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首页> 外文期刊>Tree Physiology >Distinct physiological and transcriptional responses of leaves of paper mulberry (Broussonetia kazinoki x B. papyrifera) under different nitrogen supply levels
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Distinct physiological and transcriptional responses of leaves of paper mulberry (Broussonetia kazinoki x B. papyrifera) under different nitrogen supply levels

机译:不同氮气供应水平下纸桑叶叶片(Broussonetia Kazinoki X B.纸莎草)的不同的生理和转录反应

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摘要

Paper mulberry, a vigorous pioneer species used for ecological reclamation and a high-protein forage plant for economic development, has been widely planted in China. To further develop its potential value, it is necessary to explore the regulatory mechanism of nitrogen metabolism for rational nitrogen utilization. In this study, we investigated the morphology, physiology and transcriptome of a paper mulberry hybrid (Broussonetia kazinoki x B. papyrifera) in response to different nitrogen concentrations. Moderate nitrogen promoted plant growth and biomass accumulation. Photosynthetic characteristics, concentration of nitrogenous compounds and activities of enzymes were stimulated under nitrogen treatment. However, these enhancements were slightly or severely inhibited under excessive nitrogen supply. Nitrite reductase and glutamate synthase were more sensitive than nitrate reductase and glutamine synthetase and more likely to be inhibited under high nitrogen concentrations. Transcriptome analysis of the leaf transcriptome identified 161,961 unigenes. The differentially expressed genes associated with metabolism of nitrogen, alanine, aspartate, glutamate and glycerophospholipid showed high transcript abundances after nitrogen application, whereas those associated with glycerophospholipid, glycerolipid, amino sugar and nucleotide sugar metabolism were down-regulated. Combined with weighted gene coexpression network analysis, we uncovered 16 modules according to similarity in expression patterns. Asparagine synthetase and inorganic pyrophosphatase were considered two hub genes in two modules, which were associated with nitrogen metabolism and phosphorus metabolism, respectively. The expression characteristics of these genes may explain the regulation of morphological, physiological and other related metabolic strategies harmoniously. This multifaceted study provides valuable insights to further understand the mechanism of nitrogen metabolism and to guide utilization of paper mulberry.
机译:纸桑树,用于生态填海层的剧烈先锋物种和经济发展的高蛋白质饲料厂,已被广泛种植在中国。为了进一步发展其潜在价值,有必要探讨氮代谢的调节机制,以获得合理的氮利用。在这项研究中,我们研究了纸桑椹杂交种(Broussonetia Kazinoki X B.Papyrifera)的形态,生理学和转录组响应于不同的氮浓度。中等氮促进植物生长和生物质积累。在氮气处理下刺激光合特性,氮化合物的浓度和酶活性。然而,在过量的氮气供应下略微或严重抑制这些增强。亚硝酸盐还原酶和谷氨酸合成酶比硝酸还原酶和谷氨酰胺合成酶更敏感,并且在高氮浓度下抑制更可能抑制。叶片转录组的转录组分析确定了161,961个unigenes。与氮,丙氨酸,天冬氨酸,谷氨酸和甘油磷脂和甘油磷脂的代谢相关的差异表达基因在氮气施用后显示出高的转录物丰度,而与甘油磷脂,甘油脂,氨基糖和核苷酸代谢相关的那些被下调。结合加权基因共表达网络分析,我们根据表达式模式的相似性揭示了16个模块。柿酰胺合成酶和无机焦磷酸酶在两个模块中被认为是两个枢纽基因,分别与氮代谢和磷代谢相关。这些基因的表达特征可以和谐地解释形态学,生理和其他相关代谢策略的调节。这种多方面的研究提供了有价值的见解,以进一步了解氮代谢的机制并引导纸桑树的使用。

著录项

  • 来源
    《Tree Physiology》 |2020年第5期|共16页
  • 作者单位

    Chinese Acad Forestry Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

    Chinese Acad Forestry Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

    Chinese Acad Forestry Res Inst Forestry State Key Lab Tree Genet &

    Breeding Beijing 100091 Peoples R China;

    Chinese Acad Forestry Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

    Chinese Acad Forestry Res Inst Forestry State Key Lab Tree Genet &

    Breeding Beijing 100091 Peoples R China;

    Natl Forestry &

    Grassland Adm Paulownia Res &

    Dev Ctr Zhengzhou 450003 Henan Peoples R China;

    Chinese Acad Forestry Key Lab Tree Breeding &

    Cultivat Natl Forestry &

    Grassland Adm Res Inst Forestry Beijing 100091 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 林业;
  • 关键词

    coexpression network; differentially expressed genes; nitrogen metabolism; paper mulberry; transcriptomics;

    机译:共表达网络;差异表达基因;氮代谢;纸桑树;转录组织;

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