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首页> 外文期刊>Microbial Ecology: An International Journal >Bacterioplankton Responses to Increased Organic Carbon and Nutrient Loading in a Boreal Estuary-Separate and Interactive Effects on Growth and Respiration
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Bacterioplankton Responses to Increased Organic Carbon and Nutrient Loading in a Boreal Estuary-Separate and Interactive Effects on Growth and Respiration

机译:Bacteriollankton对博腹河口的有机碳和营养加载增加的含量碳和营养载荷对生长和呼吸的影响

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摘要

Increases in the terrestrial export of dissolved organic carbon (C) to rivers may be associated with additional loading of organic nitrogen (N) and phosphorus (P) to the coastal zone. However, little is known about how these resources interact in the regulation of heterotrophic bacterioplankton metabolism in boreal coastal ecosystems. Here, we measured changes in bacterioplankton production (BP) and respiration (BR) in response to full-factorial (C, N, and P) enrichment experiments at two sites within the A-re estuary, northern Sweden. The BR was stimulated by single C additions and further enhanced by combined additions of C and other nutrients. Single addition of N or P had no effect on BR rates. In contrast, BP was primarily limited by P at the site close to the river mouth and did not respond to C or N additions. However, at the site further away from the near the river mouth, BP was slightly stimulated by single additions of C. Possibly, the natural inflow of riverine bioavailable dissolved organic carbon induced local P limitation of BP near the river mouth, which was then exhausted and resulted in C-limited BP further away from the river mouth. We observed positive interactions between all elements on all responses except for BP at the site close to the river mouth, where P showed an independent effect. In light of predicted increases in terrestrial P and C deliveries, we expect future increases in BP and increases of BR of terrestrially delivered C substrates at the A-re estuary and similar areas.
机译:溶解的有机碳(C)与河流的地面出口增加可能与沿海地区的额外加载有机氮(n)和磷(p)的额外加载。然而,关于这些资源如何在北方沿海生态系统中的异养的菌药植物代谢调节中互动的众所周知。在这里,我们在瑞典北部A-Re河口的两个地点的全因素(C,N和P)浓缩实验中,测量了菌内噬菌体生产(BP)和呼吸(BR)的变化。通过单一C添加和通过组合的C和其他营养素进一步增强BR。单一添加N或P对BR速率没有影响。相比之下,BP主要受到靠近河口的场地的P限制,并且没有响应C或N添加。然而,在远离河口近河口的现场,通过单一添加C.可能,河流生物可利用的溶解有机碳的自然流入河口附近的本地P局限性的自然流入,然后耗尽并导致C-Limited BP远离河口。我们观察到所有响应的所有元素之间的正相互作用,除了靠近河口的网站,其中P表现出独立效果。鉴于地面P和C交付的预测增加,我们预计BP的未来增加和陆地交付的C基材的增长在A-RE河口和类似领域。

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