Authors
Cheng Li, David Wickell, Li-Yaung Kuo, Xueqing Chen, Bao Nie, Xuezhu Liao, Dan Peng, Jiaojiao Ji, Jerry Jenkins, Mellissa Williams, Shengqiang Shu, Christopher Plott, Kerrie Barry, Shanmugam Rajasekar, Jane Grimwood, Xiaoxu Han, Shichao Sun, Zhuangwei Hou, Weijun He, Guanhua Dai, Cheng Sun, Jeremy Schmutz, James H Leebens-Mack, Fay-Wei Li, Li Wang
Publication date
2024/1/23
Journal
Proceedings of the National Academy of Sciences
Volume
121
Issue
4
Pages
e2312607121
Publisher
National Academy of Sciences
Description
Homosporous lycophytes (Lycopodiaceae) are a deeply diverged lineage in the plant tree of life, having split from heterosporous lycophytes (Selaginella and Isoetes) ~400 Mya. Compared to the heterosporous lineage, Lycopodiaceae has markedly larger genome sizes and remains the last major plant clade for which no chromosome-level assembly has been available. Here, we present chromosomal genome assemblies for two homosporous lycophyte species, the allotetraploid Huperzia asiatica and the diploid Diphasiastrum complanatum. Remarkably, despite that the two species diverged ~350 Mya, around 30% of the genes are still in syntenic blocks. Furthermore, both genomes had undergone independent whole genome duplications, and the resulting intragenomic syntenies have likewise been preserved relatively well. Such slow genome evolution over deep time is in stark contrast to heterosporous …
Total citations
Scholar articles
C Li, D Wickell, LY Kuo, X Chen, B Nie, X Liao, D Peng… - Proceedings of the National Academy of Sciences, 2024