The pan-genome and local adaptation of Arabidopsis thaliana

Author:

Kang MinghuiORCID,Wu Haolin,Liu HuanhuanORCID,Liu Wenyu,Zhu Mingjia,Han Yu,Liu Wei,Chen Chunlin,Song Yan,Tan Luna,Yin Kangqun,Zhao Yusen,Yan Zhen,Lou ShanglingORCID,Zan YanjunORCID,Liu JianquanORCID

Abstract

AbstractArabidopsis thaliana serves as a model species for investigating various aspects of plant biology. However, the contribution of genomic structural variations (SVs) and their associate genes to the local adaptation of this widely distribute species remains unclear. Here, we de novo assemble chromosome-level genomes of 32 A. thaliana ecotypes and determine that variable genes expand the gene pool in different ecotypes and thus assist local adaptation. We develop a graph-based pan-genome and identify 61,332 SVs that overlap with 18,883 genes, some of which are highly involved in ecological adaptation of this species. For instance, we observe a specific 332 bp insertion in the promoter region of the HPCA1 gene in the Tibet-0 ecotype that enhances gene expression, thereby promotes adaptation to alpine environments. These findings augment our understanding of the molecular mechanisms underlying the local adaptation of A. thaliana across diverse habitats.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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