The nickel (Ni) hyperaccumulator Alyssum murale has been developed as a commercial crop for phytoremediation/phytomining Ni from metal-enriched soils. Here, metal co-tolerance, accumulation and localization were investigated for A. murale exposed to metal co-contaminants. A. murale was irrigated with Ni-enriched nutrient solutions containing basal or elevated concentrations of cobalt (Co) or zinc (Zn). Metal localization and elemental associations were investigated in situ with synchrotron X-ray microfluorescence (SXRF) and computed-microtomography (CMT). A. murale hyperaccumulated Ni and Co (> 1000 microg g(-1) dry weight) from mixed-metal systems. Zinc was not hyperaccumulated. Elevated Co or Zn concentrations did not alter Ni accumulation or localization. SXRF images showed uniform Ni distribution in leaves and preferential localization of Co near leaf tips/margins. CMT images revealed that leaf epidermal tissue was enriched with Ni but devoid of Co, that Co was localized in the apoplasm of leaf ground tissue and that Co was sequestered on leaf surfaces near the tips/margins. Cobalt-rich mineral precipitate(s) form on leaves of Co-treated A. murale. Specialized biochemical processes linked with Ni (hyper)tolerance in A. murale do not confer (hyper)tolerance to Co. A. murale relies on a different metal storage mechanism for Co (exocellular sequestration) than for Ni (vacuolar sequestration).

译文

镍 (Ni) 超积累的阿利苏姆·穆拉勒 (Alyssum murale) 已被开发为一种商业作物,用于从富含金属的土壤中进行植物修复/植物化镍。在这里,研究了暴露于金属共污染物的A. murale的金属共耐受性,积累和定位。A. murale用富含镍的营养液灌溉,该营养液含有基础或高浓度的钴 (Co) 或锌 (Zn)。使用同步加速器x射线微荧光 (SXRF) 和计算机微断层扫描 (CMT) 原位研究了金属定位和元素缔合。A. murale从混合金属体系中累积的Ni和Co (> 1000微克 (-1) 干重)。锌没有过度蓄积。升高的Co或Zn浓度不会改变Ni的积累或定位。SXRF图像显示叶片中Ni分布均匀,并且Co在叶尖/边缘附近优先定位。CMT图像显示,叶片表皮组织富含Ni,但不含Co,Co位于叶地组织的质膜中,Co被隔离在尖端/边缘附近的叶片表面。在共同处理的A. murale的叶片上形成富钴矿物沉淀。与A. murale中的Ni (超) 耐受性相关的专门生化过程不赋予Co (超) 耐受性。A. murale对Co (胞外隔离) 的金属存储机制与对Ni (液泡隔离) 的金属存储机制不同。

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