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Autochthonous primary production in southern Amazon headwater streams: Novel indicators of altered environmental integrity

机译:亚马逊河南部水源地的原生生物初级生产:环境完整性发生变化的新指标

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The riparian forest reduces the amount of light entering streams, which limits autochthonous primary production. The aim of this study was to evaluate temporal variation of autochthonous primary production in pristine and altered streams, with the goal of identifying indicators of change in environmental integrity in the southern Brazilian Amazon. We evaluated free algal biomass in the water column, the presence of periphyton, and the richness and cover of aquatic herbaceous plants in 20 streams (10 pristine and 10 altered, i.e., with riparian deforestation) during the dry period, at the beginning of the rainy period, and at the end of the rainy period. In altered streams, we recorded the presence of macroscopic periphyton and the amount of algal biomass varied between the dry and flood seasons. Variations in hydrological periods did not contribute to changes in algal biomass in pristine streams; we did not observe the presence of macroscopic periphyton these streams. In altered streams, 23 aquatic herbaceous species were identified, versus only four in the pristine streams. Results showed that riparian deforestation contributes to increased autochthonous primary production, which is also influenced by different hydrological periods, with algae and aquatic herbaceous plants responding differently to dry and rainy periods. The responses of these primary producers confirm their role as important bioindicators of change in the environmental integrity of southern Amazonian streams. (C) 2015 Elsevier Ltd. All rights reserved.
机译:河岸森林减少了进入溪流的光量,这限制了土生土长的初级生产。这项研究的目的是评估原始的和改变后的溪流中的本地初级生产的时间变化,目的是确定巴西南部亚马逊河地区环境完整性变化的指标。在干旱初期,我们评估了水柱中游离藻类生物量,水生植物的存在以及水生草本植物在20条溪流(10条原始河段和10条经河岸森林砍伐改变的溪流)中的丰富度和覆盖度。雨季,以及在雨季结束时。在改变的河流中,我们记录了宏观附生植物的存在,藻类生物量的数量在旱季和汛期之间变化。水文时期的变化不会影响原始溪流中藻类生物量的变化;我们没有观察到这些溪流存在宏观的附生植物。在改变的溪流中,发现了23种水生草本物种,而在原始溪流中只有4种。结果表明,河岸砍伐森林有助于增加本地自然生产,这也受到不同水文时期的影响,藻类和水生草本植物对干旱和雨季的反应不同。这些主要生产者的反应证实了它们作为改变亚马逊河南部环境完整性的重要生物指标的作用。 (C)2015 Elsevier Ltd.保留所有权利。

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