4.7 Article

Genomic Resource Development for Hydrangea (Hydrangea macrophylla (Thunb.) Ser.)-A Transcriptome Assembly and a High-Density Genetic Linkage Map

期刊

HORTICULTURAE
卷 7, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/horticulturae7020025

关键词

Hydrangea macrophylla; SSR; SNP; linkage map

资金

  1. U.S. Department of Agriculture (USDA) Floriculture and Nursery Research Initiative
  2. Agricultural Research Service including ARS [6066-21310-005-00D]
  3. USDA Agricultural Research Service, ARS project [0500-00093-001-00-D]

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Hydrangea, an important ornamental crop cultivated for over 300 years, has been limited in genetic studies due to lack of genetic resources. However, a recent transcriptomic study and large-scale marker development have greatly expanded the genetic resources available for hydrangea, including high-density genetic linkage maps.
Hydrangea (Hydrangea macrophylla) is an important ornamental crop that has been cultivated for more than 300 years. Despite the economic importance, genetic studies for hydrangea have been limited by the lack of genetic resources. Genetic linkage maps and subsequent trait mapping are essential tools to identify and make markers available for marker-assisted breeding. A transcriptomic study was performed on two important cultivars, Veitchii and Endless Summer, to discover simple sequence repeat (SSR) markers and an F-1 population based on the cross 'Veitchii' x 'Endless Summer' was established for genetic linkage map construction. Genotyping by sequencing (GBS) was performed on the mapping population along with SSR genotyping. From an analysis of 42,682 putative transcripts, 8780 SSRs were identified and 1535 were validated in the mapping parents. A total of 267 polymorphic SSRs were selected for linkage map construction. The GBS yielded 3923 high quality single nucleotide polymorphisms (SNPs) in the mapping population, resulting in a total of 4190 markers that were used to generate maps for each parent and a consensus map. The consensus linkage map contained 1767 positioned markers (146 SSRs and 1621 SNPs), spanned 1383.4 centiMorgans (cM), and was comprised of 18 linkage groups, with an average mapping interval of 0.8 cM. The transcriptome information and large-scale marker development in this study greatly expanded the genetic resources that are available for hydrangea. The high-density genetic linkage maps presented here will serve as an important foundation for quantitative trait loci mapping, map-based gene cloning, and marker-assisted selection of H. macrophylla.

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