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Costs of living in metal polluted areas : respiration rate of the ground beetle Pterostichus oblongopunctatus from two gradients of metal pollution

机译:金属污染区的生活费用:两种金属污染梯度下甲虫Pterostichus oblongopunctatus的呼吸速率

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摘要

To address the question about costs of living in polluted areas, biomarkers linked to metabolism were measured in Pterostichus oblongopunctatus (Coleoptera: Carabidae) collected along two metal-pollution gradients in the vicinity of the two largest Polish zinc smelters: ‘Bolesław’ and ‘Miasteczko Śląskie’ in southern Poland. Both gradients covered a broad range of Zn and Cd concentrations in the humus layer (109–6151 and 1.48–71.4 mg kg−1, respectively) and body metal concentrations increased with increasing soil metal concentrations. The whole-organism respiration rate was measured as oxygen consumption with Micro-Oxymax respirometer, and cellular energy consumption—as the activity of electron transport system, which is linked to cellular respiration rate. The significant increase in the whole-organism respiration rate with the body metal concentration was found when taking into account other factors such as body mass, gradient (or year of sampling as the beetles were collected on the gradients in different years) and the interactions: body metal concentrations × collection date, body metal concentrations × body mass, and body mass × gradient/sampling year. However, no relationships between metal concentrations in soil or body metal concentrations and the whole-organism or cellular respiration rate could be detected when using mean values per site, underlining the crucial importance of incorporating individual variability in such analyses. The observed increase of the whole-organism respiration rate with increasing body contamination with metals suggests that P. oblongopunctatus incurs energetic expenditures resulting from the necessity to facilitate metal elimination or repair of toxicant-induced damage.
机译:为了解决在污染地区的生活成本问题,在两个最大的波兰锌冶炼厂('Bolesław'和'Miasteczko)附近,沿着两个金属污染梯度收集了在球形翼龙(Pterostichus oblongopunctatus,鞘翅目:Carabidae)中测量了与代谢相关的生物标志物。波兰南部的“ląskie”。两种梯度覆盖的腐殖质层中锌和镉的浓度范围很广(分别为109–6151和1.48–71.4 mg kg-1),并且人体金属的浓度随土壤金属浓度的增加而增加。用Micro-Oxymax呼吸计测量整个生物的呼吸速率,将其作为氧气消耗量,将细胞的能量消耗(作为电子传输系统的活动)与细胞的呼吸速率相关联,将其作为能量消耗。考虑到其他因素,例如体重,梯度(或取样年份,因为甲虫是在不同年份从梯度上采集的)以及相互作用,发现全生物呼吸速率随体内金属浓度的增加而显着增加:人体金属浓度×收集日期,人体金属浓度×体重和人体质量×梯度/采样年。但是,当使用每个位置的平均值时,无法检测到土壤或人体金属中的金属浓度与整个有机体或细胞呼吸速率之间的关系,从而强调了将个体变异性纳入此类分析的至关重要性。随着金属对人体污染的增加,观察到的整个生物呼吸速率的增加表明,由于需要促进金属消除或修复有毒物质引起的损害,长形疟原虫会导致精力充沛。

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