Evolution‐guided multiomics provide insights into the strengthening of bioactive flavone biosynthesis in medicinal pummelo

生物 MYB公司 苯丙素 基因组 基因 次生代谢 转录组 代谢组 植物 遗传学 生物合成 转录因子 生物化学 基因表达 代谢物
作者
Weikang Zheng,Wang Zhang,Dahui Liu,Minqiang Yin,Xia Wang,Shouchuang Wang,Shuangqian Shen,Bo Liu,Yue Huang,Xinxin Li,Qian Zhao,Yan Lu,Yuantao Xu,Shiqi Yu,Bin Hu,Yuan Tao,Zhinan Mei,Lanping Guo,Jie Luo,Xiuxin Deng,Qiang Xu,Luqi Huang,Zhaocheng Ma
出处
期刊:Plant Biotechnology Journal [Wiley]
卷期号:21 (8): 1577-1589 被引量:6
标识
DOI:10.1111/pbi.14058
摘要

Pummelo (Citrus maxima or Citrus grandis) is a basic species and an important type for breeding in Citrus. Pummelo is used not only for fresh consumption but also for medicinal purposes. However, the molecular basis of medicinal traits is unclear. Here, compared with wild citrus species/Citrus-related genera, the content of 43 bioactive metabolites and their derivatives increased in the pummelo. Furthermore, we assembled the genome sequence of a variety for medicinal purposes with a long history, Citrus maxima 'Huazhouyou-tomentosa' (HZY-T), at the chromosome level with a genome size of 349.07 Mb. Comparative genomics showed that the expanded gene family in the pummelo genome was enriched in flavonoids-, terpenoid-, and phenylpropanoid biosynthesis. Using the metabolome and transcriptome of six developmental stages of HZY-T and Citrus maxima 'Huazhouyou-smooth' (HZY-S) fruit peel, we generated the regulatory networks of bioactive metabolites and their derivatives. We identified a novel MYB transcription factor, CmtMYB108, as an important regulator of flavone pathways. Both mutations and expression of CmtMYB108, which targets the genes PAL (phenylalanine ammonia-lyase) and FNS (flavone synthase), displayed differential expression between Citrus-related genera, wild citrus species and pummelo species. This study provides insights into the evolution-associated changes in bioactive metabolism during the origin process of pummelo.
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