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High Levels of Genetic Contamination in Remnant Populations of 'Acacia saligna' from a Genetically Divergent Planted Stand

  • Melissa A Millar
  • , Margaret Byrne
  • , Ian K Nuberg
  • , Margaret Sedgley

Research output: Contribution to journalArticlepeer-review

35 Citations (Scopus)

Abstract

It is essential to understand the patterns of pollen dispersal in remnant vegetation occupying highly disturbed landscapes in order to provide sustainable management options and to inform restoration programs. Direct and indirect methods of paternity analysis were used to detect genetic contamination via inter-subspecific pollen dispersal from a planted stand of nonlocal 'Acacia saligna' ssp. 'saligna' (ms) into remnant roadside patches of local 'A. saligna' ssp. 'lindleyi' (ms). Genetic contamination was detected in 25.5% (indirect paternity assignment) to 32% (direct paternity assignment) of ssp. 'lindleyi' progeny and occurred over a distance of 1.6 km. The results support studies that suggest genetic continuity is maintained by high levels of pollen dispersal in temperate entomophilous species. The results also indicate that patchily distributed remnant populations may be exposed to substantial amounts of genetic contamination from large-scale restoration with native taxa in the highly fragmented agricultural landscape of southern Western Australia. Management practices to reduce the risk of genetic contamination are considered.
Original languageEnglish
Pages (from-to)260-267
JournalRestoration Ecology
Volume20
Issue number2
DOIs
Publication statusPublished - 2012

Keywords

  • Population, Ecological and Evolutionary Genetics
  • Environmental Rehabilitation (excl Bioremediation)

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