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首页> 外文期刊>Molecular ecology >A complex life cycle in a warming planet: Gene expression in thermally stressed sponges
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A complex life cycle in a warming planet: Gene expression in thermally stressed sponges

机译:变暖的星球中复杂的生命周期:热应力海绵中的基因表达

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摘要

Sponges are abundant, diverse and functionally important components of aquatic biotopes with crucial associations for many reef fish and invertebrates. Sponges have strict temperature optima, and mass mortality events have occurred after unusually high temperatures. To assess how sponges may adapt to thermal stress associated with a changing climate, we applied gene expression profiling to both stages of their bipartite life cycles. Adult Rhopaloeides odorabile are highly sensitive to thermal stress (32 °C), yet their larvae can withstand temperatures up to 36 °C. Here, we reveal the molecular mechanisms that underpin these contrasting thermal tolerances, which may provide sponges with a means to successfully disperse into cooler waters. Heat shock protein 70 was induced by increasing temperature in adult sponges, and genes involved in important biological functions including cytoskeleton rearrangement, signal transduction, protein synthesis/degradation, oxidative stress and detoxification were all negatively correlated with temperature. Conversely, gene expression in larvae was not significantly affected until 36 °C when a stress response involving extremely rapid activation of heat shock proteins occurred. This study provides the first transcriptomic assessment of thermal stress on both life history stages of a marine invertebrate facilitating better predictions of the long-term consequences of climate change for sponge population dynamics.
机译:海绵是水生生物群落的丰富,多样且功能重要的组成部分,与许多礁鱼和无脊椎动物有着至关重要的联系。海绵具有严格的最佳温度,并且在异常高温后发生了质量死亡事件。为了评估海绵如何适应与气候变化相关的热应力,我们将基因表达图谱应用于了两方生命周期的两个阶段。成年Rhopaloeides odorabile对热应激(32°C)高度敏感,但其幼虫可以承受高达36°C的温度。在这里,我们揭示了支撑这些不同的耐热性的分子机制,这可能为海绵提供了一种成功分散到较冷水中的手段。热激蛋白70是由成年海绵体中温度升高引起的,而涉及重要生物学功能(包括细胞骨架重排,信号转导,蛋白质合成/降解,氧化应激和排毒)的基因均与温度呈负相关。相反,直到36℃,当涉及热激蛋白的极快活化的应激反应发生时,幼虫中的基因表达才受到显着影响。这项研究为海洋无脊椎动物的两个生活史阶段提供了热应激的第一个转录组学评估,有助于更好地预测气候变化对海绵种群动态的长期影响。

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