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result(s) for
"Lang, Yongshan"
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Whole-genome sequencing of Oryza brachyantha reveals mechanisms underlying Oryza genome evolution
2013
The wild species of the genus
Oryza
contain a largely untapped reservoir of agronomically important genes for rice improvement. Here we report the 261-Mb
de novo
assembled genome sequence of
Oryza brachyantha
. Low activity of long-terminal repeat retrotransposons and massive internal deletions of ancient long-terminal repeat elements lead to the compact genome of
Oryza brachyantha
. We model 32,038 protein-coding genes in the
Oryza brachyantha
genome, of which only 70% are located in collinear positions in comparison with the rice genome. Analysing breakpoints of non-collinear genes suggests that double-strand break repair through non-homologous end joining has an important role in gene movement and erosion of collinearity in the
Oryza
genomes. Transition of euchromatin to heterochromatin in the rice genome is accompanied by segmental and tandem duplications, further expanded by transposable element insertions. The high-quality reference genome sequence of
Oryza brachyantha
provides an important resource for functional and evolutionary studies in the genus
Oryza
.
The wild rice species can be used as germplasm resources for this crop’s genetic improvement. Here Chen and colleagues report the
de novo
sequencing of the
O. brachyantha
genome, and identify the origin of genome size variation, the role of gene movement and its implications on heterochromatin evolution in the rice genome.
Journal Article
Paired-End Sequencing of Long-Range DNA Fragments for De Novo Assembly of Large, Complex Mammalian Genomes by Direct Intra-Molecule Ligation
2012
The relatively short read lengths from next generation sequencing (NGS) technologies still pose a challenge for de novo assembly of complex mammal genomes. One important solution is to use paired-end (PE) sequence information experimentally obtained from long-range DNA fragments (>1 kb). Here, we characterize and extend a long-range PE library construction method based on direct intra-molecule ligation (or molecular linker-free circularization) for NGS.
We found that the method performs stably for PE sequencing of 2- to 5- kb DNA fragments, and can be extended to 10-20 kb (and even in extremes, up to ∼35 kb). We also characterized the impact of low quality input DNA on the method, and develop a whole-genome amplification (WGA) based protocol using limited input DNA (<1 µg). Using this PE dataset, we accurately assembled the YanHuang (YH) genome, the first sequenced Asian genome, into a scaffold N50 size of >2 Mb, which is over 100-times greater than the initial size produced with only small insert PE reads(17 kb). In addition, we mapped two 7- to 8- kb insertions in the YH genome using the larger insert sizes of the long-range PE data.
In conclusion, we demonstrate here the effectiveness of this long-range PE sequencing method and its use for the de novo assembly of a large, complex genome using NGS short reads.
Journal Article
The yak genome and adaptation to life at high altitude
2012
Jianquan Liu and colleagues report the draft genome sequence of the domestic yak,
Bos grunniens
. Their comparative analyses with low-altitude cattle provide insights into high-altitude adaptation in the yak.
Domestic yaks (
Bos grunniens
) provide meat and other necessities for Tibetans living at high altitude on the Qinghai-Tibetan Plateau and in adjacent regions. Comparison between yak and the closely related low-altitude cattle (
Bos taurus
) is informative in studying animal adaptation to high altitude. Here, we present the draft genome sequence of a female domestic yak generated using Illumina-based technology at 65-fold coverage. Genomic comparisons between yak and cattle identify an expansion in yak of gene families related to sensory perception and energy metabolism, as well as an enrichment of protein domains involved in sensing the extracellular environment and hypoxic stress. Positively selected and rapidly evolving genes in the yak lineage are also found to be significantly enriched in functional categories and pathways related to hypoxia and nutrition metabolism. These findings may have important implications for understanding adaptation to high altitude in other animal species and for hypoxia-related diseases in humans.
Journal Article