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Transcriptomic Leaf Profiling Reveals Differential Responses of the Two Most Traded Coffee Species to Elevated CO

机译:转录组叶片分析显示两个最易交易咖啡种类的差异反应升高CO

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摘要

As atmospheric [CO2] continues to rise to unprecedented levels, understanding its impact on plants is imperative to improve crop performance and sustainability under future climate conditions. In this context, transcriptional changes promoted by elevated CO2 (eCO2) were studied in genotypes from the two major traded coffee species: the allopolyploid Coffea arabica (Icatu) and its diploid parent, C. canephora (CL153). While Icatu expressed more genes than CL153, a higher number of differentially expressed genes were found in CL153 as a response to eCO2. Although many genes were found to be commonly expressed by the two genotypes under eCO2, unique genes and pathways differed between them, with CL153 showing more enriched GO terms and metabolic pathways than Icatu. Divergent functional categories and significantly enriched pathways were found in these genotypes, which altogether supports contrasting responses to eCO2. A considerable number of genes linked to coffee physiological and biochemical responses were found to be affected by eCO2 with the significant upregulation of photosynthetic, antioxidant, and lipidic genes. This supports the absence of photosynthesis down-regulation and, therefore, the maintenance of increased photosynthetic potential promoted by eCO2 in these coffee genotypes.
机译:随着大气的[二氧化碳]继续上升到前所未有的水平,了解其对植物的影响是在未来的气候条件下改善作物绩效和可持续性。在这种情况下,在两种主要交易咖啡种类的基因型中研究了二氧化碳(ECO2)的转录变化:Allopolyproid Coffea Arabica(ICATU)及其二倍体父母,C.Canephora(CL153)。虽然ICATU表达了比Cl153更多的基因,但在Cl153中发现了较数差异表达的基因作为对ECO2的反应。虽然发现许多基因通常由Eco2下的两个基因型表示,但是,它们之间的独特基因和途径不同,CL153显示比ICATU更丰富的GO术语和代谢途径。在这些基因型中发现了发散的功能类别和显着富集的途径,这完全支持对造影反应对ECO2的反应。发现与咖啡生理和生化反应相关的相当数量的基因受Eco2的影响,具有显着上调光合,抗氧化和脂质基因。这支持缺乏光合作用下调,因此,维持这些咖啡基因型中Eco2促进的促进的光合潜力增加。

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