» Articles » PMID: 34111524

Chromosomal-level Genome Assembly of the Semi-dwarf Rice Taichung Native 1, an Initiator of Green Revolution

Overview
Journal Genomics
Specialty Genetics
Date 2021 Jun 10
PMID 34111524
Citations 8
Authors
Affiliations
Soon will be listed here.
Abstract

Here we report the 409.5 Mb chromosome-level assembly of the first bred semi-dwarf rice, the Taichung Native 1 (TN1), which served as the template for the development of the Green Revolution (GR) cultivar IR8 "miracle rice". We sequenced the TN1 genome utilizing multiple platforms and produced PacBio long reads, Illumina paired-end reads, Illumina mate-pair reads and 10x Genomics linked reads. We used a hybrid approach to assemble the 226× coverage of sequences by a combination of de novo and reference-guided approaches. The assembled TN1 genome has an N50 scaffold size of 33.1 Mb with the longest measuring 45.5 Mb. We annotated 37,526 genes, in which 24,102 (64.23%) were assigned Blast2GO annotations. The genome has 4672 or 95.4% complete BUSCOs and a repeat content of 51.52%. We developed our own method of creating a GR pangenome using the orthologous relationships of the proteins of TN1, IR8, MH63 and IR64, identifying 16,999 core orthologue groups of Green Revolution. From the pangenome, we identified a set of shared and unique gene ontology terms for the accessory clusters, characterizing TN1, IR8, MH63 and IR64. This TN1 genome assembly and GR pangenome will be a resource for new genomic discoveries about Green Revolution, and for improving the disease and insect resistances and the yield of rice.

Citing Articles

A chromosome-level genome assembly of the Korean crossbred pig Nanchukmacdon (Sus scrofa).

Kwon D, Park N, Wy S, Lee D, Chai H, Cho I Sci Data. 2023; 10(1):761.

PMID: 37923776 PMC: 10624824. DOI: 10.1038/s41597-023-02661-7.


Haplotype analysis and marker development of five salt-tolerant-related genes in rice ( L.).

Li P, Li Z, Liu X, Zhang H, Zhang S, Liu F Front Plant Sci. 2023; 14:1259462.

PMID: 37727858 PMC: 10505798. DOI: 10.3389/fpls.2023.1259462.


A chromosome-level genome assembly of an early matured aromatic rice variety Qigeng10 to accelerate rice breeding for high grain quality in Northeast China.

Jiang S, Zhang X, Yang X, Liu C, Wang L, Ma B Front Plant Sci. 2023; 14:1134308.

PMID: 36909446 PMC: 9995481. DOI: 10.3389/fpls.2023.1134308.


Photoperiod Genes Contribute to Daylength-Sensing and Breeding in Rice.

Qiu L, Zhou P, Wang H, Zhang C, Du C, Tian S Plants (Basel). 2023; 12(4).

PMID: 36840246 PMC: 9959395. DOI: 10.3390/plants12040899.


Chromosome-level genome assembly of Dongxiang wild rice () provides insights into resistance to disease and freezing.

Que Z, Lu Q, Shen C Front Genet. 2022; 13:1029879.

PMID: 36457753 PMC: 9707695. DOI: 10.3389/fgene.2022.1029879.