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首页> 外文期刊>Aquatic Botany >Decomposition dynamics of the bloom forming macroalga Ulva rigida C. Agardh determined using a C-14-carbon radio-tracer technique
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Decomposition dynamics of the bloom forming macroalga Ulva rigida C. Agardh determined using a C-14-carbon radio-tracer technique

机译:使用C-14碳放射性示踪剂技术测定的形成大藻的大花藻的分解动力学

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摘要

The short-term decomposition dynamics of Ulva rigida C. Agardh by a natural bacterial consortium were studied in the laboratory using a C-14 radio-tracer technique. Following an initial rapid loss of approximately 15% of the particulate organic carbon (POC) by leaching of dissolved organic carbon (DOC), there was an exponential loss of POC and an accompanying increase in the labelling of the inorganic carbon (IC) pool. However, losses of labelled POC were significantly greater than the summed accumulation of radiolabel in the IC and DOC pools over the course of the experiments. We propose that this discrepancy may be due to the production of volatile organic compounds (VOC) during decomposition, which were stripped from the medium during the extraction of IC, by acidification and sparging with helium, but were not retained by the KOH traps for IC. The compatible solute dimethylsulphonioproprionate (DMSP) which is accumulated to high concentrations by Ulva spp. and is metabolised by bacteria to volatile dimethylsulphide (DMS) and potentially methane, could be one of the major sources of VOCs during our incubations.
机译:在实验室中,使用C-14放射性示踪剂技术研究了天然细菌财团对乌贼僵菌Agardh的短期分解动力学。通过浸出溶解的有机碳(DOC)最初使颗粒有机碳(POC)迅速损失约15%之后,POC呈指数级损失,无机碳(IC)库的标记也随之增加。但是,在整个实验过程中,标记的POC的损失明显大于IC和DOC池中放射性标记的累加总和。我们认为,这种差异可能是由于在分解过程中产生了挥发性有机化合物(VOC),挥发性有机化合物是在提取IC的过程中通过酸化和氦气喷射从介质中剥离出来的,但并未被IC的KOH阱保留。相容的溶质二甲基磺丙酸丙二酸酯(DMSP),由Ulva spp积累到高浓度。并被细菌代谢为挥发性二甲基硫(DMS)和潜在的甲烷,可能是我们孵化过程中VOC的主要来源之一。

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