Skip to main navigation Skip to search Skip to main content

Genetic diversity and population structure of the Chilean native, Tillandsia landbeckii (Bromeliaceae), from the Atacama Desert

  • Elizabeth Bastías
  • , Edith Choque-Ayaviri
  • , Joel Flores
  • , Glenda Fuentes-Arce
  • , Patricio López-Sepúlveda
  • , Wilson Huanca-Mamani
  • Universidad de Tarapacá
  • Universidad Nacional Agraria La Molina
  • Universidad de Concepción

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Tillandsia landbeckii Phil. is a typical plant of the Atacama Desert in the north of Chile. There is no genetic data available at the population level for this species, and this information is critical for developing and implementing effective conservation measures. In this study, we investigated for the first time the genetic diversity and population structure in 2 natural populations of T. landbeckii using AFLP markers. Seven primer combinations produced 405 bands and of them, 188 (46.42%) were polymorphic. The Pampa Dos Cruces population (Pp = 88.30%, He = 0.327, and I = 0.483) showed a higher genetic diversity level than Pampa Camarones population (Pp = 71.28%, He = 0.253, and I = 0.380). Analysis of molecular variance (Amova) revealed that 25.12% of the total genetic diversity resided among populations, while 74.88% within populations. A moderate-high genetic differentiation coefficient (Fst = 0.251) and a moderate population gene flow (Nm = 1.490) were also observed. Principal coordinates analysis (PCoA), Neighbor-net and STRUCTURE analysis supported the grouping of the sampled populations into 2 moderate genetic clusters. This first study provides data that will allow assist and support conservation decisions taken for this species.

Original languageEnglish
Article number3090
JournalRevista Mexicana de Biodiversidad
Volume91
DOIs
StatePublished - 1 Jul 2020

Keywords

  • AFLP
  • Molecular markers
  • Tillandsia landbeckii

Fingerprint

Dive into the research topics of 'Genetic diversity and population structure of the Chilean native, Tillandsia landbeckii (Bromeliaceae), from the Atacama Desert'. Together they form a unique fingerprint.

Cite this