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Genetic architecture of sugarcane traits in a polyploid genomics framework.

Journal articles  - Journal Article
Wang, J; Li, X; Wang, Y; Lin, J; Chen, S; Liu, H; Chen, X; Chai, K; Dong, A; Zhao, T; Feng, C; Wu, R; Zhao, P; Zheng, Y; Xia, Z; Zhang, S ...
Published in: Nature
June 2026

Sugarcane (Saccharum spp.) is a vital sugar and bioenergy crop with an exceptionally complex polyploid genome (10-12 sets of chromosomes). This complexity resulted from nobilization-a historical breeding process involving interspecific hybridization and repeated backcrossing1. However, the extreme ploidy has long impeded efforts to elucidate the genetic basis of its considerable sucrose-storing capacity. Here we present a fully phased genome assembly of the foundational cultivar POJ2878, achieved using a Pore-C-based assembly algorithm. This assembly resolved 118 chromosomes, revealing extensive subgenome recombination and non-homologous chromosomal rearrangements. Using identity-by-descent and allele-specific expression profiling, we identified breeder-favoured haplotypes, including a SUS2 haplotype with enhanced sucrose content. Resequencing of 981 Saccharum accessions traced POJ2878's pervasive contribution to modern cultivars and identified key domestication and improvement sweeps. Genes under selection include CBL1 for cold tolerance, TIP1 for cell size regulation and TB1 for tillering control. A genome-wide association study tailored for polyploid genomes resolved loci associated with parenchyma cell size and sucrose storage capacity, including the functionally validated sucrose transporter Saccharum hybrid SUT2. These findings clarify the genetic architecture underlying sugarcane's biomass productivity and sugar yield, offering a genomic foundation for accelerating improvement in sugarcane and other polyploid crops critical for global food and bioenergy security.

Duke Scholars

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Published In

Nature

DOI

EISSN

1476-4687

Publication Date

June 2026

Volume

654

Issue

8120

Start / End Page

994 / 1003

Location

England

Related Subject Headings

  • Sucrose
  • Saccharum
  • Quantitative Trait Loci
  • Polyploidy
  • Phenotype
  • Haplotypes
  • Genomics
  • Genome-Wide Association Study
  • Genome, Plant
  • Genes, Plant
 

Citation

APA
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ICMJE
MLA
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Wang, J., Li, X., Wang, Y., Lin, J., Chen, S., Liu, H., … Zhang, X. (2026). Genetic architecture of sugarcane traits in a polyploid genomics framework. Nature, 654(8120), 994–1003. https://doi.org/10.1038/s41586-026-10576-7
Wang, Jungang, Xiaofeng Li, Yibin Wang, Jishan Lin, Shuai Chen, Hongbo Liu, Xiao Chen, et al. “Genetic architecture of sugarcane traits in a polyploid genomics framework.Nature 654, no. 8120 (June 2026): 994–1003. https://doi.org/10.1038/s41586-026-10576-7.
Wang J, Li X, Wang Y, Lin J, Chen S, Liu H, et al. Genetic architecture of sugarcane traits in a polyploid genomics framework. Nature. 2026 Jun;654(8120):994–1003.
Wang, Jungang, et al. “Genetic architecture of sugarcane traits in a polyploid genomics framework.Nature, vol. 654, no. 8120, June 2026, pp. 994–1003. Pubmed, doi:10.1038/s41586-026-10576-7.
Wang J, Li X, Wang Y, Lin J, Chen S, Liu H, Chen X, Chai K, Dong A, Zhao T, Feng C, Wu R, Zhao P, Zheng Y, Xia Z, Zhang S, Liu Y, Qu S, Ye Z, Song Y, Deng Q, Zeng X, Yu G, Kong R, Zhang B, Zhang W, Mao J, Lu X, Jia H, Zhao X, Zhang Q, Cai W, Huo D, Li L, Gong Y, Huang S, Huang Y, Yu Z, Deng Z, Chen B, Zhang Y, Zhang M, Ming R, Zhang X. Genetic architecture of sugarcane traits in a polyploid genomics framework. Nature. 2026 Jun;654(8120):994–1003.
Journal cover image

Published In

Nature

DOI

EISSN

1476-4687

Publication Date

June 2026

Volume

654

Issue

8120

Start / End Page

994 / 1003

Location

England

Related Subject Headings

  • Sucrose
  • Saccharum
  • Quantitative Trait Loci
  • Polyploidy
  • Phenotype
  • Haplotypes
  • Genomics
  • Genome-Wide Association Study
  • Genome, Plant
  • Genes, Plant