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Maize Oxalyl-CoA Decarboxylase1 Degrades Oxalate and Affects the Seed Metabolome and Nutritional Quality

机译:玉米草酰辅酶A脱羧酶1降解草酸并影响种子代谢和营养品质

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摘要

The organic acid oxalate occurs in microbes, animals, and plants; however, excessive oxalate accumulation in vivo is toxic to cell growth and decreases the nutritional quality of certain vegetables. However, the enzymes and functions required for oxalate degradation in plants remain largely unknown. Here, we report the cloning of a maize (Zea mays) opaque endosperm mutant that encodes oxalyl-CoA decarboxylase1 (EC4.1.1.8; OCD1). Ocd1 is generally expressed and is specifically induced by oxalate. The ocd1 mutant seeds contain a significantly higher level of oxalate than the wild type, indicating that the ocd1 mutants have a defect in oxalate catabolism. The maize classic mutant opaque7 (o7) was initially cloned for its high lysine trait, although the gene function was not understood until its homolog in Arabidopsis thaliana was found to encode an oxalyl-CoA synthetase (EC 6.2.1.8), which ligates oxalate and CoA to form oxalyl-CoA. Our enzymatic analysis showed that ZmOCD1 catalyzes oxalyl-CoA, the product of O7, into formyl-CoA and CO2 for degradation. Mutations in ocd1 caused dramatic alterations in the metabolome in the endosperm. Our findings demonstrate that ZmOCD1 acts downstream of O7 in oxalate degradation and affects endosperm development, the metabolome, and nutritional quality in maize seeds.
机译:草酸有机酸存在于微生物,动物和植物中;然而,草酸在体内的过度积累对细胞生长有毒,并降低某些蔬菜的营养质量。但是,植物中草酸盐降解所需的酶和功能仍然未知。在这里,我们报告了一个编码草酰辅酶A脱羧酶1(EC4.1.1.8; OCD1)的玉米(Zea mays)不透明胚乳突变体的克隆。 Ocd1通常表达,并由草酸盐特异性诱导。 ocd1突变体种子含有的草酸盐水平明显高于野生型,表明ocd1突变体在草酸盐分解代谢方面存在缺陷。最初由于其高赖氨酸特性而克隆了玉米经典突变体opaque7(o7),尽管直到发现其在拟南芥中的同系物编码草酰-CoA合成酶(EC 6.2.1.8)时才了解基因功能,该酶连接草酸和CoA形成草酰CoA。我们的酶分析表明,ZmOCD1将O7的产物草酰辅酶A催化成甲酰辅酶A和CO2降解。 ocd1的突变引起胚乳代谢组的急剧变化。我们的发现表明ZmOCD1在草酸盐降解中作用于O7的下游,并影响胚乳发育,代谢组和玉米种子的营养品质。

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