Genomic hitchhiking with moisture adaptation patterns stem prickleless in rose
Zhong, M.-C.; Jiang, X.-D.; Yang, G.-Q.; Cui, W.-H.; Suo, Z.-Q.; Wang, W.-J.; Sun, Y.-B.; Wang, D.; Cheng, X.-C.; Li, X.-m.; Dong, X.; Tang, K.-X.; Li, D.-Z.; Hu, J.-Y.
Show abstract
Prickles act against herbivores, pathogens or mechanical injury, while also prevent water loss. However, whether prickles have new function and the molecular genetics of prickle patterning remains poorly explored. Here, we generated a high-quality reference genome assembly for Basyes Thornless (BT), a prickle-free cultivar of Rosa wichuraiana, to identify genetic elements related to stem prickle development. The BT genome harbors a high level of sequence diversity in itself and between cultivar Old Blush (R. chinensis), a founder genotype in rose domestication. Inheritance of stem prickle density was determined and two QTL were identified. Differentially expressed genes in QTL were involved in water-related functions, suggesting that prickle density may hitchhike with adaptations to moist environments. While the prickle-related gene-regulatory-network (GRN) was highly conserved, the expression variation of key candidate genes was associated with prickle density. Our study provides fundamental resources and insights for genome evolution in the Rosaceae. Ongoing efforts on identification of the molecular bases for key rose traits may lead to the improvement of horticultural markets.
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