Author:
Luo Hao,Hill Camilla Beate,Zhou Gaofeng,Zhang Xiao-Qi,Li Chengdao
Abstract
Abstract
Background
Drought is projected to become more frequent and severe in a changing climate, which requires deep sowing of crop seeds to reach soil moisture. Coleoptile length is a key agronomic trait in cereal crops such as barley, as long coleoptiles are linked to drought tolerance and improved seedling establishment under early water-limited growing conditions.
Results
In this study, we detected large genetic variation in a panel of 328 diverse barley (Hordeum vulgare L.) accessions. To understand the overall genetic basis of barley coleoptile length, all accessions were germinated in the dark and phenotyped for coleoptile length after 2 weeks. The investigated barleys had significant variation for coleoptile length. We then conducted genome-wide association studies (GWASs) with more than 30,000 molecular markers and identified 8 genes and 12 intergenic loci significantly associated with coleoptile length in our barley panel. The Squamosa promoter-binding-like protein 3 gene (SPL3) on chromosome 6H was identified as a major candidate gene. The missense variant on the second exon changed serine to alanine in the conserved SBP domain, which likely impacted its DNA-binding activity.
Conclusion
This study provides genetic loci for seedling coleoptile length along with candidate genes for future potential incorporation in breeding programmes to enhance early vigour and yield potential in water-limited environments.
Publisher
Springer Science and Business Media LLC
Reference62 articles.
1. Alexander DH, Lange K. Enhancements to the ADMIXTURE algorithm for individual ancestry estimation. BMC Bioinformatics. 2011;12.
2. Alqudah AM, Sallam A, Baenziger PS, Borner A. GWAS: fast-forwarding gene identification and characterization in temperate cereals: lessons from barley - a review. J Adv Res. 2020;22:119–35.
3. Amram A, Fadida-Myers A, Golan G, Nashef K, Ben-David R, Peleg Z. Effect of GA-sensitivity on wheat early vigor and yield components under deep sowing. Front Plant Sci. 2015;6.
4. Benjamini Y, Hochberg Y. Controlling the false discovery rate - a practical and powerful approach to multiple testing. J R Stat Soc B Methodological. 1995;57(1):289–300.
5. Bovill WD, Hyles J, Zwart AB, Ford BA, Perera G, Phongkham T, et al. Increase in coleoptile length and establishment by Lcol-A1, a genetic locus with major effect in wheat. BMC Plant Biol. 2019;19.
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