首页> 美国卫生研究院文献>Frontiers in Physiology >Arsenate Impact on the Metabolite Profile Production and Arsenic Loading of Xylem Sap in Cucumbers (Cucumis sativus L.)
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Arsenate Impact on the Metabolite Profile Production and Arsenic Loading of Xylem Sap in Cucumbers (Cucumis sativus L.)

机译:砷对黄瓜(木质小黄瓜)木质部汁液代谢产物产量和砷含量的影响

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摘要

Arsenic uptake and translocation studies on xylem sap focus generally on the concentration and speciation of arsenic in the xylem. Arsenic impact on the xylem sap metabolite profile and its production during short term exposure has not been reported in detail. To investigate this, cucumbers were grown hydroponically and arsenate (AsV) and DMA were used for plant treatment for 24 h. Total arsenic and arsenic speciation in xylem sap was analyzed including a metabolite profiling under AsV stress. Produced xylem sap was quantified and absolute arsenic transported was determined. AsV exposure had a significant impact on the metabolite profile of xylem sap. Four m/z values corresponding to four compounds were up-regulated, one compound down-regulated by AsV exposure. The compound down-regulated was identified to be isoleucine. Furthermore, AsV exposure had a significant influence on sap production, leading to a reduction of up to 96% sap production when plants were exposed to 1000 μg kg−1 AsV. No difference to control plants was observed when plants were exposed to 1000 μg kg−1 DMA. Absolute arsenic amount in xylem sap was the lowest at high AsV exposure. These results show that AsV has a significant impact on the production and metabolite profile of xylem sap. The physiological importance of isoleucine needs further attention.
机译:木质部汁液中砷的吸收和转运研究通常集中于木质部中砷的浓度和形态。尚未详细报道砷对木质部汁液代谢产物概况及其短期暴露过程中砷的产生的影响。为了对此进行研究,黄瓜通过水培法生长,砷(As V )和DMA用于植物处理24小时。分析了木质部汁液中总砷和砷形态,包括As V 胁迫下的代谢产物谱。对产生的木质部汁液进行定量,并确定绝对砷的转运量。 As V 暴露对木质部汁液的代谢产物具有显着影响。相应于四种化合物的四个m / z值被上调,一种化合物被As V 暴露下调。被下调的化合物被鉴定为异亮氨酸。此外,As V 暴露对汁液产量有显着影响,当植物暴露于1000μgkg -1 As <时,其汁液产量最多降低96%。 sup> V 。当植物暴露于1000μgkg -1 DMA时,与对照植物无差异。高As V 暴露时木质部汁液中的绝对砷含量最低。这些结果表明,As V 对木质部汁液的产生和代谢产物分布具有显着影响。异亮氨酸的生理重要性需要进一步关注。

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