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铵胁迫下耐铵浮萍(稀脉浮萍)碳氮代谢揭示的铵解毒机制

Ammonium detoxification mechanism of ammonium-tolerant duckweed (Landoltia punctata) revealed by carbon and nitrogen metabolism under ammonium stress.

作者信息

Tian Xueping, Fang Yang, Jin Yanling, Yi Zhuolin, Li Jinmeng, Du Anping, He Kaize, Huang Yuhong, Zhao Hai

机构信息

CAS Key Laboratory of Environmental and Applied Microbiology, Environmental Microbiology Key Laboratory of Sichuan Province, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu, 610041, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

CAS Key Laboratory of Environmental and Applied Microbiology, Environmental Microbiology Key Laboratory of Sichuan Province, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu, 610041, China.

出版信息

Environ Pollut. 2021 May 15;277:116834. doi: 10.1016/j.envpol.2021.116834. Epub 2021 Mar 1.

Abstract

In this work, the ammonium-tolerant duckweed Landoltia punctata 0202 was used to study the effect of ammonium stress on carbon and nitrogen metabolism and elucidate the detoxification mechanism. The growth status, protein and starch content, and activity of nitrogen assimilation enzymes were determined, and the transcriptional levels of genes involved in ion transport and carbon and nitrogen metabolism were investigated. Under high ammonium stress, the duckweed growth was inhibited, especially when ammonium was the sole nitrogen source. Ammonium might mainly enter cells via low-affinity transporters. The stimulation of potassium transport genes suggested sufficient potassium acquisition, precluding cation deficiency. In addition, the up-regulation of ammonium assimilation and transamination indicated that excess ammonium could be incorporated into organic nitrogen. Furthermore, the starch content increased from 3.97% to 16.43% and 26.02% in the mixed-nitrogen and ammonium-nitrogen groups, respectively. And the up-regulated starch synthesis, degradation, and glycolysis processes indicated that the accumulated starch could provide sufficient carbon skeletons for excess ammonium assimilation. The findings of this study illustrated that the coordination of carbon and nitrogen metabolism played a vital role in the ammonium detoxification mechanism of duckweeds.

摘要

在本研究中,耐铵浮萍稀脉浮萍0202被用于研究铵胁迫对碳氮代谢的影响,并阐明解毒机制。测定了浮萍的生长状况、蛋白质和淀粉含量以及氮同化酶活性,并研究了参与离子转运以及碳氮代谢的基因的转录水平。在高铵胁迫下,浮萍生长受到抑制,尤其是当铵作为唯一氮源时。铵可能主要通过低亲和力转运体进入细胞。钾转运基因的激活表明有足够的钾吸收,排除了阳离子缺乏的情况。此外,铵同化和转氨作用的上调表明过量的铵可以被整合到有机氮中。此外,混合氮组和铵氮组的淀粉含量分别从3.97%增加到16.43%和26.02%。淀粉合成、降解和糖酵解过程的上调表明积累的淀粉可以为过量的铵同化提供足够的碳骨架。本研究结果表明,碳氮代谢的协调在浮萍的铵解毒机制中起着至关重要的作用。

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