The genome of medicinal plant Sophora flavescens has undergone significant expansion of both transposons and genes.
Qu, Z.; Wang, W.; Adelson, D. L.
Show abstract
PurposeSophora flavescens is a medicinal plant in the genus Sophora of the Fabaceae family. The root of S. flavescens is known in China as Kushen and has a long history of wide use in multiple formulations of Traditional Chinese Medicine (TCM). However, there is little genomic information available for S. flavescens. MethodsIn this study, we used third-generation Nanopore long-read sequencing technology combined with Hi-C scaffolding technology to de novo assemble the S. flavescens genome. ResultsWe obtained a chromosomal level high-quality S. flavescens draft genome. The draft genome size is approximately 2.08 Gb, with more than 80% annotated as Transposable Elements (TEs), which have recently and rapidly proliferated. This genome size is [~]5x larger than its closest sequenced relative Lupinus albus l.. We annotated 60,485 genes and examined their expression profiles in leaf, stem and root tissues, and also characterised the genes and pathways involved in the biosynthesis of major bioactive compounds, including alkaloids, flavonoids and isoflavonoids. ConclusionThe assembled genome highlights the very different evolutionary trajectories that have occurred in recently diverged Fabaceae, leading to smaller duplicated genomes vs larger genomes resulting from TE expansion. Our assembly provides valuable resources for conservation, genetic research and breeding of S. flavescens.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A reference genome assembly of the alpine forage grass Elymus nutans 96%
- A Citrullus genus super-pangenome reveals extensive variations in wild and cultivated watermelons and sheds light on watermelon evolution and domestication 96%
- A super-pangenome for cultivated citrus reveals evolutive features during the allopatric phase of their reticulate evolution 96%
Similar papers in this journal
- A high-continuity and annotated tomato reference genome 95%
- A chromosome-level genome assembly of amodel conifer plant, the Japanese cedar,Cryptomeria japonica D. Don 95%
- Comprehensive genome-wide identification of angiosperm upstream ORFs with peptide sequences conserved in various taxonomic ranges using a novel pipeline, ESUCA 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.