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首页> 外文期刊>Aquatic Microbial Ecology >Contrasting interactions mediate dissolved organic matter decomposition in tropical aquatic ecosystems
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Contrasting interactions mediate dissolved organic matter decomposition in tropical aquatic ecosystems

机译:相互作用相互作用调节热带水生生态系统中的溶解性有机物分解

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The interaction between photochemical and microbial degradation processes can have important effects on dissolved organic matter (DOM) decomposition in aquatic systems. Photochemical processes can stimulate or inhibit biological DOM degradation while biological processes often stimulate photochemical degradation. The aim of the present study was to evaluate whether these 2 degradation processes compete for the same organic substrates or use complementary components in 2 tropical systems with contrasting DOM sources (one dominated by humic, mostly terrigenous DOM and the other dominated by autochthonous phytoplankton production). We performed sequential exposures of DOM from both systems to photochemical or biological degradation. We then measured bacterial growth and respiration and photochemical oxygen consumption in addition to changes in DOM optical properties. In the humic lagoon, photochemical degradation stimulated bacterial degradation up to 500% with little complementary photochemical stimulation by bacterial degradation (an increase of only 13%). In the eutrophic lagoon, we found that photochemical degradation inhibited bacterial degradation 17%, suggesting competition with microbial substrates, while bacterial degradation had no effect on photochemical degradation. The net effect of these eutrophic lagoon interactions was a ca. 2% reduction in dissolved organic carbon degradation. Thus, we conclude that there was net complementary behavior between photochemical and bacterial processes in the humic lagoon in DOM degradation, while we observed little net competitive behavior in the eutrophic lagoon.
机译:光化学降解过程和微生物降解过程之间的相互作用可能对水生系统中的溶解性有机物(DOM)分解产生重要影响。光化学过程可以刺激或抑制生物DOM降解,而生物过程通常会刺激光化学降解。本研究的目的是评估这两个降解过程是否竞争相同的有机底物,或在两个热带系统中使用具有相反DOM来源的互补成分(一个以腐殖质为主,大部分为陆源性DOM,另一个以自生浮游植物为主) 。我们对两个系统的DOM进行了连续曝光以进行光化学或生物降解。然后,我们测量了细菌的生长和呼吸以及光化学耗氧量以及DOM光学特性的变化。在腐殖质泻湖中,光化学降解可将细菌降解刺激至500%,而细菌降解几乎不会产生互补的光化学刺激(仅增加13%)。在富营养化的泻湖中,我们发现光化学降解抑制了17%的细菌降解,表明与微生物底物竞争,而细菌降解对光化学降解没有影响。这些富营养化泻湖相互作用的净效应约为。溶解有机碳降解降低2%。因此,我们得出的结论是,腐殖质泻湖中的光化学过程和细菌过程之间在DOM降解方面存在净互补行为,而富营养化泻湖中几乎没有净竞争行为。

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