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首页> 外文期刊>Heredity: An International Journal of Genetics >Effects of acclimation time and epigenetic mechanisms on growth of Neurospora in fluctuating environments.
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Effects of acclimation time and epigenetic mechanisms on growth of Neurospora in fluctuating environments.

机译:适应时间和表观遗传机制对波动环境中神经孢子生长的影响。

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Reaction norms or tolerance curves have often been used to predict how organisms deal with fluctuating environments. A potential drawback is that reaction norms measured in different constant environments may not capture all aspects of organismal responses to fluctuating environments. We examined growth of the filamentous fungus Neurospora crassa in fluctuating temperatures and tested if growth in fluctuating temperatures can be explained simply by the growth in different constant temperatures or if more complex models are needed. In addition, as previous studies on fluctuating environments have revealed that past temperatures that organisms have experienced can affect their response to current temperature, we tested the roles of different epigenetic mechanisms in response to fluctuating environments using different mutants. We found that growth of Neurospora can be predicted in fluctuating temperatures to some extent if acclimation times are taken into account in the model. Interestingly, while fluctuating environments have been linked with epigenetic responses, we found only some evidence of involvement of epigenetic mechanisms on tolerating fluctuating temperatures. Mutants which lacked H3K4 or H3K36 methylation had slightly impaired response to temperature fluctuations, in addition the H3K4 methylation mutant and a mutant in the RNA interference pathway had altered acclimation times.
机译:反应规范或耐受性曲线通常用于预测生物体如何处理波动环境。潜在缺点是在不同恒定环境中测量的反应规范可能不会捕获对波动环境的有机答应的所有方面。我们在波动温度下检查了丝状真菌神经孢子的生长,并且如果可能的波动温度的生长可以简单地通过不同恒定温度的生长来解释,或者需要更复杂的模型。此外,由于对波动环境的先前研究表明,由于生物体所经历的过去的温度可能影响它们对当前温度的反应,我们测试了不同表观遗传机制的作用响应使用不同突变体的波动环境。我们发现,如果在模型中考虑到适应时间,则可以在某种程度上在某种程度上预测神经孢子酸的生长。有趣的是,虽然波动的环境与表观遗传反应有关,但我们发现了表述机制对耐受波动温度的一些涉及的证据。缺乏H3K4或H3K36甲基化的突变体对温度波动的反应略有损害,并且在RNA干扰途径中的H3K4甲基化突变体和突变体具有改变的适应时间。

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