bioRxiv Science⌕ Search

Biology subjects

Jha, V. K.

Publications and source records attributed to Jha, V. K..

2 recordsLinked to original sources

Two liverworts from same habitats developed many similar but few distinct seasonal adaptive strategies: Insights from a transcriptomic approach

Liverworts are among the first land plants to experience seasonal changes after terrestrialization Therefore, we conducted a seasonal transcriptome analysis of two representative liverwort species from India, Dumortiera hirsuta and Plagiochasma appendiculatum, during their distinct growing seasons: the pre-monsoon, monsoon, post-monsoon, and fruiting season to understand the seasonal adaptations. Phylogenetic trees and evolutionary timescale analyses showed that D. hirsuta is primitive compared to P. appendiculatum. The RNA-seq analysis showed that D. hirsuta primarily modifies its transcriptome in the post-monsoon season but mainly induces specific genes in the fruiting season, most likely to develop reproductive organs and to adapt strategically by conserving energy in the fruiting season to deal with the harsh environmental conditions of both seasons. Conversely, P. appendiculatum exhibited significant transcriptome variability during both the fruiting and post-monsoon seasons, albeit to a lesser degree than D. hirsuta. This suggests that, to survive in the harsh conditions of both seasons, it strategically modulated its necessary gene expression levels over an extended period of time while taking energy conservation into consideration. This study offers the first comprehensive view of seasonal adaptive strategies employed by two liverworts that coexist in the same habitat but diverged at different stages in their evolutionary history.

genomics↗

Shu complex is an ATPase that regulates Rad51 filaments in homologous recombination-directed DNA damage response.

Rad51 filaments are Rad51-coated single-stranded DNA and essential intermediates in homologous recombination (HR) and the HR-associated DNA damage response. The yeast Shu complex (Shu) is a conserved regulator of HR, working through its modulation of Rad51 filaments. However, the biochemical properties of Shu remain unclear, which hinders molecular insight into Shus role in HR and the DNA damage response. In this work, we biochemically characterized Shu and analyzed its molecular actions on single-stranded DNA and Rad51 filaments. First, we revealed that Shu preferentially binds DNA with ssDNA components and ssDNA/double-stranded DNA junctions. Then, we identified and validated, through site-specific mutagenesis, that Shu is an ATPase and hydrolyzes ATP in a DNA-dependent manner. Furthermore, we showed that Shu interacts with ssDNA and Rad51 filaments at the 5 end preferentially, altering the conformations of ssDNA and the filaments. The alterations depend on the ATP hydrolysis of Shu, suggesting that the ATPase activity of Shu is important in regulating its functions in HR. The preference of Shu for acting on the 5 end of Rad51 filaments aligns with the observation that Shu promotes lesion bypass at the lagging strand of a replication fork. Our work on Shu, a prototype modulator of Rad51 filaments in eukaryotes, provides a general molecular mechanism for Rad51-mediated error-free DNA lesion bypass.

biochemistry↗