Genetic Variation Within and Among Populations of a Dominant Desert Tree Haloxylon ammodendron (Amaranthaceae) in China
Open Access
- 26 May 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in Annals of Botany
- Vol. 96 (2) , 245-252
- https://doi.org/10.1093/aob/mci171
Abstract
• Background and Aims China is one of the countries most severely affected by desertification. Haloxylon ammodendron (Amaranthaceae) is an ecologically important component of the desert ecosystem and is one of the main tree species used for restoration, yet we know little about its genetic structure. • Methods Genetic variation within and between nine populations of H. ammodendron from two regions of China was investigated using ISSR (inter-simple sequence repeat) markers. • Key Results Eight primers used in this study amplified 219 reproducible bands of which 184 (84 %) were polymorphic. Analysis of molecular variance (AMOVA) revealed high genetic variation within populations (97·63 %) and low genetic differentiation between regions (0·62 %) and among populations (1·75 %). • Conclusions It is suggested that the present genetic structure could have arisen by high levels of gene flow. The gene flow among populations observed here is probably mainly attributable to pollen movement. The genetic structure also has important implications in ecological restoration practice.Keywords
This publication has 29 references indexed in Scilit:
- How much effort is required to isolate nuclear microsatellites from plants?Molecular Ecology, 2003
- Population genetic structure and the conservation of isolated populations of Acacia raddiana in the Negev DesertBiological Conservation, 2002
- Estimation of gene flow in the tropical‐rainforest tree Neobalanocarpus heimii (Dipterocarpaceae), inferred from paternity analysisMolecular Ecology, 2000
- Effects of sodium chloride on seed germination and growth of two Chinese desert shrubs, Haloxylon ammodendron and H. persicum (Chenopodiaceae)Australian Journal of Botany, 2000
- Reproductive biology and genetic diversity of a cryptoviviparous mangrove Aegiceras corniculatum (Myrsinaceae) using allozyme and intersimple sequence repeat (ISSR) analysisMolecular Ecology, 1999
- High levels of gene flow in bur oak revealed by paternity analysis using microsatellitesJournal of Heredity, 1998
- Effects of life history traits on genetic diversity in plant speciesPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1996
- Assessing population genetic structure and variability with RAPD data: Application to Vaccinium macrocarpon (American Cranberry)Journal of Evolutionary Biology, 1996
- Factors influencing levels of genetic diversity in woody plant speciesNew Forests, 1992
- Effective population size, genetic variation, and their use in population managementPublished by Cambridge University Press (CUP) ,1987