硝酸盐
硝酸还原酶
氮同化
电子传输链
环境化学
电子转移
化学
氮气
光合作用
电子受体
浮游植物
光化学
营养物
生物化学
有机化学
作者
Weilu Kang,Fubo Yu,Shuting Wang,Xiangang Hu
标识
DOI:10.1021/acs.est.2c00044
摘要
, the separation of electron-hole pairs) and can trigger the generation of free electrons and singlet oxygen. They also exhibit electron acceptor and donor properties, with the former being stronger than the latter, reacting with polysaccharides in extracellular polymeric substances (EPSs) under high nitrogen stress, enhancing the elasticity and permeability of cells, and promoting nitrogen assimilation and electron transfer to marine diatom EPSs. Electron transfer promotes extracellular-to-intracellular nitrate transport by upregulating membrane nitrate transporters and nitrate reductase. The upregulation of anion transport genes and unsaturated fatty acids contributes to nitrogen assimilation. We estimate that colloids may increase the nitrate uptake efficiency of marine diatoms by 10.5-82.2%. These findings reveal a mechanism by which diatoms adapt to nitrate contamination and indicate a low-cost strategy to control marine pollution.
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