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Genome Assembly of , a Coastal Protection Species in Tropical Coral Islands. | LitMetric

Genome Assembly of , a Coastal Protection Species in Tropical Coral Islands.

Int J Mol Sci

Innovation Academy of South China Sea Ecology and Environmental Engineering, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China.

Published: November 2023

AI Article Synopsis

  • A study on trees or shrubs from the Boraginaceae family in China revealed their strong resistance and adaptation to coral island habitats, yet lacked prior genome information.
  • The researchers assembled a comprehensive genome of 475.3 Mb, with a high percentage (99.22%) organized into 16 chromosomes, and identified over 26,000 genes.
  • Phylogenetic analysis showed a close genetic relationship with another species, with divergence occurring approximately 77 million years ago, highlighting gene families linked to disease defense that may explain their adaptation strategies.

Article Abstract

trees or shrubs, belonging to the Boraginaceae family, have strong resistance and have adapted to their habitat on a tropical coral island in China, but the lack of genome information regarding its genetic background is unclear. In this study, the genome was assembled using both short/long whole genome sequencing reads and Hi-C reads. The assembled genome was 475.3 Mb, with 468.7 Mb (99.22%) of the sequences assembled into 16 chromosomes. Repeat sequences accounted for 54.41% of the assembled genome. A total of 26,615 genes were predicted, and 25,730 genes were functionally annotated using different annotation databases. Based on its genome and the other 17 species, phylogenetic analysis using 336 single-copy genes obtained from ortholog analysis showed that was a sister to , and the divergence time was estimated to be 77 MYA between the two species. Gene family evolution analysis indicated that the significantly expanded gene families were functionally related to chemical defenses against diseases. These results can provide a reference to a deeper understanding of the genetic background of and can be helpful in exploring its adaptation mechanism on tropical coral islands in the future.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10671804PMC
http://dx.doi.org/10.3390/ijms242216273DOI Listing

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