Evolutionary genomics of two diploid goat grass species belonging to the section Sitopsis of Aegilops, Aegilops longissima, and Aegilops sharonensis

Author:

Xun Hongwei1ORCID,Lv Ruili1ORCID,Yu Yue1,Yao Jinyang1,Wang Ruisi1,Sha Yan1,Wang Han1,Zhang Deshi1,Xu Chunming1ORCID,Wang Tianya1,Zhang Zhibin1ORCID,Liu Bao1ORCID,Gong Lei1ORCID

Affiliation:

1. Key Laboratory of Molecular Epigenetics of the Ministry of Education (MOE) Northeast Normal University Changchun 130024 China

Abstract

SUMMARYAegilops longissima and Ae. sharonensis, being classified into the Sitopsis section of genus Aegilops, are distinct species both taxonomically and ecologically. Nevertheless, earlier observations indicate that the two species are not reproductively isolated to full extent and can inter‐bred upon secondary contact. However, the genomic underpinnings of the morpho‐ecological differentiation between the two foci species remained unexplored. Here, we resequenced 31 representative accessions of the two species and conducted in‐depth comparative genomic analyses. We demonstrate recurrent and ongoing natural hybridizations between Ae. longissima and Ae. sharonensis, and depict features of genome composition of the resultant hybrids at both individual and population levels. We also delineate genomic regions and candidate genes potentially underpinning the differential morphological and edaphic adaptations of the two species. Intriguingly, a binary morphology was observed in the hybrids, suggesting existence of highly diverged genomic regions that remain uneroded by the admixtures. Together, our results provide new insights into the molding effects of interspecific hybridization on genome composition and mechanisms preventing merge of the two species.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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