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首页> 外文期刊>Aquatic Microbial Ecology >Vertical export of marine pelagic protists in an ice-free high-Arctic fjord (Adventfjorden, West Spitsbergen) throughout 2011-2012
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Vertical export of marine pelagic protists in an ice-free high-Arctic fjord (Adventfjorden, West Spitsbergen) throughout 2011-2012

机译:2011年至2012年期间,在无冰的高北极峡湾(西斯匹次卑尔根州Adventfjorden)中垂直输出海洋中上层生物

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摘要

The ecosystem role of Arctic microbial communities is still largely unknown. Based on a time-series study at the IsA station (West Spitsbergen), the seasonality and contribution of pelagic protists to the vertical flux was investigated at 7 time points during 2011-2012. The hydrography of this high-Arctic fjord was evaluated to identify impacts on the community composition during the different seasons. Protists (10 ?μm and 10 ?μm) were sampled at 4 depths from the water column and from short-time sediment traps, and investigated by 454 next-generation sequencing of the V4 region of the 18S ribosomal DNA. An advective event during winter, exchanging the cold and less saline water mass with warmer and saline Atlantic Water, was potentially responsible for an abrupt shift in the protist composition in March. Small cells (10 ?μm) contributed significantly to the vertical flux during autumn and winter, while larger bloom taxa (e.g. diatoms) predominated the water and traps during spring. Parasitic species, such as MALV 1a and Chytriodinium sp., were also detected in the traps, possibly being transported along with their hosts. Vertical export of Arctic pelagic protists is not limited to the productive period; however, the contribution of small taxa that are important contributors in this study seems to be seasonally influenced and may alter the flux efficiency. Molecular tools revealed new taxa contributing to the vertical export, but also identified new potential mechanisms exemplified by parasite-host-induced transport, spurring increased attention onto parasitism in the study of carbon cycles and vertical flux.
机译:北极微生物群落在生态系统中的作用仍然未知。根据对IsA站(西斯匹次卑尔根)的时间序列研究,在2011-2012年的7个时间点调查了浮游原生生物的季节性和贡献。评估了这座高北极峡湾的水文状况,以确定不同季节对社区构成的影响。在距水柱和短时沉积物陷阱4个深度处采样了原生生物(<10 µm和> 10 µm),并通过454下一代测序对18S核糖体DNA的V4区进行了研究。冬季发生的对流事件可能导致寒冷和盐分较少的水量与温暖和盐分的大西洋水交换,这可能是导致3月生物量组成突然变化的原因。在秋季和冬季,小细胞(<10μm)对垂直通量有显着贡献,而在春季,较大的开花类群(例如硅藻)占主导地位的水和陷阱。陷阱中还检测到了寄生物,如MALV 1a和Chytriodinium sp。,可能与寄主一同运输。北极中上层原生生物的垂直出口不限于生产期;然而,作为本研究重要贡献者的小分类群的贡献似乎受到季节的影响,并可能改变通量效率。分子工具揭示了新的分类单元,有助于垂直出口,但也发现了新的潜在机制,例如寄生虫-宿主诱导的运输,从而激发了对碳循环和垂直通量研究中对寄生虫的更多关注。

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