首页> 外文期刊>Brazilian Journal of Biology >How the fluctuations of water levels affect populations of invasive bivalve Corbicula fluminea (Müller, 1774) in a Neotropical reservoir?
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How the fluctuations of water levels affect populations of invasive bivalve Corbicula fluminea (Müller, 1774) in a Neotropical reservoir?

机译:水位的波动如何影响新热带水库中侵袭性双壳类长鳍bic(Corbicula fluminea,Müller,1774年)的种群?

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Corbicula fluminea is an invasive bivalve responsible for several environmental and financial problems around the globe. Despite the invasive potential of this species, it suffers certain restrictions in lentic environments due to natural phenomena that significantly affect its population structure (e.g. water column fluctuation and sunlight exposure). The present study addresses how temporal decline of the water level in a Neotropical reservoir and exposure to sunlight affect the population structure of C. fluminea. Samplings were carried out twice in the reservoir of Furnas Hydroelectric Power Station (HPS) (Minas Gerais, Brazil), in 2011 and 2012. Population density, spatial distribution and mean shell length of C. fluminea were estimated for each year after sampling in 51 quadrats (0.0625m2) placed on three transects at different distances along the reservoir margins (0, 10 and 20 m from a fixed-point). We observed a predominance of C. fluminea in both years, with a simultaneous gradual decrease in density and richness of native species in the sampling area. Significant differences in density of C. fluminea were registered at different distances from the margin, and are related to the temporal variability of physical conditions of the sediment and water in these environments. We also registered a trend toward an increase in the density and aggregation of C. fluminea as we moved away from the margin, due to the greater stability of these areas (10 m). The mean shell length of C. fluminea showed significant difference between the distinct distances from the margin and during the years, as well as the interaction of these factors (Distances vs.Years). These results were associated with the reproductive and invasive capacity of this species. This study reveals that these temporal events (especially water column fluctuation) may cause alterations in density, spatial distribution and mean shell length of C. fluminea and the composition of the native malacofauna in Neotropical lentic environments.
机译:珊瑚菌(Corbicula fluminea)是一种侵入性双壳类动物,对全球范围内的许多环境和财务问题负责。尽管该物种具有入侵潜力,但由于自然现象严重影响其种群结构(例如水柱波动和日光照射),使其在镜头环境中受到一定限制。本研究解决了新热带水库中水位随时间的下降和日照暴露如何影响氟美梭菌的种群结构。在2011年和2012年,在富尔纳斯水电站(HPS)(巴西米纳斯吉拉斯州)的水库中进行了两次采样。在51个采样点上,每年估算出了C. fluminea的种群密度,空间分布和平均壳长。四边形(0.0625m2)沿着储层边缘(距固定点0、10和20 m)以不同距离放置在三个样带上。在这两年中,我们都观察到了C. fluminea的盛行,同时采样区域中本地物种的密度和丰富度同时逐渐下降。在距边缘的不同距离处记录了C. fluminea密度的显着差异,并且与这些环境中沉积物和水的物理条件的时间变化有关。由于这些区域具有更高的稳定性(> 10 m),随着我们离开边缘,我们也发现了C. fluminea密度和聚集度增加的趋势。萤火虫的平均壳长显示出距边缘的不同距离和多年间的显着差异,以及这些因素之间的相互作用(距离与年份)。这些结果与该物种的繁殖和入侵能力有关。这项研究表明,这些时间性事件(尤其是水柱波动)可能会导致新热带透镜体环境中的C. fluminea密度,空间分布和平均壳长以及原生疟疾动物组成的变化。

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