Wolfberry genomes and the evolution of Lycium (Solanaceae)

生物 枸杞 茄科 基因组 牵牛花 基因 基因家族 植物 遗传学 系统发育学 草本植物 进化生物学 医学 病理 替代医学
作者
Youlong CAO,Yan-long Li,Yun Fan,Zhen Li,Kouki Yoshida,Jieyu Wang,Kai Xiao,Ning Wang,Nobutaka Mitsuda,Toshihisa Kotake,Takeshi Ishimizu,Kun-Chan Tsai,Shan-Ce Niu,Diyang Zhang,Wei-Hong Sun,Qing Luo,Jian Zhao,Yue Yin,Bo Zhang,Jun-Yi Wang,Ken Qin,Wei An,Jun He,Guo-Li Dai,Yajun Wang,Zhi Gang Shi,En-Ning Jiao,Peng Wu,Xuedie Liu,Bin Liu,Xing‐Yu Liao,Yu Jiang,Xia Yu,Hao Yang,Xin Xu,Shuangquan Zou,MING-HE LI,Yu‐Yun Hsiao,Yu Lin,Chieh-Kai Liang,You‐Yi Chen,Wen‐Chung Wu,Hsiang-Chia Lu,Si-Ren Lan,Zhi Wen Wang,Xiang Zhao,Wen Zhong,Chuan‐Ming Yeh,Wen‐Chieh Tsai,Yves Van de Peer,Zhong‐Jian Liu
出处
期刊:Communications biology [Springer Nature]
卷期号:4 (1) 被引量:50
标识
DOI:10.1038/s42003-021-02152-8
摘要

Wolfberry Lycium, an economically important genus of the Solanaceae family, contains approximately 80 species and shows a fragmented distribution pattern among the Northern and Southern Hemispheres. Although several herbaceous species of Solanaceae have been subjected to genome sequencing, thus far, no genome sequences of woody representatives have been available. Here, we sequenced the genomes of 13 perennial woody species of Lycium, with a focus on Lycium barbarum. Integration with other genomes provides clear evidence supporting a whole-genome triplication (WGT) event shared by all hitherto sequenced solanaceous plants, which occurred shortly after the divergence of Solanaceae and Convolvulaceae. We identified new gene families and gene family expansions and contractions that first appeared in Solanaceae. Based on the identification of self-incompatibility related-gene families, we inferred that hybridization hotspots are enriched for genes that might be functioning in gametophytic self-incompatibility pathways in wolfberry. Extremely low expression of LOCULE NUBER (LC) and COLORLESS NON-RIPENING (CNR) orthologous genes during Lycium fruit development and ripening processes suggests functional diversification of these two genes between Lycium and tomato. The existence of additional flowering locus C-like MADS-box genes might correlate with the perennial flowering cycle of Lycium. Differential gene expression involved in the lignin biosynthetic pathway between Lycium and tomato likely illustrates woody and herbaceous differentiation. We also provide evidence that Lycium migrated from Africa into Asia, and subsequently from Asia into North America. Our results provide functional insights into Solanaceae origins, evolution and diversification.

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