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超积累植物天蓝遏蓝菜的根系分泌物不会增强金属的活化作用。

Root exudates of the hyperaccumulator Thlaspi caerulescens do not enhance metal mobilization.

作者信息

Zhao F J, Hamon R E, McLaughlin M J

机构信息

Agriculture and the Environment Division, IACR-Rothamsted, Harpenden, Hertfordshire AL5 2JQ, UK.

CSIRO Land and Water, PMB 2, Glen Osmond, SA 5064, Australia.

出版信息

New Phytol. 2001 Sep;151(3):613-620. doi: 10.1046/j.0028-646x.2001.00213.x.

Abstract

•  To examine whether root exudates of the Zn/Cd hyperaccumulator Thlaspi caerulescens play a role in metal hyperaccumulation, we compared the metal mobilization capacity of root exudates collected from two ecotypes of T. caerulescens, and from the nonaccumulators wheat (Triticum aestivum) and canola (Brassica napus). •  Plants were grown hydroponically and three treatments (control, -Fe and -Zn) were later imposed for 2 wk before collection of root exudates. •  On a basis of root d. wt, the total soluble organic C in the root exudates of T. caerulescens was similar to that of wheat, and significantly higher than that of canola. In all treatment, the root exudates of T. caerulescens and canola mobilized little Cu and Zn from Cu- or Zn-loaded resins, and little Zn, Cd, Cu or Fe from a contaminated calcareous soil. By contrast, the root exudates of wheat generally mobilized more metals from both resin and soil. In particular, the -Fe treatment, and to a lesser extent the -Zn treatment, elicited large increases in the metal mobilization capacity of the root exudates from wheat. •  We conclude that root exudates from T. caerulescens do not significantly enhance mobilization of Zn and Cd, and therefore are not involved in Zn and Cd hyperaccumulation.

摘要

为了研究锌/镉超积累植物天蓝遏蓝菜的根系分泌物在金属超积累过程中是否发挥作用,我们比较了从两种生态型的天蓝遏蓝菜以及非积累植物小麦(普通小麦)和油菜(甘蓝型油菜)中收集的根系分泌物的金属活化能力。植物采用水培方式生长,在收集根系分泌物前2周施加三种处理(对照、缺铁和缺锌)。以根干重为基础,天蓝遏蓝菜根系分泌物中的总可溶性有机碳与小麦的相似,且显著高于油菜。在所有处理中,天蓝遏蓝菜和油菜的根系分泌物从负载铜或锌的树脂中活化的铜和锌很少,从污染的石灰性土壤中活化的锌、镉、铜或铁也很少。相比之下,小麦的根系分泌物通常从树脂和土壤中活化出更多的金属。特别是,缺铁处理以及程度较轻的缺锌处理使小麦根系分泌物的金属活化能力大幅提高。我们得出结论,天蓝遏蓝菜的根系分泌物不会显著增强锌和镉的活化,因此不参与锌和镉的超积累。

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