Departamento de Inmunología, Microbiología y Parasitología, Facultad de Ciencia y Tecnología, Universidad del País Vasco/Euskal Herriko Unibertsitatea (UPV/EHU), Bilbao, Bizkaia, Spain.
Environ Microbiol. 2014 Feb;16(2):498-511. doi: 10.1111/1462-2920.12274. Epub 2013 Oct 17.
We explored how marine dissolved organic matter (DOM) altered by bacterial growth and protozoan grazing modify the metabolism of Southeastern Cantabrian Sea (CS) and NW Mediterranean Sea (MS) coastal bacterial communities. Major metabolic features were measured in treatments with half of the natural water replaced by water with different DOM quality, characterized by fluorescent DOM analysis and collected from key times of the predator-prey curve. In both ecosystems, protozoan-altered DOM led to similar increases in bacterial carbon demand (238% and 213%) and decreases in bacterial growth efficiency (BGE: 56% for the CS and 46% for the MS). These low BGEs were caused by similar bacterial production but much higher bacterial respiration rates, which in turn were positively related to aminopeptidase activity. However, in the CS bacterial community dominated by Bacteroidetes (41%), the enhanced hydrolytic activity was produced at a lower metabolic cost than in the MS, dominated by SAR11 (47%), which suggests a better adaptation of Bacteroidetes to the DOM altered during protozoan grazing. These results highlight protozoan grazing as a relevant factor influencing BGE in coastal ecosystems, and relate bacterial community composition to the major metabolic processes that result after a change in the quality of marine DOM.
我们研究了海洋溶解有机质(DOM)在细菌生长和原生动物摄食作用下的变化如何改变东南坎塔布连海(CS)和西北地中海(MS)沿海细菌群落的代谢。在以自然水的一半被不同 DOM 质量的水替代的处理中测量了主要的代谢特征,这些 DOM 质量通过荧光 DOM 分析来表征,并从捕食者-猎物曲线的关键时间采集。在这两个生态系统中,原生动物改变的 DOM 导致细菌碳需求相似增加(CS 为 238%,MS 为 213%),细菌生长效率(BGE)降低(CS 为 56%,MS 为 46%)。这些低 BGE 是由相似的细菌生产力引起的,但细菌呼吸率要高得多,而细菌呼吸率又与氨肽酶活性呈正相关。然而,在以拟杆菌门(41%)为主导的 CS 细菌群落中,增强的水解活性的产生代谢成本低于以 SAR11 (47%)为主导的 MS,这表明拟杆菌门对原生动物摄食过程中改变的 DOM 有更好的适应能力。这些结果强调了原生动物摄食作用作为影响沿海生态系统 BGE 的一个相关因素,并将细菌群落组成与海洋 DOM 质量变化后产生的主要代谢过程联系起来。