Conservation and Ecological Genetics Lab

Prof. Shirli Bar-David

Positive selection and heat-response transcriptomes reveal adaptive features of the Brassicaceae desert model, Anastatica hierochuntica

Gil Eshel, Nick Duppen, Guannan Wang, Dong Ha Oh, Yana Kazachkova, Pawel Herzyk, Anna Amtmann, Michal Gordon, Vered Chalifa-Caspi, Michelle Arland Oscar, Shirli Bar-David, Amy Marshall-Colon, Maheshi Dassanayake, Simon Barak

Plant adaptation to a desert environment and its endemic heat stress is poorly understood at the molecular level. The naturally heat-tolerant Brassicaceae species Anastatica hierochuntica is an ideal extremophyte model to identify genetic adaptations that have evolved to allow plants to tolerate heat stress and thrive in deserts. We generated an A. hierochuntica reference transcriptome and identified extremophyte adaptations by comparing Arabidopsis thaliana and A. hierochuntica transcriptome responses to heat, and detecting positively selected genes in A. hierochuntica. The two species exhibit similar transcriptome adjustment in response to heat and the A. hierochuntica transcriptome does not exist in a constitutive heat ‘stress-ready’ state. Furthermore, the A. hierochuntica global transcriptome as well as heat-responsive orthologs, display a lower basal and higher heat-induced expression than in A. thaliana. Genes positively selected in multiple extremophytes are associated with stomatal opening, nutrient acquisition, and UV-B induced DNA repair while those unique to A. hierochuntica are consistent with its photoperiod-insensitive, early-flowering phenotype. We suggest that evolution of a flexible transcriptome confers the ability to quickly react to extreme diurnal temperature fluctuations characteristic of a desert environment while positive selection of genes involved in stress tolerance and early flowering could facilitate an opportunistic desert lifestyle.

Publication language English
Pages 1006-1026
Volume 236
Issue number 3
Publication status Published - 01.11.2022

Keywords

adaptation
Anastatica hierochuntica
Brassicaceae
desert species
extremophyte
heat stress
positive selection
transcriptome

ASJC Scopus subject areas

Physiology
Plant Science
Access to Document
10.1111/nph.18411
Other files and links
Link to publication in Scopus