Haplotype-resolved genome assembly and allele-specific gene expression in cultivated ginger

Author:

Cheng Shi-Ping,Jia Kai-Hua,Liu Hui,Zhang Ren-Gang,Li Zhi-Chao,Zhou Shan-Shan,Shi Tian-Le,Ma Ai-Chu,Yu Cong-Wen,Gao Chan,Cao Guang-Lei,Zhao Wei,Nie Shuai,Guo Jing-Fang,Jiao Si-Qian,Tian Xue-Chan,Yan Xue-Mei,Bao Yu-Tao,Yun Quan-Zheng,Wang Xin-Zhu,Porth Ilga,El-Kassaby Yousry A.,Wang Xiao-Ru,Li Zhen,Van de Peer Yves,Mao Jian-FengORCID

Abstract

AbstractGinger (Zingiber officinale) is one of the most valued spice plants worldwide; it is prized for its culinary and folk medicinal applications and is therefore of high economic and cultural importance. Here, we present a haplotype-resolved, chromosome-scale assembly for diploid ginger anchored to 11 pseudochromosome pairs with a total length of 3.1 Gb. Remarkable structural variation was identified between haplotypes, and two inversions larger than 15 Mb on chromosome 4 may be associated with ginger infertility. We performed a comprehensive, spatiotemporal, genome-wide analysis of allelic expression patterns, revealing that most alleles are coordinately expressed. The alleles that exhibited the largest differences in expression showed closer proximity to transposable elements, greater coding sequence divergence, more relaxed selection pressure, and more transcription factor binding site differences. We also predicted the transcription factors potentially regulating 6-gingerol biosynthesis. Our allele-aware assembly provides a powerful platform for future functional genomics, molecular breeding, and genome editing in ginger.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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