Whole-genome sequence of Sclerotium delphinii, a pathogenic fungus of Dendrobium officinale southern blight.

Genomics

The Key Laboratory of Biotechnology for Medicinal and Edible Plant Resources of Jiangsu Province, School of Life Sciences, Jiangsu Normal University, Xuzhou, Jiangsu Province 221116, China. Electronic address:

Published: September 2024

AI Article Synopsis

  • Dendrobium officinale is a valued medicinal plant affected by southern blight caused by the pathogen Sclerotium delphinii, a highly virulent fungus.
  • Researchers isolated S. delphinii from D. officinale, conducted whole-genome sequencing using the advanced PacBio Sequel II technology, and generated detailed protein sequence annotations.
  • This study is significant as it presents the first complete genome assembly and annotation of S. delphinii, laying the groundwork for future research into its pathogenicity and related genetics.

Article Abstract

Dendrobium officinale is a rare and precious medicinal plant. Southern blight is a destructive disease in the artificial cultivation of D. officinale, and one of its pathogens is Sclerotium delphinii. S. delphinii is a phytopathogenic fungus with a wide host range with extremely strong pathogenicity. In this study, S. delphinii was isolated from D. officinale with southern blight. Subsequently, this specific strain underwent thorough whole-genome sequencing using the PacBio Sequel II platform, which employed single-molecule real-time (SMRT) technology. Comprehensive annotations were obtained through functional annotation of protein sequences using various publicly available databases. The genome of S. delphinii measures 73.66 Mb, with an N90 contig size of 2,707,110 bp, and it contains 18,506 putative predictive genes. This study represents the first report on the genome size assembly and annotation of S. delphinii, making it the initial species within the Sclerotium genus to undergo whole-genome sequencing, which can provide solid data and a theoretical basis for further research on the pathogenesis, omics of S. delphinii.

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Source
http://dx.doi.org/10.1016/j.ygeno.2024.110932DOI Listing

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