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硝酸盐而非铵态氮可增加甜高粱中的镉积累量以提高植物提取效率。

Nitrate Increases Cadmium Accumulation in Sweet Sorghum for Improving Phytoextraction Efficiency Rather Than Ammonium.

作者信息

Bai Zhenqing, Li Dan, Zhu Lin, Tang Xiaoyu, Wang Yanfeng, Mao Renjun, Wu Jiawen

机构信息

Shaanxi Key Laboratory of Chinese Jujube, Yan'an University, Yan'an, China.

College of Life Sciences, Yan'an University, Yan'an, China.

出版信息

Front Plant Sci. 2021 May 20;12:643116. doi: 10.3389/fpls.2021.643116. eCollection 2021.

Abstract

Sweet sorghum has potential for phytoextraction of cadmium (Cd) owning to its large biomass and relatively high Cd tolerance. Nitrogen affects both growth and Cd concentrations in plants. However, different forms of nitrogen effects on Cd accumulation in sweet sorghum to improve efficiency of Cd phytoremediation is still elusive. In this study, nitrate substantially promoted both dry weight and Cd concentrations in leaves, stems + sheaths and roots of sweet sorghum when compared with ammonium. As a result, Cd accumulation in nitrate-supplied sweet sorghum was around 3.7-fold of that in ammonium-supplied plants under unbuffered pH condition, while the fold was about 2.2 under buffered pH condition. We speculated pH values and Cd species in the growth medium to some extent contributed to increased Cd accumulation as affected by nitrate. Net photosynthesis rate and Fv/Fm of nitrate-treated plants under Cd stress were higher than that of ammonium-treated plants when the pH was unbuffered. Responses of antioxidant capacity in roots to Cd stress with nitrate application were stronger than that with ammonium supplementation. Taken together, nitrate is more suitable than ammonium for Cd phytoextraction by using sweet sorghum, which is able to enhance at least double efficiency of phytoextraction.

摘要

甜高粱因其生物量大且对镉(Cd)具有较高耐受性,在镉植物提取方面具有潜力。氮素会影响植物的生长以及镉含量。然而,不同形态的氮对甜高粱中镉积累的影响,以提高镉植物修复效率,目前仍不清楚。在本研究中,与铵态氮相比,硝态氮显著促进了甜高粱叶片、茎+叶鞘和根系的干重及镉含量。结果,在未缓冲pH条件下,供应硝态氮的甜高粱中镉积累量约为供应铵态氮植株的3.7倍,而在缓冲pH条件下,该倍数约为2.2。我们推测,生长介质中的pH值和镉形态在一定程度上促成了硝态氮影响下镉积累的增加。在未缓冲pH时,镉胁迫下硝态氮处理植株的净光合速率和Fv/Fm高于铵态氮处理植株。根系中抗氧化能力对镉胁迫下施用硝态氮的响应强于施用铵态氮。综上所述,对于利用甜高粱进行镉植物提取而言,硝态氮比铵态氮更合适,它能够至少提高两倍的植物提取效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79c1/8172601/c66bed8d868e/fpls-12-643116-g001.jpg

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