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Intraspecific Diversity in the Cold Stress Response of Transposable Elements in the Diatom Leptocylindrus aporus

机译:硅藻Leptocylindrus aporus中转座因子的冷胁迫响应中的种内多样性。

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摘要

Transposable elements (TEs), activated as a response to unfavorable conditions, have been proposed to contribute to the generation of genetic and phenotypic diversity in diatoms. Here we explore the transcriptome of three warm water strains of the diatom , and the possible involvement of TEs in their response to changing temperature conditions. At low temperature (13 °C) several stress response proteins were overexpressed, confirming low temperature to be unfavorable for , while TE-related transcripts of the LTR retrotransposon superfamily were the most enriched transcripts. Their expression levels, as well as most of the stress-related proteins, were found to vary significantly among strains, and even within the same strains analysed at different times. The lack of overexpression after many months of culturing suggests a possible role of physiological plasticity in response to growth under controlled laboratory conditions. While further investigation on the possible central role of TEs in the diatom stress response is warranted, the strain-specific responses and possible role of in-culture evolution draw attention to the interplay between the high intraspecific variability and the physiological plasticity of diatoms, which can both contribute to the adaptation of a species to a wide range of conditions in the marine environment.
机译:已经提出,可转位元件(TEs)作为对不利条件的响应而被激活,有助于硅藻中遗传和表型多样性的产生。在这里,我们探讨了硅藻的三种温水菌株的转录组,以及TEs可能对它们对温度条件变化的响应的参与。在低温(13°C)下,一些应激反应蛋白过表达,证实低温不利于LTR反转录转座子超家族的TE相关转录本,而转录最丰富。发现它们的表达水平以及大多数与压力相关的蛋白质在菌株之间,甚至在不同时间分析的同一菌株内,都存在显着差异。培养数月后缺乏过表达提示,在可控的实验室条件下,生理可塑性在响应生长方面可能发挥作用。虽然有必要进一步研究TEs在硅藻应力响应中的可能中心作用,但菌株特异性响应和培养物中进化的可能作用引起人们对硅藻种内高变异性与生理可塑性之间相互作用的关注,这可以两者都有助于使物种适应海洋环境中的各种条件。

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