| Literature DB >> 31799788 |
Xiaoming Song1,2, Jinpeng Wang1,2,3,4, Nan Li1,2, Jigao Yu1, Fanbo Meng1, Chendan Wei1, Chao Liu1, Wei Chen1,2,5, Fulei Nie1,2, Zhikang Zhang1, Ke Gong1, Xinyu Li1, Jingjing Hu1, Qihang Yang1, Yuxian Li1, Chunjin Li1, Shuyan Feng1, He Guo1, Jiaqing Yuan1, Qiaoying Pei1, Tong Yu1, Xi Kang1, Wei Zhao1, Tianyu Lei1, Pengchuan Sun1, Li Wang1, Weina Ge1, Di Guo1, Xueqian Duan1, Shaoqi Shen1, Chunlin Cui1, Ying Yu1, Yangqin Xie1, Jin Zhang1, Yue Hou1, Jianyu Wang1, Jinyu Wang1, Xiu-Qing Li6, Andrew H Paterson7, Xiyin Wang1,2,5.
Abstract
Coriander (Coriandrum sativum L. 2n = 2x = 22), a plant from the Apiaceae family, also called cilantro or Chinese parsley, is a globally important crop used as vegetable, spice, fragrance and traditional medicine. Here, we report a high-quality assembly and analysis of its genome sequence, anchored to 11 chromosomes, with total length of 2118.68 Mb and N50 scaffold length of 160.99 Mb. We found that two whole-genome duplication events, respectively, dated to ~45-52 and ~54-61 million years ago, were shared by the Apiaceae family after their split from lettuce. Unbalanced gene loss and expression are observed between duplicated copies produced by these two events. Gene retention, expression, metabolomics and comparative genomic analyses of terpene synthase (TPS) gene family, involved in terpenoid biosynthesis pathway contributing to coriander's special flavour, revealed that tandem duplication contributed to coriander TPS gene family expansion, especially compared to their carrot counterparts. Notably, a TPS gene highly expressed in all 4 tissues and 3 development stages studied is likely a major-effect gene encoding linalool synthase and myrcene synthase. The present genome sequencing, transcriptome, metabolome and comparative genomic efforts provide valuable insights into the genome evolution and spice trait biology of Apiaceae and other related plants, and facilitated further research into important gene functions and crop improvement.Entities:
Keywords: De novo coriander genome; RNA-Seq; genome evolution; metabolomics; terpenoid biosynthesis pathway; tetraploid
Year: 2020 PMID: 31799788 DOI: 10.1111/pbi.13310
Source DB: PubMed Journal: Plant Biotechnol J ISSN: 1467-7644 Impact factor: 9.803