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Molecular analysis of bacterial diversity in mudflats along the salinity gradient of an acidified tropical Bornean estuary (South East Asia)

机译:沿酸化热带婆罗洲河口(东南亚)盐度梯度进行滩涂细菌多样性的分子分析

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摘要

BackgroundThe Brunei River and Bay estuarine system (BES) in the northwest of Borneo is acidic and highly turbid. The system supports extensive intertidal mudflats and presents a potentially steep salinity and pH gradient along its length (45 km). Temporal variation in physical parameters is observed diurnally due to seawater flux during tidal forcing, and stochastically due to elevated freshwater inflow after rains, resulting in a salinity range between 0 and 34 psu. High velocity freshwater run-off from acid sulphate formations during monsoon seasons results in highly variable and acidic conditions (pH 4) at the upper reaches of the BES, whereas the pH is relatively stable (pH 8) at the seaward extremes, due to mixing with seawater from the South China Sea. At their surfaces, the BES mudflats present microbial ecosystems driven by oxygenic phototrophs. To study the effect of various physical parameters on the bacterial diversity of the BES mudflats, surface samples were collected from six sites stretching over 40 km for molecular and phylogentic analysis.
机译:背景婆罗洲西北部的文莱河和海湾河口系统(BES)是酸性且高度混浊的。该系统支持广泛的潮间带滩涂,并沿其长度(45 km)呈现潜在的陡峭盐度和pH梯度。物理参数的时间变化是由于潮汐强迫期间的海水通量昼夜变化,而随机的是由于雨后淡水流入量增加而随机变化,导致盐度范围为0至34 psu。季风季节酸性硫酸盐形成过程中产生的高速淡水径流会导致BES上游的酸度条件高度可变(pH值为4),而由于混合作用,在沿海极端时pH值相对稳定(pH值为8)来自南中国海的海水。在其表面,BES泥滩呈现出由氧光养菌驱动的微生物生态系统。为了研究各种物理参数对BES滩涂细菌多样性的影响,从延伸超过40 km的六个位置收集了表面样本,以进行分子和系统发育分析。

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