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橄榄 PLP_deC 基因的功能分化:在全基因组水平上对代谢物生物合成和遗传改良的深入了解。

Functional differentiation of olive PLP_deC genes: insights into metabolite biosynthesis and genetic improvement at the whole-genome level.

机构信息

State Key Laboratory of Tree Genetics and Breeding, Research Institute of Forestry, Chinese Academy of Forestry, Beijing, 100091, China.

Collaborative Innovation Center of Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing, 210037, China.

出版信息

Plant Cell Rep. 2024 Apr 23;43(5):127. doi: 10.1007/s00299-024-03212-z.

Abstract

This study identified 16 pyridoxal phosphate-dependent decarboxylases in olive at the whole-genome level, conducted analyses on their physicochemical properties, evolutionary relationships and characterized their activity. Group II pyridoxal phosphate-dependent decarboxylases (PLP_deC II) mediate the biosynthesis of characteristic olive metabolites, such as oleuropein and hydroxytyrosol. However, there have been no report on the functional differentiation of this gene family at the whole-genome level. This study conducted an exploration of the family members of PLP_deC II at the whole-genome level, identified 16 PLP_deC II genes, and analyzed their gene structure, physicochemical properties, cis-acting elements, phylogenetic evolution, and gene expression patterns. Prokaryotic expression and enzyme activity assays revealed that OeAAD2 and OeAAD4 could catalyze the decarboxylation reaction of tyrosine and dopa, resulting in the formation of their respective amine compounds, but it did not catalyze phenylalanine and tryptophan. Which is an important step in the synthetic pathway of hydroxytyrosol and oleuropein. This finding established the foundational data at the molecular level for studying the functional aspects of the olive PLP_deC II gene family and provided essential gene information for genetic improvement of olive.

摘要

本研究在全基因组水平上鉴定了橄榄中的 16 种依赖吡哆醛磷酸的脱羧酶,对其理化性质、进化关系进行了分析,并对其活性进行了表征。第二组吡哆醛磷酸依赖脱羧酶(PLP_deC II)介导橄榄特征代谢物如橄榄苦苷和羟基酪醇的生物合成。然而,目前还没有关于该基因家族在全基因组水平上的功能分化的报道。本研究在全基因组水平上对 PLP_deC II 家族成员进行了探索,鉴定了 16 个 PLP_deC II 基因,并分析了它们的基因结构、理化性质、顺式作用元件、系统进化和基因表达模式。原核表达和酶活性测定表明,OeAAD2 和 OeAAD4 可以催化酪氨酸和多巴的脱羧反应,形成各自的胺类化合物,但不能催化苯丙氨酸和色氨酸。这是羟基酪醇和橄榄苦苷合成途径中的重要步骤。这一发现为研究橄榄 PLP_deC II 基因家族的功能方面提供了分子水平的基础数据,并为橄榄的遗传改良提供了必要的基因信息。

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