Linking bacterial community structure to advection and environmental impact along a coast-fjord gradient of the Sognefjord, western Norway

峡湾 平流 海洋学 水团 地质学 群落结构 水柱 构造盆地 海滩形态动力学 沉积物 生态学 地貌学 泥沙输移 生物 热力学 物理
作者
Julia E. Storesund,Ruth‐Anne Sandaa,T. Frede Thingstad,Lars Asplin,Jon Albretsen,Svein Rune Erga
出处
期刊:Progress in Oceanography [Elsevier BV]
卷期号:159: 13-30 被引量:18
标识
DOI:10.1016/j.pocean.2017.09.002
摘要

Here we present novel data on bacterial assemblages along a coast-fjord gradient in the Sognefjord, the deepest (1308 m) and longest (205 km) ice-free fjord in the world. Data were collected on two cruises, one in November 2012, and one in May 2013. Special focus was on the impact of advective processes and how these are reflected in the autochthonous and allochthonous fractions of the bacterial communities. Both in November and May bacterial community composition, determined by Automated Ribosomal Intergenic Spacer Analyses (ARISA), in the surface and intermediate water appeared to be highly related to bacterial communities originating from freshwater runoff and coastal water, whereas the sources in the basin water were mostly unknown. Additionally, the inner part of the Sognefjord was more influenced by side-fjords than the outer part, and changes in bacterial community structure along the coast-fjord gradient generally showed higher correlation with environmental variables than with geographic distances. High resolution model simulations indicated a surprisingly high degree of temporal and spatial variation in both current speed and direction. This led to a more episodic/discontinuous horizontal current pattern, with several vortices (10-20 km wide) being formed from time to time along the fjord. We conclude that during periods of strong wind forcing, advection led to allochthonous species being introduced to the surface and intermediate layers of the fjord, and also appeared to homogenize community composition in the basin water. We also expect vortices to be active mixing zones where inflowing bacterial populations on the southern side of the fjord are mixed with the outflowing populations on the northern side. On average, retention time of the fjord water was sufficient for bacterial communities to be established.
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