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Transcriptome analysis of Medicago lupulina seedlings leaves treated by high calcium provides insights into calcium oxalate formation

机译:高钙处理的Medicago Lupulina幼苗叶子的转录组分析提供了含有草酸钙钙的见解

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摘要

Background and aim Calcium oxalate (CaOx) is a common biomineral found in the plant kingdom. Crystals of CaOx occur in different plant tissues, such as leaves and stems. However, little is known about the biosynthesis of CaOx in oxalate-accumulating plants. Moreover, the literature on genes related to CaOx formation under high-calcium environment is scarce. In the present study, the physiological parameters and the transcript profiles of Medicago lupulina leaves treated with 0.1 and 25 mM Ca2+ were analyzed to study the genes involved in the biosynthesis of CaOx. Results We demonstrated that exposure to high external calcium concentration induced H2O2 production, ascorbic acid degradation, and CaOx accumulation in M. lupulina leaves. Moreover, we identified 1715 differentially expressed genes (DEGs) (1322 up-regulated and 393 down-regulated genes) in leaves treated with 25 mM Ca2+ compared with the leaves treated with 0.1 mM Ca2+. We further demonstrated the involvement of DEGs in oxalic acid production, calcium transport, and calcium buffering. These results revealed that a high calcium promoted oxalic acid biosynthesis by inducing the expression of NADPH oxidase and ascorbate oxidase genes. In addition, several genes encoding cyclic nucleotide-gated channel, Ca2+-ATPase, H+/Ca2+ exchangers, and calcium-binding proteins were found to be differentially expressed and involved in calcium transport and calcium buffering. Conclusion Our transcriptome analyses provide a comprehensive insight into the biosynthesis of CaOx in oxalate-accumulating plants.
机译:背景和AIM氧化钙(CAOX)是植物王国中发现的常见生物霉素。 Caox的晶体发生在不同的植物组织中,例如叶子和茎。然而,关于在含有草酸盐积累植物中的Caox的生物合成很少。此外,在高钙环境下与CAOX形成有关的基因的文献是稀缺的。在本研究中,分析了用0.1和25mM Ca2 +处理的MedicaCo Lupulina叶子的生理参数和转录物谱,研究涉及CaOX生物合成的基因。结果我们证明,暴露于高外部钙浓度诱导的H 2 O 2生产,抗坏血酸降解和山茱萸叶中的CaOX积累。此外,与用0.1mM Ca 2 +处理的叶​​子相比,我们将1715个差异表达的基因(1322个上调和393个下调基因)鉴定在用25mM Ca 2 +处理的叶​​子中。我们进一步证明了DEGS在草酸生产,钙转运和钙缓冲中的参与。这些结果表明,通过诱导NADPH氧化酶和抗坏血酸氧化酶基因的表达,高钙促进草酸生物合成。此外,发现若干基因编码循环核苷酸门控通道,Ca2 + -AtPase,H + / Ca2 +交换剂和钙结合蛋白质被差异表达并参与钙转运和钙缓冲。结论我们的转录组分析提供了综合深入了解曹酸盐积累植物中曹的生物合成。

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  • 来源
    《Plant and Soil》 |2019年第2期|共16页
  • 作者单位

    Xiamen Univ Coll Environm &

    Ecol Key Lab Subtrop Wetland Ecosyst Res MOE South Xiangan Rd Xiamen 361102 Fujian Peoples R China;

    Guizhou Normal Univ Key Lab State Forestry Adm Biodivers Conservat Ka 116 Baoshan Rd N Guiyang 550001 Guizhou Peoples R China;

    Guizhou Normal Univ Key Lab State Forestry Adm Biodivers Conservat Ka 116 Baoshan Rd N Guiyang 550001 Guizhou Peoples R China;

    Xiamen Univ Coll Environm &

    Ecol Key Lab Subtrop Wetland Ecosyst Res MOE South Xiangan Rd Xiamen 361102 Fujian Peoples R China;

    Xiamen Univ Coll Environm &

    Ecol Key Lab Subtrop Wetland Ecosyst Res MOE South Xiangan Rd Xiamen 361102 Fujian Peoples R China;

    Guizhou Normal Univ Key Lab State Forestry Adm Biodivers Conservat Ka 116 Baoshan Rd N Guiyang 550001 Guizhou Peoples R China;

    Xiamen Univ Coll Environm &

    Ecol Key Lab Subtrop Wetland Ecosyst Res MOE South Xiangan Rd Xiamen 361102 Fujian Peoples R China;

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

    Calcium oxalate; High calcium; Medicago; Oxalate-accumulating plants; Transcriptome;

    机译:草酸钙;高钙;Medicago;含有氧化植物;转录组;

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