Haplotype-resolved genome assembly of Coriaria nepalensis a non-legume nitrogen-fixing shrub

Author:

Zhao Shi-Wei,Guo Jing-Fang,Kong Lei,Nie Shuai,Yan Xue-Mei,Shi Tian-Le,Tian Xue-Chan,Ma Hai-Yao,Bao Yu-Tao,Li Zhi-Chao,Chen Zhao-Yang,Zhang Ren-GangORCID,Ma Yong-PengORCID,El-Kassaby Yousry A.ORCID,Porth IlgaORCID,Zhao Wei,Mao Jian-FengORCID

Abstract

AbstractCoriaria nepalensis Wall. (Coriariaceae) is a nitrogen-fixing shrub which forms root nodules with the actinomycete Frankia. Oils and extracts of C. nepalensis have been reported to be bacteriostatic and insecticidal, and C. nepalensis bark provides a valuable tannin resource. Here, by combining PacBio HiFi sequencing and Hi-C scaffolding techniques, we generated a haplotype-resolved chromosome-scale genome assembly for C. nepalensis. This genome assembly is approximately 620 Mb in size with a contig N50 of 11 Mb, with 99.9% of the total assembled sequences anchored to 40 pseudochromosomes. We predicted 60,862 protein-coding genes of which 99.5% were annotated from databases. We further identified 939 tRNAs, 7,297 rRNAs, and 982 ncRNAs. The chromosome-scale genome of C. nepalensis is expected to be a significant resource for understanding the genetic basis of root nodulation with Frankia, toxicity, and tannin biosynthesis.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Library and Information Sciences,Statistics, Probability and Uncertainty,Computer Science Applications,Education,Information Systems,Statistics and Probability

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