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Reduction, methylation, and translocation of arsenic in Panax notoginseng grown under field conditions in arsenic-contaminated soils

机译:Reduction, methylation, and translocation of arsenic in panax notoginseng grown under field conditions in arsenic-contaminated soils

摘要

Variations in arsenic (As) species in Panax notoginseng grown under field conditions remain understudied compared with those under greenhouse conditions. In the present study, soil and plant samples were collected from Wenshan Zhuang and Miao Autonomous Prefecture, Yunnan Province, which is the main production area of P. notoginseng in China, to identify As species in the soil and plant tissues and further assess effect of As toxic stress on As transformation and translocation in P. notoginseng. The results showed that arsenate (As(V)) was almost exclusively identified in the soil, while arsenite (As(III)) and monomethylarsonic acid (MMA) were detected in high proportions in plant tissues, suggesting that As(V) could be reduced and subsequently methylated in the plant body, mainly in the root. The reduction and methylation of As in the root of P. notoginseng were promoted by low As toxic stress, but were impeded by high As toxic stress. Arsenic(III) and MMA could rapidly translocate upwards in P notoginseng. In addition, the translocation of total As, As(III), and MMA from the root to the rhizome was a response to As toxic stress, and the translocation rate increased with the increasing As concentration in the taproot. This study provides new insights into the detoxification mechanism of P. notoginseng grown in As contaminated soils and the control of As during cultivation. (C) 2016 Elsevier B.V. All rights reserved.
机译:与在温室条件下相比,在田间条件下种植的三七中砷(As)物种的变化仍未得到研究。在本研究中,从中国三七主要产区云南文山壮族和苗族自治州采集土壤和植物样品,以鉴定土壤和植物组织中的As物种,并进一步评估三七对砷转化和转运的毒害胁迫。结果表明,砷(As(V))几乎仅在土壤中被鉴定出来,而砷(As(III))和一甲基亚砷酸(MMA)在植物组织中的含量很高,表明砷(V)可能是减少并随后在植物体内(主要是在根部)甲基化。低砷毒性胁迫促进三七根中砷的还原和甲基化,而高砷毒性胁迫则抑制了砷的还原和甲基化。三七中的砷(III)和MMA可以迅速向上迁移。此外,总的As,As(III)和MMA从根向根茎的转运是对As毒害的响应,并且随着主根中As浓度的增加,转运速率也随之增加。这项研究为在被As污染的土壤中生长的三七的解毒机理和在耕作过程中As的控制提供了新的见解。 (C)2016 Elsevier B.V.保留所有权利。

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