Low parental conflict, no endosperm hybrid barriers, and maternal bias in genomic imprinting in selfing Draba species
Alling, R. M.; Bjerkan, K. N.; Bramsiepe, J.; Nowak, M. D.; Gustafsson, A. L. S.; Brochmann, C.; Brysting, A. K.; Grini, P. E.
Show abstract
In flowering plants, a distinct post-zygotic hybridization barrier between closely related species can arise during seed maturation, resulting in embryo lethality due to abnormal endosperm development. The endosperm initially works as a nutrient sink, acquiring nutrients from adjacent tissues, but later undergoes cellularization, switching to serve as a nutrient source. In hybrid seeds, this cellularization switch can be hampered if the endosperm genomic ratio is imbalanced. Disruption in the genomic ratio can be caused when species of different ploidy are crossed, but also by crosses between species with identical ploidy, if the effective ploidy differs. One factor proposed to influence effective ploidy is the epigenetic phenomenon genomic imprinting, the parent-of-origin specific expression of alleles inherited either maternally or paternally. It has been proposed that outbreeding species exhibit higher effective ploidy compared to selfing species, as a consequence of parental conflict in resource allocation to the developing progenies. This suggests a low anticipation of endosperm-based post-zygotic hybridization barriers between selfing species of similar ploidy. Here, we show that in crosses between the diploid selfing arctic species Draba fladnizensis, D. nivalis and D. subcapitata, the endosperm-based post-zygotic hybridization barrier is absent, supporting low parental conflict. To investigate parent-of-origin allele specific expression, we conducted a genomic imprinting study in D. nivalis and compared to previous studies in other Brassicaceae species. We report a high number of maternally expressed genes (MEGs) and concomitantly low numbers of paternally expressed genes (PEGs). Our results suggest rapid evolution of MEGs and loss of PEGs in a mating system with low parental conflict, proposing that selfing arctic species may exhibit a generally stronger maternal expression bias as an adaptive mechanism to efficiently cope with an extreme environment.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Frequent spontaneous structural rearrangements promote rapid genome diversification in a Brassica napus F1 generation 96%
- Relationships and genome evolution of polyploid Salix species revealed by RAD sequencing data 95%
- Identification of candidate genes for self-compatibility in perennial ryegrass (Lolium perenne L.) 95%
Similar papers in this journal
- Temporal dynamics of QTL effects on vegetative growth in Arabidopsis thaliana 95%
- Tetraploid turnips (Brassica rapa ssp. rapa) are highly tolerant of tetravalent formation and aneuploidy 95%
- Linear modeling reveals a predominance of cis- over trans- regulatory effects in wild and domesticated barley 95%
Similar papers in this journal
Similar papers in this journal
- Genomic basis of adaptation to serpentine soil in two Alyssum species shows convergence with Arabidopsis across 20 million years of divergence 95%
- The nature of intraspecific genome size variation in taxonomically complex eyebrights 94%
- Plant kleptomaniacs: geographic genetic patterns in the amphi-apomictic Rubus ser. Glandulosi (Rosaceae) reveal complex reticulate evolution of Eurasian brambles 93%
"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.