Plastid DNA sequence diversity in a worldwide set of grapevine cultivars (Vitis vinifera L. subsp. vinifera)

  • Tengiz Beridze
  • , Ia Pipia
  • , James Beck
  • , Shih Chung Hsu
  • , Mariam Gamkrelidze
  • , Mari Gogniashvili
  • , Vazha Tabidze
  • , Patric This
  • , Roberto Bacilieri
  • , Vazha Gotsiridze
  • , Malkhaz Glonti
  • , Barbara Schaal

Research output: Contribution to journalArticlepeer-review

24 Scopus citations

Abstract

DNA sequence diversity was investigated at two plastid regions (the trnH-psbA intergenic spacer and the rpl16 intron) in a geographically diverse group of 113 cultivated grape samples. This group included 40 samples from the Republic of Georgia, home to over 500 grape cultivars and the earliest archaeological evidence of grape domestication. The greater Caucasus region in which Georgia lies is widely believed to be the area in which grape domestication began, and the study of genetic diversity in this region is viewed as key to understanding grape domestication in general. Four plastid haplotypes are evident in the 113 samples, and are designated by their character-states at each of the 3 polymorphic positions: (AAA) - 23 samples, (ATT) - 29 samples, (GTA) - 26 samples, and (ATA) - 35 samples. The AAA haplotype was only observed in Georgian samples. The observation that the Georgian cultivars exhibited both unique plastid DNA variation (the AAA haplotype) and all other observed plastid haplotypes is consistent with previous studies that have observed both unique and high levels of genetic variation in wild grape (V. vinifera subsp. sylvestris) in the greater Caucasus region.

Original languageEnglish
Pages (from-to)98-103
Number of pages6
JournalBulletin of the Georgian National Academy of Sciences
Volume5
Issue number1
StatePublished - 2011

Keywords

  • Grape DNA
  • PCR amplification
  • Rpl16 intron
  • Sequencing
  • trnH-psbA intergenic spacer

Fingerprint

Dive into the research topics of 'Plastid DNA sequence diversity in a worldwide set of grapevine cultivars (Vitis vinifera L. subsp. vinifera)'. Together they form a unique fingerprint.

Cite this