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Comparative transcriptomic analysis reveals the roles of overlapping heat-/drought-responsive genes in poplars exposed to high temperature and drought

机译:比较转录组学分析揭示了暴露于高温和干旱的杨树中重叠的热/干旱响应基因的作用

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摘要

High temperature (HT) and drought are both critical factors that constrain tree growth and survival under global climate change, but it is surprising that the transcriptomic reprogramming and physiological relays involved in the response to HT and/or drought remain unknown in woody plants. Thus, Populus simonii saplings were exposed to either ambient temperature or HT combined with sufficient watering or drought. RNA-sequencing analysis showed that a large number of genes were differentially expressed in poplar roots and leaves in response to HT and/or desiccation, but only a small number of these genes were identified as overlapping heat-/drought-responsive genes that are mainly involved in RNA regulation, transport, hormone metabolism, and stress. Furthermore, the overlapping heat-/drought-responsive genes were co-expressed and formed hierarchical genetic regulatory networks under each condition compared. HT-/drought-induced transcriptomic reprogramming is linked to physiological relays in poplar roots and leaves. For instance, HT- and/or drought-induced abscisic acid accumulation and decreases in auxin and other phytohormones corresponded well with the differential expression of a few genes involved in hormone metabolism. These results suggest that overlapping heat-/drought-responsive genes will play key roles in the transcriptional and physiological reconfiguration of poplars to HT and/or drought under future climatic scenarios.
机译:高温(HT)和干旱都是限制树木在全球气候变化下生长和存活的关键因素,但是令人惊讶的是,木本植物中未知的对HT和/或干旱反应的转录组重编程和生理传递仍然未知。因此,将小杨树苗暴露于环境温度或高温下,并充分浇水或干旱。 RNA测序分析表明,响应高温和/或干燥,许多基因在杨树的根和叶中差异表达,但只有少数这些基因被鉴定为重叠的热/干旱响应基因,主要是参与RNA调节,转运,激素代谢和压力。此外,重叠的热/干旱反应基因在每种条件下都被共表达并形成了分级遗传调控网络。 HT /干旱诱导的转录组重编程与杨树根和叶中的生理传递有关。例如,HT和/或干旱诱导的脱落酸积累以及植物生长素和其他植物激素的减少与与激素代谢有关的一些基因的差异表达非常吻合。这些结果表明,在未来气候情景下,重叠的热/干旱响应基因将在杨树向高温和/或干旱的杨树的转录和生理重构中起关键作用。

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