首页> 外文期刊>Science of the total environment >Mercury Bioacumulation In Four Tissues Of Podocnemis Erythrocephala (podocnemididae: Testudines) As A Function Of Water Parameters
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Mercury Bioacumulation In Four Tissues Of Podocnemis Erythrocephala (podocnemididae: Testudines) As A Function Of Water Parameters

机译:水分对Podocnemis Erythrocephala(podocnemididae:Testudines)的四个组织中汞生物累积的影响

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A number of environmental factors influence the dynamics of Hg in aquatic ecosystems, yet few studies have examined these factors for turtles, especially from South America. Redheaded river turtle (Podocnemis erythrocephala) is easy to capture in the black waters of Rio Negro, making it the turtle species that is consumed most often by people of the region. In this study, environmental factors and turtle size were investigated to determine their influence on the Hg concentration in blood, muscle, liver and carapace of the red-headed river turtle. Factors investigated included turtle length, pH, dissolved organic carbon and availability of potential methylation sites (floodplain forests and hydromorphic soils). The study was conducted in the Rio Negro basin, where we collected water and turtle blood, muscle, liver and carapace samples from 12 tributaries for chemical analysis. Through radar imagery and existing soil maps with GIS, the percentage of alluvial floodplains and hydromorphic soils (potential methylation sites) was estimated for each drainage basin at sampling points. The mean Hg concentration in blood of P. erythrocephala was 1.64 ng g~(-1) (SD = 1.36), muscle 33 ng g~(-1) (SD = 11), liver 470 ng g~(-1) (SD = 313) and carapace 68 ng g~(-1) (SD = 32). Sex or length did not influence the Hg concentration in P. erythrocephala blood, muscle and liver, but Hg increased in carapace tissue when length size increased (ANCOVA p=0.007). In the multiple regression analysis, none of the environmental factors studied had a significant relation with blood, muscle, liver and carapace. P. erythrocephala moves among habitats and in the open and interconnected aquatic systems of the Amazon basin, characterized by high levels of limnological variability, a good bioindicator of Hg concentration needs to be relatively sedentary to represent a specific habitat. However, the levels of Hg in liver were sufficient to pose a potential risk to humans that consume them, suggesting the usefulness of P. erythrocephala as a bioindicator.
机译:许多环境因素会影响水生生态系统中汞的动态,但很少有研究针对乌龟(尤其是南美的乌龟)检查这些因素。红发河龟(Podocnemis erythrocephala)很容易在黑河里约格罗(Rio Negro)的黑水中捕获,使其成为该地区人们最常食用的龟种。在这项研究中,研究了环境因素和乌龟的大小,以确定它们对红发河龟血液,肌肉,肝脏和甲壳中汞浓度的影响。调查的因素包括乌龟长度,pH,溶解的有机碳和潜在的甲基化位点(泛滥森林和水溶土壤)的可用性。这项研究是在里约内格罗盆地进行的,我们从12个支流中收集了水和乌龟的血液,肌肉,肝脏和甲壳的样本进行化学分析。通过雷达图像和具有GIS的现有土壤图,可以估算出每个流域在采样点处的冲积洪泛区和水质土壤(潜在的甲基化位点)的百分比。红球菌血液中的平均Hg浓度为1.64 ng g〜(-1)(SD = 1.36),肌肉33 ng g〜(-1)(SD = 11),肝脏470 ng g〜(-1)( SD = 313)和甲壳68 ng g〜(-1)(SD = 32)。性别或体长不影响红斑假单胞菌血液,肌肉和肝脏中的Hg浓度,但是当体长增加时,甲壳中的Hg升高(ANCOVA p = 0.007)。在多元回归分析中,研究的环境因素均与血液,肌肉,肝脏和甲壳无显着关系。红斑假单胞菌在栖息地之间以及在亚马逊盆地开放和相互联系的水生系统中移动,其特征是高度的岩性变化,因此需要相对久坐的良好的Hg生物指示剂来代表特定的栖息地。但是,肝脏中的汞含量足以对食用它们的人类构成潜在的风险,这表明红斑假单胞菌作为生物指示剂的有用性。

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