4.7 Article

Genome Survey Sequencing and Genetic Background Characterization of Ilex chinensis Sims (Aquifoliaceae) Based on Next-Generation Sequencing

期刊

PLANTS-BASEL
卷 11, 期 23, 页码 -

出版社

MDPI
DOI: 10.3390/plants11233322

关键词

genome survey; next-generation sequencing; flow cytometry; microsatellite; Ilex chinensis Sims

资金

  1. Jiangsu Academy of Forestry Youth Foundation
  2. Jiangsu Agriculture Science and Technology Innovation Fund
  3. Jiangsu Provincial Innovation and Extension Project of Forestry Science and Technology
  4. Jiangsu Provincial Innovation and Extension Project of Agriculture Science and Technology
  5. Independent Research Projects of Jiangsu Academy of Forestry
  6. [JAF-2022-03]
  7. [CX(21)3013]
  8. [LYKJ[2020]02]
  9. [LYKJ[2021]07]
  10. [2021-SJ-008]
  11. [ZZKY202105]

向作者/读者索取更多资源

In this study, the genome features of Ilex chinensis were analyzed using next-generation sequencing technology. The results showed that the I. chinensis genome is complex with high heterozygosity and few repeated sequences. Additionally, a large number of microsatellite motifs were detected, providing basic molecular markers for further research.
Ilex chinensis Sims. is an evergreen arbor species with high ornamental and medicinal value that is widely distributed in China. However, there is a lack of molecular and genomic data for this plant, which severely restricts the development of its relevant research. To obtain the whole reference genome, we first conducted a genome survey of I. chinensis by next-generation sequencing (NGS) to perform de novo whole-genome sequencing. As a result, our estimates using k-mer and flow cytometric analysis suggested the genome size of I. chinensis to be around 618-655 Mb, with the GC content, heterozygous rate, and repeat sequence rate of 37.52%, 1.1%, and 38%, respectively. A total of 334,649 microsatellite motifs were detected from the I. chinensis genome data, which will provide basic molecular markers for germplasm characterization, genetic diversity, and QTL mapping studies for I. chinensis. In summary, the I. chinensis genome is complex with high heterozygosity and few repeated sequences. Overall, this is the first report on the genome features of I. chinensis, and the information may lay a strong groundwork for future whole-genome sequencing and molecular breeding studies of this species.

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