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Metal accumulation and competitive ability in metallicolous and non-metallicolous Thlaspi caerulescens fed with different Zn salts

机译:饲喂不同锌盐的金属性和非金属性拟南芥中金属的积累和竞争能力

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摘要

A non-metallicolous (NM) ecotype of Thlaspi caerulescens from Luxembourg and a metallicolous (M) ecotype from Prayon (E Belgium) are compared for growth and Zn, Mg and Ca accumulation in shoot in a pot experiment in six soil conditions with contrasting Zn availability. The soils were spiked with 2000 mg kg−1 Zn as monometallic salts of contrasting solubility. Both ecotypes were grown in pure and mixed culture in order to assess competitive ability. Both ecotypes had similar growth on all substrates except the one spiked with Zn-sulphate, where ecotype M grew better and had higher competitive ability than ecotype NM. Ecotype NM had higher Zn concentrations than M in all treatments and the difference varied with Zn availability, being largest with Zn-oxide (NM: 31 300 mg kg−1 Zn; M: 5900 mg kg−1 Zn). The results thus indicate that ecotype NM has constitutively higher Zn uptake capacity and may have a higher ability to obtain Zn from specific Zn salts. However, ecotype NM does not appear to be more efficient in obtaining Zn from little available forms. Mg concentration was also higher in ecotype NM. Zn mass per plant was higher in ecotype NM compared to ecotype M in all substrates except Zn-sulphate where the reverse was true. Accordingly, ecotype NM could prove to be a better phytoextractor of Zn for phytoremediation, except in substrates with low pH and high concentration of free Zn in the soil solution.
机译:在盆栽试验中,比较了Zn与Zn的对比,比较了盆栽试验中来自卢森堡的非金属(NM)生态型和拟南芥(E比利时)的金属(M)生态型的生长以及锌,镁和钙的积累。可用性。在土壤中掺入2000 mg kg-1 的Zn,作为溶解度相反的单金属盐。为了评估竞争能力,两种生态型均在纯和混合培养中生长。两种生态型在所有基质上都有相似的生长,但掺有硫酸锌的基质比M型生长更好,并且竞争能力比NM型高。在所有处理中,生态型NM的锌浓度均高于M,且差异随锌的有效性而变化,最大的是氧化锌(NM:31 300 mg kg-1 Zn; M:5900 mg kg-1 锌)。结果因此表明,生态型NM具有构成性较高的Zn吸收能力,并且可能具有从特定的Zn盐获得Zn的较高能力。但是,生态型NM似乎在从很少的可用形式中获得Zn方面更有效。生态型NM中的Mg浓度也更高。在所有基质中,生态型NM的单株锌质量均高于生态型M,而硫酸锌除外,这是正确的。因此,除了在土壤溶液中低pH值和高浓度游离Zn的基质中,生态型NM可能被证明是用于植物修复的更好的Zn植物提取剂。

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