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A Transcriptomic Approach to Understanding the Combined Impacts of Supra-Optimal Temperatures and CO

机译:理解超优温温度和CO的结合影响的转录组态方法

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摘要

Understanding the effect of extreme temperatures and elevated air (CO2) is crucial for mitigating the impacts of the coffee industry. In this work, leaf transcriptomic changes were evaluated in the diploid C. canephora and its polyploid C. arabica, grown at 25 °C and at two supra-optimal temperatures (37 °C, 42 °C), under ambient (aCO2) or elevated air CO2 (eCO2). Both species expressed fewer genes as temperature rose, although a high number of differentially expressed genes (DEGs) were observed, especially at 42 °C. An enrichment analysis revealed that the two species reacted differently to the high temperatures but with an overall up-regulation of the photosynthetic machinery until 37 °C. Although eCO2 helped to release stress, 42 °C had a severe impact on both species. A total of 667 photosynthetic and biochemical related-DEGs were altered with high temperatures and eCO2, which may be used as key probe genes in future studies. This was mostly felt in C. arabica, where genes related to ribulose-bisphosphate carboxylase (RuBisCO) activity, chlorophyll a-b binding, and the reaction centres of photosystems I and II were down-regulated, especially under 42°C, regardless of CO2. Transcriptomic changes showed that both species were strongly affected by the highest temperature, although they can endure higher temperatures (37 °C) than previously assumed.
机译:了解极端温度和升高的空气(CO2)的影响对于减轻咖啡行业的影响至关重要。在这项工作中,在二倍体C. canephora及其多倍体C.阿拉比卡中评估叶片转录组改变,在25℃和两个上次最佳温度(37℃,42℃)下,在环境(ACO2)或升高的AIR CO2(ECO2)。两种物种表达较少的基因作为温度升高,尽管观察到大量的差异表达基因(DEGS),尤其是在42℃下。富集分析显示,两种物种与高温反应不同,但在37°C之前,光合机械的总体上调。虽然ECO2有助于释放应力,但是42°C对两种物种产生严重影响。用高温和ECO2改变了总共667个光合和生化相关型,可在未来研究中用作关键探针基因。这主要是C.阿拉比卡的含量,其中与核糖糖 - 二磷酸羧化酶(Rubisco)活性,叶绿素A-B结合的基因和光系统I和II的反应中心进行下调,特别是在42℃下,无论CO 2如何。转录组的变化表明,两种物种受到最高温度的强烈影响,尽管它们可以持续比以前假定的更高的温度(37°C)。

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