Demographic and random amplified polymorphic DNA analyses reveal high levels of genetic diversity in a clonal violet

被引:64
作者
Auge, H
Neuffer, B
Erlinghagen, F
Grupe, R
Brandl, R
机构
[1] UFZ Helmholtz Ctr Environm Res, Dept Community Ecol, D-06120 Halle, Germany
[2] Univ Osnabruck, D-49076 Osnabruck, Germany
关键词
clonal growth; genetic variation; mating system; seed dispersal; seedling recruitment; Viola riviniana;
D O I
10.1046/j.0962-1083.2001.01311.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We performed demographic and molecular investigations on woodland populations of the clonal herb Viola riviniana in central Germany. We investigated the pattern of seedling recruitment, the amount of genotypic (clonal) variation and the partitioning of genetic variation among and within populations. Our demographic study was carried out in six violet populations of different ages and habitat conditions. Ii revealed that repeated seedling recruitment takes place in all of these populations, and that clonal propagation is accompanied by high ramet mortality. Our molecular investigations were performed on a subset of three of these six violet populations. Random amplified polymorphic DNA analyses using six primers yielded 45 scorable bands that were used to identify multilocus genotypes, i.e. putative clones. Consistent with our demographic results and independent of population age, we found a large genotypic diversity with a mean proportion of distinguishable genotypes of 0.93 and a mean Simpson's diversity index of 0.99. Using AMOVA we found a strong genetic differentiation among these violet populations with a Phi (ST), value of 0.41. We suggest that a high selfing rate, limited gene flow due to short seed dispersal distances and drift due to founder effects are responsible for this pattern. Although Viola riviniana is a clonal plant, traits associated with sexual reproduction rather than clonality per se are moulding the pattern of genetic variation in this species.
引用
收藏
页码:1811 / 1819
页数:9
相关论文
共 45 条
[31]  
MEUSEL H, 1974, PHYTON-ANN REI BOT A, V16, P127
[32]   Spread of violets in polluted pine forests: morphological and molecular evidence for the ecological importance of interspecific hybridization [J].
Neuffer, B ;
Auge, H ;
Mesch, H ;
Amarell, U ;
Brandl, R .
MOLECULAR ECOLOGY, 1999, 8 (03) :365-377
[33]   RAPD analyses of hybridization events in Cardamine (Brassicaceae) [J].
Neuffer, B ;
Jahncke, P .
FOLIA GEOBOTANICA & PHYTOTAXONOMICA, 1997, 32 (01) :57-67
[34]  
Nybom Hilde, 2000, Perspectives in Plant Ecology Evolution and Systematics, V3, P93, DOI 10.1078/1433-8319-00006
[35]   An evaluation of RAPD fragment reproducibility and nature [J].
Perez, T ;
Albornoz, J ;
Dominguez, A .
MOLECULAR ECOLOGY, 1998, 7 (10) :1347-1357
[36]   CLONAL VARIATION IN POPULATIONS OF RANUNCULUS-REPENS [J].
SOANE, ID ;
WATKINSON, AR .
NEW PHYTOLOGIST, 1979, 82 (02) :557-573
[37]   STUDIES ON THE POPULATION BIOLOGY OF THE GENUS VIOLA .6. THE DEMOGRAPHY OF VIOLA-FIMBRIATULA AND VIOLA-LANCEOLATA [J].
SOLBRIG, OT ;
CURTIS, WF ;
KINCAID, DT ;
NEWELL, SJ .
JOURNAL OF ECOLOGY, 1988, 76 (02) :301-319
[38]   Spatial genetic structure and clonal diversity of Anemone nemorosa in late successional deciduous woodlands of Central Europe [J].
Stehlik, I ;
Holderegger, R .
JOURNAL OF ECOLOGY, 2000, 88 (03) :424-435
[39]   Long-term persistence in a changing climate: DNA analysis suggests very old ages of clones of alpine Carex curvula [J].
Steinger, T ;
Korner, C ;
Schmid, B .
OECOLOGIA, 1996, 105 (01) :94-99
[40]   Assessing population genetic structure and variability with RAPD data: Application to Vaccinium macrocarpon (American Cranberry) [J].
Stewart, CN ;
Excoffier, L .
JOURNAL OF EVOLUTIONARY BIOLOGY, 1996, 9 (02) :153-171