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Arsenic detoxification in Eucalyptus: subcellular distribution, chemical forms, and sulfhydryl substances

机译:桉树中的砷解毒:亚细胞分布,化学形式和巯基物质

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The Eucalyptus cultivation acreage was large in Guangxi provinces. Guanglin 9 (Eucalyptus grandis x Eucalyptus urophylla) is a widely cultivated Eucalyptus species and has been found to grow normally in soils contaminated by heavy metals such as arsenic (As), but the detoxification mechanisms are not clear yet. Through hydroponic experiment, the adsorption and detoxification of As in Eucalyptus were studied from three aspects, namely subcellular distribution of As, chemical forms of As, and the response of sulfhydryl substances. The subcellular distribution data showed that in the Eucalyptus roots, As was mainly present in the soluble fraction (66.3-79.9%), in leaves in the soluble fraction (50.6-53.8%), and the cell wall fraction (35.6-40.0%) under As stress. The chemical form data showed that in roots, As was mainly present in ethanol extraction state (29.5-40.0%), deionized water extraction state (28.3-31.7%), and sodium chloride extraction state (24.1-33.8%). As stress can induce the formation of non-protein thiols (NPT), glutathione (GSH), and phytochelatins (PCs). With the increasing As concentration, the NPT (maximum increase 55.9%) and GSH (maximum increase 79.9%) contents in roots significantly increased, while the PC content significantly increased and then significantly decreased. It is concluded that the As detoxification mechanisms of Eucalyptus are mainly vacuolar compartmentalization and the chelation of sulfhydryl substances, while cell wall adsorption and As chemical forms have limited effects on As detoxification.
机译:广西省桉树种植面积大。广林9(桉树Grandis X Eucalyptus Urophylla)是一种栽培的桉树种类,已被发现通常在被砷(AS)如砷(AS)污染的土壤中成长,但排毒机制尚不清楚。通过水培实验,从三个方面,即亚细胞分布的AS,化学形式的亚细胞分布和巯基物质的响应,研究了如桉树的吸附和解毒。亚细胞分布数据显示,在桉树根中,如可溶性级分(66.3-79.9%)中,在可溶性级分(50.6-53.8%)中的叶子中(50.6-53.8%)和细胞壁分数(35.6-40.0%)作为压力。化学形式数据显示,在根中,主要存在于乙醇提取状态(29.5-40.0%)中,去离子水提取状态(28.3-31.7%)和氯化钠提取状态(24.1-33.8%)。由于应力可以诱导非蛋白质硫醇(NPT),谷胱甘肽(GSH)和Phytochelatins(PC)的形成。随着浓度的增加,NPT(最大增加55.9%)和GSH(最大增加79.9%)在根中的含量显着增加,而PC含量显着增加,然后显着降低。得出结论认为,桉树的排毒机制主要是真空分区化和巯基物质的螯合,而细胞壁吸附和作为化学形式对排毒具有有限的影响。

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