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首页> 外文期刊>Global change biology >Long-term amelioration of acidity accelerates decomposition in headwater streams.
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Long-term amelioration of acidity accelerates decomposition in headwater streams.

机译:长期改善酸度可加速源头水流中的分解。

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The secondary production of culturally acidified streams is low, with a few species of generalist detritivores dominating invertebrate assemblages, while decomposition processes are impaired. In a series of lowland headwater streams in southern England, we measured the rate of cellulolytic decomposition and compared it with values measured three decades ago, when anthropogenic acidification was at its peak. We hypothesized that, if acidity has indeed ameliorated, the rate of decomposition will have accelerated, thus potentially supporting greater secondary production and the longer food chains that have been observed in some well-studied recovering freshwater systems. We used cellulose Shirley test cloth as a standardized bioassay to measure the rate of cellulolytic decomposition, via loss in tensile strength, for 31 streams in the Ashdown Forest over 7 days in summer 2011 and 49 days in winter 2012. We compared this with data from an otherwise identical study conducted in 1978 and 1979. In a secondary study, we determined whether decomposition followed a linear or logarithmic decay and, as Shirley cloth is no longer available, we tested an alternative in the form of readily available calico. Overall mean pH had increased markedly over the 32 years between the studies (from 6.0 to 6.7). In both the previous and contemporary studies, the relationship between decomposition and pH was strongest in winter, when pH reaches a seasonal minimum. As in the late 1970s, there was no relationship in 2011/2012 between pH and decay rate in summer. As postulated, decomposition in winter was significantly faster in 2011/2012 than in 1978/1979, with an average increase in decay rate of 18.1%. Recovery from acidification, due to decreased acidifying emissions and deposition, has led to an increase in the rate of cellulolytic decomposition. This response in a critical ecosystem process offers a potential explanation of one aspect of the limited biological recovery that has been observed so far, an increase in larger bodied predators including fish, which in turn leads to an increase in the length of food chains.
机译:文化化酸化物流的二次生产量较低,少数种类的多态性杀虫剂在无脊椎动物组合中占主导地位,而分解过程受到损害。在英格兰南部的一系列低地源水流中,我们测量了纤维素分解的速率,并将其与三十年前人为酸化达到顶峰时测得的值进行了比较。我们假设,如果确实改善了酸度,则分解速度将加快,从而有可能支持更高的次级生产水平和更长的食物链,这在一些经过充分研究的淡水系统中已观察到。我们使用纤维素Shirley测试布作为标准化的生物测定法,通过2011年夏季的7天和2012年冬季的49天测量了Ashdown森林中31条溪流的纤维素分解速率(通过拉伸强度损失)。我们将该数据与来自在1978年和1979年进行的其他研究相同。在第二项研究中,我们确定分解是线性衰减还是对数衰减,并且由于不再有Shirley布,我们以易于使用的印花布形式测试了替代方法。在研究之间的32年间,总体平均pH值显着增加(从6.0升高到6.7)。在先前和当代的研究中,当pH值达到季节最小值时,分解和pH值之间的关系在冬季最为强烈。与1970年代后期一样,2011/2012年的pH值与夏季的衰减率之间没有任何关系。据推测,2011/2012年冬季的分解明显快于1978/1979年,衰减率平均增加了18.1%。由于减少的酸化排放物和沉积物而从酸化中恢复,导致纤维素分解的速率增加。在关键的生态系统过程中的这种反应为迄今已观察到的有限的生物恢复的一个方面提供了可能的解释,即包括鱼在内的更大的肉食动物的增加,这反过来又导致食物链长度的增加。

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