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Incubation temperature and PCB-126 exposure interactively impair shorebird embryo and post-hatch development

机译:孵化温度和PCB-126曝光以交互性地损害Shorebird Embryo和孵化后开发

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摘要

In oviparous wildlife, many critical physiological and behavioural components are strongly influenced by the embryonic and early post-hatch developmental environment. As such, early life stages in these species are highly vulnerable to both natural and anthropogenic stressors. For example, in birds, incubation temperature may influence the rate of egg development while also affecting contaminant metabolism and absorption in body tissues, resulting in potentially multiplicative impacts on embryonic and posthatch development. We tested the hypothesis that cumulative effects of early contaminant exposure and temperature stress can negatively affect avian development and may have interactive effects that are more detrimental than either stressor individually. Using a controlled egg injection and incubation study on killdeer (Charadrius vociferous), eggs were exposed to a known endocrine disruptor, 3,3',4,4',5-pentachlorobiphenyl (PCB-126) and incubated at either low (36 °C), intermediate (37.5 °C), or high (39 °C) temperatures. Our results indicated that eggs incubated at low temperature had earlier detection of heartbeat, longer incubation length, lower growth rate post-hatch, and higher post-hatch mortality, compared to eggs incubated under intermediate temperatures. Higher incubation temperatures resulted in shorter incubation length, earlier detection of heart rate and faster righting time. As predicted, embryo and chick mortality were greater in the PCB-dosed birds incubated at intermediate and high temperatures. Incidence of distended yolk sacs (%) also increased with PCB exposure in all temperature groups, with the largest increase in the high temperature group. Overall, our results show that low incubation temperature can cause greater adverse effects than PCB-126 exposure alone, but that negative effects of PCB-126 exposure are exacerbated by high incubation temperatures. These findings suggest that in natural settings, shorebird embryos may be more susceptible to contaminant exposure when incubated at temperatures either below or above the apparent optimum.
机译:在卵巢野生动物中,许多关键的生理和行为成分受到胚胎和孵化早期发育环境的强烈影响。因此,这些物种中的早期生命阶段高易受自然和人为压力源的影响。例如,在鸟类中,孵育温度可能影响蛋发育的速率,同时影响污染物代谢和身体组织中的吸收,导致对胚胎和posthatch发育的潜在繁殖影响。我们测试了早期污染物暴露和温度应激的累积效应可以对禽类发育产生负面影响的假设,并且可能具有比单独的压力源更有害的交互式效果。使用受控蛋注射和孵化研究杀戮地区(Charadrius Vocifore),鸡蛋暴露于已知的内分泌破坏器,3,3',4,4',5-五氯双苯基(PCB-126)并在低温下孵育(36° C),中间体(37.5°C),或高(39°C)温度。我们的结果表明,与在中间气温下孵育的卵相比,在低温下孵育的蛋孵育的孵化早期检测到心跳,孵化长度,孵化长度较低,较高的孵化后死亡率。较高的孵育温度导致孵化长度较短,早期检测心率和更快的拨入时间。如预测的那样,在中间体和高温下孵育的PCB剂量的鸟类中胚胎和小鸡死亡率更大。随着PCB暴露在所有温度基团中,在所有温度基团中的发病率也增加了扩张蛋黄(%),高温组增加。总体而言,我们的结果表明,低温温度可能与单独的PCB-126暴露产生更大的不良反应,但是PCB-126暴露的负面影响通过高培养温度加剧。这些发现表明,在天然环境中,当在低于或高于明显最佳的温度下孵育时,夏鸟胚胎可能更容易受到污染物暴露。

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