4.6 Article

Toward the elucidation of cytoplasmic diversity in North American grape breeding programs

期刊

MOLECULAR BREEDING
卷 36, 期 8, 页码 -

出版社

SPRINGER
DOI: 10.1007/s11032-016-0538-z

关键词

Plastid genome; Mitochondria genome; Cytoplasmic differentiation; Cytoplasmic lineage; Organelle genes; Vitis; Grapevine

资金

  1. U.S. Department of Agriculture, National Institute of Food and Agriculture, Specialty Crop Research Initiative [2011-51181-30635]
  2. National Grape and Wine Initiative
  3. Office Of The Director
  4. Office of Integrative Activities [1355423] Funding Source: National Science Foundation

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Plants have an intriguing tripartite genetic system: Nuclear genome x Mitochondria x Plastids and their interactions may impact germplasm breeding. In grapevine, the study of cytoplasmic genomes has been limited, and their role with respect to grapevine germplasm diversity has yet to be elucidated. In the present study, the results of an analysis of the cytoplasmic diversity among 6073 individuals (comprising cultivars, interspecific hybrids and segregating progenies) are presented. Genotyping by sequencing (GBS) was used to elucidate plastid and mitochondrial DNA sequences, and results were analyzed using multivariate techniques. Single nucleotide polymorphism (SNP) effects were annotated in reference to plastid and mitochondrial genome sequences. The cytoplasmic diversity identified was structured according to synthetic domestication groups (wine and raisin/table gr.ape types) and interspecific-hybridization-driven groups with introgression from North American Vitis species, identifying five cytoplasmic groups and four major clusters. Fifty-two SNP markers were used to describe the diversity of the germplasm. Ten organelle genes showed distinct SNP annotations and effect predictions, of which six were chloroplast-derived and three were mitochondrial genes, in addition to one mitochondrial SNP affecting a nonannotated open reading frame. The results suggest that the application of GBS will aid in the study of cytoplasmic genomes in grapevine, which will enable further studies on the role of cytoplasmic genomes in grapevine germplasm, and then allow the exploitation of these sources of diversity in breeding.

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