首页> 外文期刊>The Science of the Total Environment >Dissolved natural organic matter (NOM) impacts photosynthetic oxygen production and electron transport in coontail Ceratophyllum demersum
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Dissolved natural organic matter (NOM) impacts photosynthetic oxygen production and electron transport in coontail Ceratophyllum demersum

机译:溶解的天然有机物(NOM)影响尾巴金角藻的光合作用产氧量和电子传输

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Dissolved natural organic matter (NOM) is dead organic matter exceeding, in freshwater systems, the concentration of organic carbon in all living organisms by far. 80-90% (w/w) of the NOM is made LIP of humic substances (I-IS). Although NOM possesses several functional groups, a potential effect oil aquatic organisms has not been studied. In this study, direct effects of NOM from various origins oil physiological and biochemical functions in the aquatic plant Ceratophyllum demersum are presented. Environmentally relevant concentrations of NOM cause inhibitory effects on the photosynthetic oxygen production of C demersum. Various NOM sources and the synthetic humic substance HS1500 inhibit the photosynthetic oxygen production of the plant as observed with 1-amino-anthraquinone, a known inhibitor of plant photosynthesis. 1-Aminoanthraquinone may serve as an analogue for the quinoid structures in NOM and HS. Most likely, the effects of NOM may be related to quinoid structures and work downstream of photosynthesis at photosystem (PS) II. (C) 2005 Published by Elsevier B.V.
机译:溶解的天然有机物(NOM)是一种死有机物,在淡水系统中,到目前为止,其含量已超过所有活生物体中有机碳的浓度。 NOM的80-90%(w / w)由腐殖质(I-IS)制成LIP。尽管NOM具有几个官能团,但尚未研究油类水生生物的潜在作用。在这项研究中,提出了不同来源的NOM对水生植物Ceratophyllum demersum的生理和生化功能的直接影响。与环境有关的NOM浓度对C demersum的光合氧气产生具有抑制作用。如已知的植物光合作用抑制剂1-氨基蒽醌所观察到的,各种NOM来源和合成腐殖质HS1500抑制了植物的光合作用氧气产生。 1-氨基蒽醌可作为NOM和HS中醌结构的类似物。最有可能的是,NOM的作用可能与醌型结构和光合作用II(PS)上光合作用的下游有关。 (C)2005由Elsevier B.V.发布

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