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A Seed-Specific Regulator of Triterpene Saponin Biosynthesis in Medicago truncatula

机译:Medicago Truncatula的三萜皂苷生物合成种子特异性调节剂

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摘要

The discovery of a seed-specific regulator of hemolytic saponin biosynthesis in Medicago truncatula led to the identification of the missing P450 in the biosynthetic branch of these plant defense compounds. Plants produce a vast array of defense compounds to protect themselves from pathogen attack or herbivore predation. Saponins are a specific class of defense compounds comprising bioactive glycosides with a steroidal or triterpenoid aglycone backbone. The model legume Medicago truncatula synthesizes two types of saponins, hemolytic saponins and nonhemolytic soyasaponins, which accumulate as specific blends in different plant organs. Here, we report the identification of the seed-specific transcription factor TRITERPENE SAPONIN ACTIVATION REGULATOR3 (TSAR3), which controls hemolytic saponin biosynthesis in developing M. truncatula seeds. Analysis of genes that are coexpressed with TSAR3 in transcriptome data sets from developing M. truncatula seeds led to the identification of CYP88A13, a cytochrome P450 that catalyzes the C-16 alpha hydroxylation of medicagenic acid toward zanhic acid, the final oxidation step of the hemolytic saponin biosynthesis branch in M. truncatula. In addition, two uridine diphosphate glycosyltransferases, UGT73F18 and UGT73F19, which glucosylate hemolytic sapogenins at the C-3 position, were identified. The genes encoding the identified biosynthetic enzymes are present in clusters of duplicated genes in the M. truncatula genome. This appears to be a common theme among saponin biosynthesis genes, especially glycosyltransferases, and may be the driving force of the metabolic evolution of saponins.
机译:Medicago Truncatula中溶血皂苷生物合成种子特异性调节剂的发现导致了这些植物防御化合物的生物合成分支中缺失的P450。植物产生大量的防御化合物,以保护自己免受病原体攻击或食草动物捕食。皂苷是一种特定类等类防御化合物,其包含具有甾体或三萜糖酮骨架的生物活性糖苷。模型豆类MedicaCo Truncatula合成两种类型的皂苷,溶血性皂苷和非溶解豆皂甙,其在不同植物器官中作为特异性混合物积聚。在这里,我们报告了鉴定了种子特异性转录因子三萜皂苷活化调节器3(TSAR3),其在发育M.Truncatula种子中控制溶血性皂苷生物合成。通过显影M. truncatula种子与Ts​​ar3在转录组数据组中与Tsar3共同抑制的基因导致CYON88A13的鉴定,一种细胞色素P450,其催化药物酸的C-16α羟基化朝向Zanhic酸,最终氧化步骤的溶解步骤皂苷生物合成分支在M. truncatula。此外,鉴定了两个尿苷二磷酸糖基转移酶,UGT73F18和UGT73F19,其C-3位在C-3位置处的吡糖基化溶血素素。编码所识别的生物合成酶的基因存在于M.Truncatula Genome中的重复基因的簇中。这似乎是皂苷生物合成基因,尤其是糖基转移酶的常见主题,并且可以是皂苷的代谢演化的驱动力。

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  • 来源
    《The Plant Cell》 |2020年第6期|共23页
  • 作者单位

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Angers Inst Rech Hort &

    Semences Unites Mixtes Rech INRAE Inst Agro SFR 4207 QuaSaV F-49071 Beaucouze France;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

    Univ Ghent Dept Plant Biotechnol &

    Bioinformat B-9052 Ghent Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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