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Top consumer abundance influences lake methane efflux

机译:顶级消费者的消费量影响甲烷甲烷的流出

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Lakes are important habitats for biogeochemical cycling of carbon. The organization and structure of aquatic communities influences the biogeochemical interactions between lakes and the atmosphere. Understanding how trophic structure regulates ecosystem functions and influences greenhouse gas efflux from lakes is critical to understanding global carbon cycling and climate change. With a whole-lake experiment in which a previously fishless lake was divided into two treatment basins where fish abundance was manipulated, we show how a trophic cascade from fish to microbes affects methane efflux to the atmosphere. Here, fish exert high grazing pressure and remove nearly all zooplankton. This reduction in zooplankton density increases the abundance of methanotrophic bacteria, which in turn reduce CH4 efflux rates by roughly 10 times. Given that globally there are millions of lakes emitting methane, an important greenhouse gas, our findings that aquatic trophic interactions significantly influence the biogeochemical cycle of methane has important implications.
机译:湖泊是碳生物地球化学循环的重要栖息地。水生群落的组织和结构影响着湖泊与大气之间的生物地球化学相互作用。了解营养结构如何调节生态系统功能并影响湖泊的温室气体排放对于了解全球碳循环和气候变化至关重要。通过将以前无鱼的湖泊分为两个处理盆地的全湖实验,在其中操纵了鱼类的丰度,我们展示了从鱼类到微生物的营养级联如何影响甲烷向大气的外流。鱼在这里施加高放牧压力,几乎消除了所有浮游动物。浮游动物密度的这种降低增加了甲烷营养细菌的数量,进而使CH 4 的外流速率降低了大约10倍。鉴于全球有数以百万计的湖泊在排放甲烷(一种重要的温室气体),我们的水生营养相互作用显着影响甲烷的生物地球化学循环的发现具有重要意义。

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