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首页> 外文期刊>Acta Physiologiae Plantarum >Phosphate deprivation decreases cadmium (Cd) uptake but enhances sensitivity to Cd by increasing iron (Fe) uptake and inhibiting phytochelatins synthesis in rice (Oryza sativa)
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Phosphate deprivation decreases cadmium (Cd) uptake but enhances sensitivity to Cd by increasing iron (Fe) uptake and inhibiting phytochelatins synthesis in rice (Oryza sativa)

机译:磷的缺乏通过增加铁(Fe)的吸收并抑制水稻(Oryza sativa)的植物螯合素的合成而减少了镉(Cd)的吸收,但增强了对镉的敏感性。

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摘要

Cadmium (Cd) pollution and phosphate (Pi) deficiency are two important problems in some Asian countries, but the researches on effects and mechanisms of Pi deficiency on Cd uptake in rice are limited. Herein, 3-week-old rice seedlings were treated with 3 Pi levels (-Pi, +Pi, and +2Pi) under Cd stress for 3 weeks. The results showed that in the hydroponics experiments, Pi deprivation (-Pi) treatment significantly decreased Cd accumulation in rice seedlings but aggravated Cd phytotoxicity symptoms with decreased tillers, root length, shoot height, and dry weight. In contrast, Pi addition (+2Pi) treatment increased Cd accumulation but alleviated Cd phytotoxicity symptoms in rice seedlings. These results indicate that Pi physiologically regulates Cd accumulation and sensitivity in rice. Furthermore, -Pi treatment not only significantly decreased carbon (C) assimilation by reducing net photosynthesis rate and transpiration rate but also decreased glutathione (GSH) and phytochelatins (PCs) contents in rice seedlings. In addition, -Pi treatment significantly increased iron (Fe, a well-known competitive metal of Cd) accumulation in rice plantlets. Based on these results, we suggest that Pi deprivation decreases rice Cd uptake by competitively increasing Fe uptake and accumulation, Pi deprivation also enhances the sensitivity to Cd in rice plants by inhibiting biomass accumulation and reducing PCs synthesis.
机译:镉(Cd)污染和磷酸盐(Pi)缺乏症是一些亚洲国家中的两个重要问题,但关于Pi缺乏对水稻吸收Cd的作用及其机理的研究有限。在此,将3周龄的水稻幼苗在镉胁迫下用3个Pi水平(-Pi,+ Pi和+ 2Pi)处理3周。结果表明,在水培试验中,Pi剥夺(-Pi)处理显着降低了水稻幼苗中Cd的积累,但加剧了Cd的植物毒性症状,分till,根长,枝条高度和干重均降低。相反,添加磷(+ 2Pi)处理可增加水稻幼苗中Cd的积累,但减轻Cd的植物毒性症状。这些结果表明,Pi在生理上调节水稻中Cd的积累和敏感性。此外,-Pi处理不仅通过降低净光合作用和蒸腾速率显着降低了碳(C)同化作用,而且还降低了水稻幼苗中的谷胱甘肽(GSH)和植物螯合素(PCs)含量。另外,-Pi处理显着增加了水稻幼苗中铁(Fe,Cd的竞争性金属)的积累。根据这些结果,我们认为Pi剥夺通过竞争性增加Fe的吸收和积累而降低了水稻对Cd的吸收,Pi剥夺还通过抑制生物量积累和减少PC的合成来增强水稻对Cd的敏感性。

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