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Splicing-related genes are alternatively spliced upon changes in ambient temperatures in plants

机译:剪接相关基因可根据植物环境温度的变化进行剪接

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摘要

Plants adjust their development and architecture to small variations in ambient temperature. In a time in which temperatures are rising world-wide, the mechanism by which plants are able to sense temperature fluctuations and adapt to it, is becoming of special interest. By performing RNA-sequencing on two Arabidopsis accession and one Brassica species exposed to temperature alterations, we showed that alternative splicing is an important mechanism in ambient temperature sensing and adaptation. We found that amongst the differentially alternatively spliced genes, splicing related genes are enriched, suggesting that the splicing machinery itself is targeted for alternative splicing when temperature changes. Moreover, we showed that many different components of the splicing machinery are targeted for ambient temperature regulated alternative splicing. Mutant analysis of a splicing related gene that was differentially spliced in two of the genotypes showed an altered flowering time response to different temperatures. We propose a two-step mechanism where temperature directly influences alternative splicing of the splicing machinery genes, followed by a second step where the altered splicing machinery affects splicing of downstream genes involved in the adaptation to altered temperatures.
机译:植物会根据环境温度的微小变化调整其开发和架构。在世界范围内温度升高的时代,植物能够感知温度波动并适应温度波动的机制正变得尤为重要。通过对暴露于温度变化的两个拟南芥属和一个芸苔属植物进行RNA测序,我们显示出可变剪接是环境温度感测和适应中的重要机制。我们发现,在差异交替剪接的基因中,剪接相关的基因得到了丰富,这表明当温度变化时,剪接机制本身就是进行选择性剪接的目标。此外,我们证明了拼接机械的许多不同组件都是针对环境温度可调节的拼接。对两个基因型中有差异剪接的剪接相关基因的突变分析表明,开花时间对不同温度的反应有所改变。我们提出了一个两步机制,其中温度直接影响剪接机制基因的选择性剪接,其次是第二步,其中改变的剪接机制影响参与适应温度变化的下游基因的剪接。

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