Farida Abubakari, Denise R Fernando, Philip Nti Nkrumah, Hugh H Harris, Peter D Erskine, Antony van der Ent
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引用次数: 0
摘要
与 M. ternifolia 不同,Macadamia integrifolia 和 M. tetraphylla 以食用坚果而闻名。这三个物种的芽中都过度积累了微量金属营养元素锰(Mn)。本研究旨在考察三种澳洲坚果中锰和其他植物养分在组织和细胞层面的分布情况。利用同步辐射 X 射线荧光显微镜(XFM),研究了 M. integrifolia、M. tetraphylla 和 M. ternifolia 的全叶以及根、叶柄和叶片横截面中锰、钙、铁和钾的分布情况。结果表明,这三个物种的锰主要螯合在叶片和中脉的叶肉细胞中。还发现叶脉间区域、根皮层细胞和韧皮部细胞也含有锰。目前的研究证实了之前的发现,但由于同步辐射 XFM 数据的分辨率极高,而且使用了新鲜的水合样本,因此进一步揭示了锰集中在叶肉细胞的液泡中。本研究对这些耐锰能力极强的澳洲坚果中的锰分区有了新的认识,拓展了人们对一种重要微量营养元素过度积累的潜在毒性的了解,最终为食用物种的种植策略提供了参考。
Cellular-level distribution of manganese in Macadamia integrifolia, M. ternifolia, and M. tetraphylla from Australia.
Macadamia integrifolia and M. tetraphylla, unlike M. ternifolia, are known for their edible nuts. All three species over-accumulate the trace metal nutrient manganese (Mn) in their shoots. This study seeks to examine tissue- and cellular-level distribution of Mn and other plant nutrients in the three Macadamia species. The distribution of Mn, calcium, iron, and potassium were investigated in whole leaves and cross-sections of roots, petioles, and leaves using synchrotron-based X-ray fluorescence microscopy (XFM) in M. integrifolia, M. tetraphylla, and M. ternifolia. The results show Mn sequestration primarily in the leaf and midrib palisade mesophyll cells of all three species. Leaf interveinal regions, root cortical cells, and phloem cells were also found to be Mn loaded. The current study confirms earlier findings but further reveals that Mn is concentrated in the vacuoles of mesophyll cells owing to the exceptional resolution of the synchrotron XFM data, and the fact that fresh hydrated samples were used. New insights gained here into Mn compartmentalization in these highly Mn-tolerant Macadamias expand knowledge about potentially toxic over-accumulation of an essential micronutrient, which ultimately stands to inform strategies around farming edible species in particular.