organic acids (LMWOAs) play an important role in this process. Three plant species (Poa annua, Medicago polymorpha and MaIva sylvestris), potentially used for phytoremediation, have been assessed for both metal uptake and LMWOAs excretion in contaminated environments with different concentrations of Cd, Cu and Zn. The experiments have been carried out in washed sand and in three contaminated soils where two organic amendments were added (biosolid compost and alperujo compost). The most abundant LMWOAs excreted by all studied plants were oxalic and malic acids, although citric and fumaric acids were also detected. The general tendency was that plants responded to an increase of heavy metal stress releasing higher amounts of LMWOAs. This is an efficient exclusion mechanism reducing the metal uptake and allowing the plant growth at high levels of contamination. In the experiment using wash sand as substrate, the organic acids composition and quantity depended mainly on plant species and metal contamination. M. polymorpha was the species that released the highest concentrations of LMWOAs, both in sand and in soils with no amendment addition, whereas a decrease of these acids was observed with the addition of amendments. Our results established a clear effect of organic matter on the composition and total amount of LMWOAs released. The increase of organic matter and nutrients, through amendments, improved the soil quality reducing phytotoxicity. As a result, organic acids exudates decreased and were solely composed of oxalic acid (except for M. polymorpha). The release of LMWOAs has proved to be an important mechanism against heavy metal stress, unique to each species and modifiable by means of organic amendment addition. (C) 2016 Elsevier Ltd. All rights reserved.
机译:重金属的生物利用度可以通过不同的根系分泌物进行调节。其中,低分子量有机酸(LMWOA)在此过程中起重要作用。已评估了可能用于植物修复的三种植物物种(Poa annua,Medicago polymorpha和Sylvestris)在不同浓度的Cd,Cu和Zn污染环境中的金属吸收和LMWOAs排泄。实验是在洗过的沙子和三种受污染的土壤中进行的,在土壤中添加了两种有机改良剂(生物固体堆肥和alperujo堆肥)。尽管也检测到柠檬酸和富马酸,但所有研究过的植物排出的最丰富的LMWOAs是草酸和苹果酸。一般趋势是植物对重金属胁迫的增加作出反应,释放出更多的LMWOA。这是一种有效的排除机制,可减少金属吸收并允许植物在高污染水平下生长。在以洗砂为基质的实验中,有机酸的组成和数量主要取决于植物种类和金属污染。在没有添加修饰剂的沙地和土壤中,多形孢子菌释放出最高的LMWOA浓度,而添加修饰剂时观察到这些酸的减少。我们的结果确定了有机物对释放的LMWOA的组成和总量的明显影响。通过改良有机物和养分的增加,改善了土壤质量,降低了植物毒性。结果,有机酸渗出物减少,并且仅由草酸组成(多形分支杆菌除外)。 LMWOAs的释放已被证明是抵抗重金属胁迫的重要机制,它对每个物种而言都是独特的,并且可以通过添加有机修饰剂进行修饰。 (C)2016 Elsevier Ltd.保留所有权利。

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