Scientific Reports (Jun 2023)

The chromosome-scale genome assembly of cluster bean provides molecular insight into edible gum (galactomannan) biosynthesis family genes

  • Kishor Gaikwad,
  • Goriparthi Ramakrishna,
  • Harsha Srivastava,
  • Swati Saxena,
  • Tanvi Kaila,
  • Anshika Tyagi,
  • Priya Sharma,
  • Sandhya Sharma,
  • R. Sharma,
  • H. R. Mahla,
  • Kuldeep Kumar,
  • Amitha Mithra SV,
  • Amolkumar U. Solanke,
  • Pritam Kalia,
  • A. R. Rao,
  • Anil Rai,
  • T. R. Sharma,
  • N. K. Singh

DOI
https://doi.org/10.1038/s41598-023-33762-3
Journal volume & issue
Vol. 13, no. 1
pp. 1 – 14

Abstract

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Abstract Cluster bean (Cyamopsis tetragonoloba (L.) Taub 2n = 14, is commonly known as Guar. Apart from being a vegetable crop, it is an abundant source of a natural hetero-polysaccharide called guar gum or galactomannan. Here, we are reporting a chromosome-scale reference genome assembly of a popular cluster bean cultivar RGC-936, by combining sequencing data from Illumina, 10X Genomics, Oxford Nanopore technologies. An initial assembly of 1580 scaffolds with an N50 value of 7.12 Mb was generated and these scaffolds were anchored to a high density SNP linkage map. Finally, a genome assembly of 550.31 Mb (94% of the estimated genome size of ~ 580 Mb (through flow cytometry) with 58 scaffolds was obtained, including 7 super scaffolds with a very high N50 value of 78.27 Mb. Phylogenetic analysis using single copy orthologs among 12 angiosperms showed that cluster bean shared a common ancestor with other legumes 80.6 MYA. No evidence of recent whole genome duplication event in cluster bean was found in our analysis. Further comparative transcriptomics analyses revealed pod-specific up-regulation of genes encoding enzymes involved in galactomannan biosynthesis. The high-quality chromosome-scale cluster bean genome assembly will facilitate understanding of the molecular basis of galactomannan biosynthesis and aid in genomics-assisted improvement of cluster bean.