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Expression Analysis of Oxalate Metabolic Pathway Genes Reveals Oxalate Regulation Patterns in Spinach

机译:草酸盐代谢途径基因的表达分析揭示了菠菜中草酸盐的调控模式

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摘要

Spinach (Spinacia oleracea L.) is one of most important leafy vegetables because of its high nutritional value and high oxalate content, which can be toxic with negative effects on human nutrition. Ammonium and nitrate can effectively regulate oxalate accumulation, although the mechanisms underlying the oxalate biosynthesis and regulation are still undetermined in plants. In the present study, we identified 25 putative genes that are involved in the oxalate biosynthetic and degradation pathway, before analyzing the oxalate content and the expression levels of the corresponding proteins under normal growth conditions, with or without ammonium and nitrate treatments, using high and low oxalate-accumulated spinach genotypes. The two cultivars exhibited different profiles of total oxalate and soluble oxalate accumulation. The high oxalate concentrations in spinach were as a result of the high transcription levels of the genes that are involved in oxalate biosynthesis under normal growth conditions, such as SoGLO2, SoGLO3, three SoOXACs, SoMLS, SoMDH1, SoMDH2, and SoMDH4. The results revealed that the ammonium and nitrate were able to control the oxalate content in leaves, possibly because of the different transcription levels of the genes. The oxalate content is regulated by complex regulatory mechanisms and is varied in the different varieties of spinach. The results from this research may be used to assist the investigation of the mechanism of oxalate regulation and breeding for reduced oxalate content in spinach.
机译:菠菜(Spinacia oleracea L.)由于其高营养价值和高草酸含量而成为最重要的多叶蔬菜之一,其毒性可能会对人体营养产生不良影响。铵和硝酸盐可以有效调节草酸盐的积累,尽管植物中草酸盐生物合成和调节的机制尚不清楚。在本研究中,我们分析了草酸盐的生物合成和降解途径中涉及的25个推定基因,然后分析了正常生长条件下草酸盐的含量和相应蛋白质的表达水平,无论是否使用铵盐和硝酸盐处理,使用高和低草酸盐积累的菠菜基因型。这两个品种表现出不同的草酸总含量和可溶性草酸积累状况。菠菜中草酸盐的高浓度是由于在正常生长条件下参与草酸盐生物合成的基因的高转录水平所致,例如SoGLO2,SoGLO3,三种SoOXAC,SoMLS,SoMDH1,SoMDH2和SoMDH4。结果表明,铵和硝酸盐能够控制叶片中草酸的含量,这可能是由于基因的转录水平不同所致。草酸盐的含量由复杂的调节机制调节,并且在菠菜的不同品种中有所不同。这项研究的结果可用于协助研究草酸盐调节和育种机制以降低菠菜中草酸盐的含量。

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