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首页> 外文期刊>Journal of limnology >Stress response of a boreo-alpine species of tardigrade, Borealibius zetlandicus (Eutardigrada, Hypsibiidae)
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Stress response of a boreo-alpine species of tardigrade, Borealibius zetlandicus (Eutardigrada, Hypsibiidae)

机译:北极柏油菜(Borealibius zetlandicus)的应激反应(Eutardigrada,Hypsibiidae)

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摘要

Invertebrates living in extreme environments as well as those living under unpredictable habitat conditions must be able to survive severe environmental stresses bound to their habitats. Tardigrades represent a good animal model to analyze responses evolved by organisms to overcome extreme environmental stresses or to colonize extreme environments because they respond to desiccation or freezing in their habitats by entering cryptobiosis. The responses to environmental stresses have been evaluated almost exclusively in terrestrial tardigrades, while very little is known about the ability of limnic species to tolerate those stresses. This study evaluates the responses of the limnic boreo-alpine species Borealibius zetlandicus, under lab conditions, to stresses imposed by desiccation and temperature variation (freezing and heating). Our results indicate that active specimens are able to freeze, confirming the cryobiotic ability of this species. There is a negative correlation between survival and cooling rates. In contrast, no specimens of B. zetlandicus are able to survive desiccation. With regard to thermal tolerance, the animals show a high ability to resist heat-shock (LT50 = 33.0 ± 0.5 °C) for a short time. This wide tolerance to different environmental parameters could be the reason for the wide distribution of the species. Due to the disjunct distribution of the species and to the potential presence of cryptic tardigrade species that could have different ecological and physiological responses, we decided to characterize the population studied from a molecular point of view by investigating its COI mtDNA sequences.
机译:生活在极端环境中的无脊椎动物以及生活在不可预测的栖息地条件下的无脊椎动物必须能够承受与其生境相关的严重环境压力。缓坡动物代表了一种很好的动物模型,可以分析生物体为克服极端环境压力或在极端环境中定植而产生的反应,因为它们通过进入隐生生物对栖息地的干燥或冻结做出反应。对环境压力的响应几乎仅在陆生的缓坡地中进行了评估,而对亚麻科植物耐受这些压力的能力知之甚少。这项研究评估了实验室条件下,山毛榉的北-高山物种Borealibius zetlandicus对干燥和温度变化(冷冻和加热)所施加的应力的响应。我们的结果表明,活跃的标本能够冻结,从而证实了该物种的低温能力。生存率和降温率之间存在负相关关系。相比之下,zetlandicus的任何标本都无法干燥。关于热耐受性,动物在短时间内表现出很高的抵抗热冲击的能力(LT50 = 33.0±0.5°C)。这种对不同环境参数的宽容性可能是该物种广泛分布的原因。由于该物种的分布不均以及可能存在不同的生态和生理反应的隐蔽性缓坡物种的潜在存在,我们决定通过研究其COI mtDNA序列,从分子的角度表征研究的种群。

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