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Bacterial influence on chromophoric dissolved organic matter in coastal waters of the northern South China Sea

机译:细菌对南海北部沿海地区发色性溶解有机物的影响

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Chromophoric dissolved organic matter (CDOM), bacterial production (BP) and phytoplankton biomass (chl a) were investigated at 2 coastal sites in the northern South China Sea during summer 2011. Our data showed that chl a levels were higher in Hong Kong eastern waters (HKEW) than Sanya Bay (SYB), but CDOM exhibited the opposite pattern. This decoupling between surface CDOM and chl a indicates that phytoplankton biomass is not the determining factor affecting CDOM distribution. The low levels of CDOM in HKEW could be associated with upwelling of CDOM-deficient deep waters. In addition, bacteria produced more CDOM during the beginning of incubation experiments at SYB than at HKEW, although CDOM turnover time by bacteria was similar to 4 to 10 d and showed no significant difference between SYB and HKEW (p > 0.05). Addition of nitrogen shortened the CDOM turnover time by 2 fold at SYB. Upwelling likely resulted in a phosphorus deficiency for bacteria, and phosphorus enrichment increased bacterial abundance (BA) and BP at HKEW. Interestingly, nitrogen enrichment increased both BP and CDOM generation in SYB, but phosphorus enrichment did not change CDOM at either location, suggesting that CDOM distribution is more associated with nitrogen than phosphorus availability.
机译:2011年夏季,在南海北部的两个沿海地点调查了发色溶解性有机物(CDOM),细菌产量(BP)和浮游植物生物量(chl a)。我们的数据显示,香港东部水域的chl a水平较高(HKEW)比三亚湾(SYB)大,但CDOM呈现相反的格局。表面CDOM和chl a之间的这种解耦表明浮游植物生物量不是影响CDOM分布的决定性因素。 HKEW中CDOM含量低可能与缺乏CDOM的深水上升有关。此外,尽管在细菌培养中CDOM的转换时间与4到10 d相似,并且在SYB和HKEW之间没有显着差异(p> 0.05),但是在SYB孵育实验开始时,细菌产生的CDOM比HKEW多。在SYB,氮的添加将CDOM的转换时间缩短了2倍。上升流可能导致细菌的磷缺乏,而磷的富集会增加HKEW的细菌丰度(BP)和BP。有趣的是,氮富集增加了SYB的BP和CDOM生成,但磷富集并没有改变任一位置的CDOM,这表明CDOM分布与氮的关系比磷的有效性更重要。

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