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一段时间内在引种的石蛏体内的应激水平:温度和盐度变化对 hsp70 基因表达的影响。

Stress levels over time in the introduced ascidian Styela plicata: the effects of temperature and salinity variations on hsp70 gene expression.

机构信息

Department of Animal Biology, University of Barcelona, Diagonal Avenue 643, 08028, Barcelona, Spain.

出版信息

Cell Stress Chaperones. 2012 Jul;17(4):435-44. doi: 10.1007/s12192-012-0321-y. Epub 2012 Jan 17.

Abstract

Species distribution, abundance, and long-term survival are determined by biotic and abiotic regimes. However, little is known about the importance of these factors in species range expansion. Styela plicata is a solitary ascidian introduced all over the world by ship fouling, including salt marsh habitats, where introduced populations must tolerate high seasonal variations in temperature and salinity. To determine the seasonal stress levels in a salt marsh population of S. plicata, we quantified heat shock protein (hsp70) gene expression using quantitative real-time PCR throughout a 2-year cycle. Results showed that hsp70 expression varied over time, with higher stress levels recorded in summer and winter. Periodic conditions of high temperatures, particularly when coupled with low salinities, increased hsp70 gene expression. Mortality events observed every year around June were concurrent with sharp increases in temperature (>6°C), indicating that drastic changes in abiotic factors may overwhelm the observed stress response mechanisms. Determining the ability of introduced species to cope with stress, and the thresholds above which these mechanisms fail, is fundamental to predict the potential expansion range of introduced species and design efficient containment plans.

摘要

物种的分布、丰度和长期生存由生物和非生物因素决定。然而,对于这些因素在物种分布扩张中的重要性,我们知之甚少。皱瘤海鞘是一种通过船舶污染而在全球范围内引入的单体海鞘,包括盐沼生境,引入种群必须耐受温度和盐度的季节性剧烈变化。为了确定盐沼生境中皱瘤海鞘种群的季节性压力水平,我们使用定量实时 PCR 在 2 年的时间内对热休克蛋白 (hsp70) 基因表达进行了量化。结果表明,hsp70 的表达随时间变化而变化,夏季和冬季的压力水平较高。高温的周期性条件,特别是与低盐度结合时,会增加 hsp70 基因的表达。每年 6 月左右观察到的死亡率事件与温度的急剧上升(>6°C)同时发生,这表明非生物因素的剧烈变化可能会超过观察到的应激反应机制。确定引入物种应对压力的能力以及这些机制失效的阈值,对于预测引入物种的潜在扩张范围和设计有效的遏制计划至关重要。

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