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Understory and canopy additions of nitrogen differentially affect carbon and nitrogen metabolism of Psychotria rubra in an evergreen broad-leaved forest

机译:氮气横叶阔叶森林中含氮的余地和冠层含有差异影响精神病肾的碳和氮代谢

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摘要

To assess the effects of nitrogen deposition on forest plants, researchers have conducted many nitrogen-addition experiments. Most of these experiments, however, failed to fully simulate atmospheric nitrogen deposition because they failed to assess interception of nitrogen deposition by the forest canopy. Here, we used transcripto-mics, proteomics, and metabolomics to compare the effects of understory nitrogen addition (UAN), canopy nitrogen addition (CAN), and a control (no nitrogen addition) on carbon and nitrogen metabolism in leaves of Psychotria rubra, a dominant subtropical understory plant species in evergreen broad-leaved forests in South China. We first established a reference P. rubra transcriptome via RNA-seq and obtained a total of 93,986 unigenes from de novo assembly. Next, we quantitatively investigated the proteome and metabolome in leaves, and identified 4021 proteins and 562 metabolites. Under the CAN treatment and relative to the control, 36 genes were up-regulated and 23 were down-regulated, and we identified 46 up-regulated proteins and 49 down-regulated proteins. Under the UAN treatment and relative to the control, 1525 genes were up-regulated and 224 genes down-regulated, and we identified 35 up-regulated proteins and 71 down-regulated proteins. These differentially expressed genes and proteins were related to photosynthesis, amino acid metabolism, and flavonoid biosynthesis. Accordingly, 15 differentially accumulated metabolites in response to CAN and 20 in response to UAN were found; these differentially accumulated metabolites included 4 amino acids and 3 flavonoids. Taken together, our results show that the UAN treatment had a greater effect on photosynthesis, amino acid metabolism, and flavonoid biosynthesis than the CAN treatment. Most importantly, the results indicate that understory application of nitrogen in experiments may incorrectly estimate the effects of nitrogen deposition on nitrogen and carbon utilization by P. rubra and perhaps by other understory woody plants in the evergreen broad-leaved forests in South China as well.
机译:为了评估氮沉积对森林植物的影响,研究人员进行了许多氮添加实验。然而,这些实验中的大多数未能完全模拟大气氮沉积,因为它们未能评估森林冠层的氮沉积截留。在这里,我们使用了转录型MICS,蛋白质组学和代谢组科来比较林氮添加(UAN),树冠氮添加(CAN)的影响,以及精神病患者叶片中的碳和氮代谢的对照(无氮添加),华南常绿阔叶林中占优势亚热带林植物。我们首先通过RNA-SEQ建立了参考P.Rubra转录组,并从Novo组件中获得了总共93,986个unigenes。接下来,我们定量地研究了叶片中的蛋白质组和代谢物,并确定了4021个蛋白质和562代谢物。在可以治疗和相对于对照中,上调36个基因,下调23个基因,我们鉴定了46个上调蛋白质和49个下调蛋白质。在UAN治疗和相对于对照中,将1525个基因进行上调,下调224个基因,我们鉴定了35个上调的蛋白质和71个下调蛋白质。这些差异表达的基因和蛋白质与光合作用,氨基酸代谢和黄酮化生物合成有关。因此,发现,发现了15个差异累积的代谢物,响应于含量和20次响应审核;这些差异累积的代谢物包括4个氨基酸和3种异载物。我们的结果表明,UAN治疗对光合作用,氨基酸代谢和类黄酮生物合成具有更大的影响。最重要的是,结果表明,氮在实验中的床上施工可能错误地估计氮沉积对氮素和碳利用的氮和碳利用的影响,也许是华南常绿阔叶林中的其他林木植物。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul1期|138183.1-138183.13|共13页
  • 作者单位

    CAS Engineering Laboratory for Vegetation Ecosystem Restoration on Islands and Coastal Zones South China Botanical Garden Chinese Academy of Sciences Guangzhou 510650 China Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou) Guangzhou 511458 China;

    CAS Engineering Laboratory for Vegetation Ecosystem Restoration on Islands and Coastal Zones South China Botanical Garden Chinese Academy of Sciences Guangzhou 510650 China University of Chinese Academy of Sciences Beijing 100049 China;

    CAS Engineering Laboratory for Vegetation Ecosystem Restoration on Islands and Coastal Zones South China Botanical Garden Chinese Academy of Sciences Guangzhou 510650 China University of Chinese Academy of Sciences Beijing 100049 China;

    CAS Engineering Laboratory for Vegetation Ecosystem Restoration on Islands and Coastal Zones South China Botanical Garden Chinese Academy of Sciences Guangzhou 510650 China University of Chinese Academy of Sciences Beijing 100049 China;

    Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems College of the Environment and Ecology Xiamen University Xiamen 361005 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Canopy addition of nitrogen; Gene expression; Secondary metabolism; Subtropical forest;

    机译:树冠添加氮;基因表达;次生新陈代谢;亚热带林;

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