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Molecular response of poplar to single and combined ozone and drought

机译:杨树对臭氧的单一和联合干旱的分子响应

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High concentration in ground-level ozone (O-3) and water deficit affect forest ecosystems service. Previously we found intercellular CO2 concentration and isoprene emission were affected by the combination of O-3 and drought, but the molecular mechanisms controlling these phenotypes are still open questions. In this study, we investigated the stomatal conductance (g(s)) and transcriptome changes in an O-3-sensitive hybrid poplar exposed to two O-3 levels [charcoal-filtered ambient air (CF) and non-filtered ambient air plus 40 ppb (NF40)] and two water conditions [well-watered (W) and moderate drought (D)]. NF40 reduced the gs more under D than W. We identified the differentially expressed genes (DEGs) from pairwise comparisons and found the poplar's molecular response to drought was counteracted by elevated O-3. From nine clusters obtained through K-means clustering, 12 core transcription factors were identified. DEGs involved in isoprene biosynthesis and phytohormones signal pathways indicate the molecular response and stomatal closure of poplar under O-3 and/or drought might be through MEP/DOXP and ABA-dependent pathways. In addition, 102 Helitrons capturing DEGs were involved in response to O-3 and/or drought and related with ABA-dependent pathway. This integrated analysis provides multi-dimensional insights to understand the molecular response to the combination of O-3 and drought. (C) 2018 Elsevier B.V. All rights reserved.
机译:地面臭氧(O-3)中的高浓度和缺水会影响森林生态系统服务。以前我们发现细胞间二氧化碳浓度和异戊二烯排放受O-3和干旱的组合影响,但是控制这些表型的分子机制仍是未解决的问题。在这项研究中,我们调查了O-3敏感杂种杨暴露于两个O-3水平下的气孔导度(g(s))和转录组的变化[木炭过滤环境空气(CF)和非过滤环境空气加40 ppb(NF40)]和两种水质条件[水量充足(W)和中度干旱(D)]。 NF40在D下比W减少更多的gs。我们从成对比较中鉴定了差异表达基因(DEGs),发现白杨对干旱的分子反应被升高的O-3抵消。从通过K均值聚类获得的9个聚类中,鉴定出12个核心转录因子。参与异戊二烯生物合成和植物激素信号途径的DEGs表明,在O-3和/或干旱条件下,杨树的分子响应和气孔关闭可能是通过MEP / DOXP和ABA依赖性途径。此外,捕获DEG的102个Helitrons参与了对O-3和/或干旱的反应,并与ABA依赖性途径有关。这种综合分析提供了多维的见解,以了解对O-3和干旱结合的分子反应。 (C)2018 Elsevier B.V.保留所有权利。

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