Comparing genomes of Fructus Amomi-producing species reveals genetic basis of volatile terpenoid divergence

Author:

Yang Peng12ORCID,Ling Xu-Yi1,Zhou Xiao-Fan3ORCID,Chen Yuan-Xia1,Wang Tian-Tian1,Lin Xiao-Jing1,Zhao Yuan-Yuan1,Ye Yu-Shi4ORCID,Huang Lin-Xuan1ORCID,Sun Ye-Wen1,Qi Yu-Xin2ORCID,Ma Dong-Ming1,Zhan Ruo-Ting1ORCID,Huang Xue-Shuang2,Yang Jin-Fen1ORCID

Affiliation:

1. Key Laboratory of Chinese Medicinal Resource from Lingnan (Ministry of Education), School of Pharmaceutical Science, Guangzhou University of Chinese Medicine , Guangzhou 510006 , China

2. Hunan Provincial Key Laboratory for Synthetic Biology of Traditional Chinese Medicine, School of Pharmaceutical Sciences, Hunan University of Medicine , Huaihua 418000 , China

3. Guangdong Province Key Laboratory of Microbial Signals and Disease Control, Integrative Microbiology Research Centre, South China Agricultural University , Guangzhou 510642 , China

4. South China Botanical Garden, Chinese Academy of Sciences , Guangzhou 510650 , China

Abstract

Abstract Wurfbainia longiligularis and Wurfbainia villosa are both rich in volatile terpenoids and are 2 primary plant sources of Fructus Amomi used for curing gastrointestinal diseases. Metabolomic profiling has demonstrated that bornyl diphosphate (BPP)-related terpenoids are more abundant in the W. villosa seeds and have a wider tissue distribution in W. longiligularis. To explore the genetic mechanisms underlying the volatile terpenoid divergence, a high-quality chromosome-level genome of W. longiligularis (2.29 Gb, contig N50 of 80.39 Mb) was assembled. Functional characterization of 17 terpene synthases (WlTPSs) revealed that WlBPPS, along with WlTPS 24/26/28 with bornyl diphosphate synthase (BPPS) activity, contributes to the wider tissue distribution of BPP-related terpenoids in W. longiligularis compared to W. villosa. Furthermore, transgenic Nicotiana tabacum showed that the GCN4-motif element positively regulates seed expression of WvBPPS and thus promotes the enrichment of BPP-related terpenoids in W. villosa seeds. Systematic identification and analysis of candidate TPS in 29 monocot plants from 16 families indicated that substantial expansion of TPS-a and TPS-b subfamily genes in Zingiberaceae may have driven increased diversity and production of volatile terpenoids. Evolutionary analysis and functional identification of BPPS genes showed that BPP-related terpenoids may be distributed only in the Zingiberaceae of monocot plants. This research provides valuable genomic resources for breeding and improving Fructus Amomi with medicinal and edible value and sheds light on the evolution of terpenoid biosynthesis in Zingiberaceae.

Funder

National Natural Science Foundation of China

Key-Area Research and Development Program of Guangdong Province

Hunan Provincial Key Laboratory for Synthetic Biology of Traditional Chinese Medicine

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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