In Northern Europe, dandelion populations consist solely of triploid or higher polyploid apomicts. Without a regular sexual cycle or lateral gene transmission, a clonal structure is expected for Taraxacum apomicts, although this was not found by compatibility analysis. In this study, we investigate whether this observation could be suported by performing independent tests based on data from hypervariable microsatellite markers as well as more conservative data based on allozymes and matrilinear cpDNA markers. In addition, population genetic methods were used to test departure from panmictic expectations, which is expected for clonal populations. Results indicated that many data sets, again, did not agree with expectations from clonal evolut...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...
In Northern Europe, dandelion populations consist solely of triploid or higher polyploid apomicts. W...
Dandelions (genus Taraxacum) comprise a group of sexual diploids and apomictic polyploids with a com...
Dandelions (genus Taraxacum) comprise a group of sexual diploids and apomictic polyploids with a com...
<div><p>Dandelions (genus <em>Taraxacum</em>) comprise a group of sexual diploids and apomictic poly...
Abstract Weedy dandelions have a worldwide distribution and thrive in urban environments despite a l...
Microsatellite markers were developed in Taraxacum officinale to study gene flow between sexual and ...
Taraxacum officinale L. (dandelion) is a vigorous weed in Europe with diploid sexual populations in ...
Taraxacum officinale L. (dandelion) is a vigorous weed in Europe with diploid sexual populations in ...
Taraxacum officinale L. (dandelion) is a vigorous weed in Europe with diploid sexual populations in ...
Microsatellite markers were developed in Taraxacum officinale to study gene flow between sexual and ...
In asexual organisms, the clone constitutes a level above the individual. Most dandelions (Taraxacum...
Taraxacum officinale L. (dandelion) is a vigorous weed in Europe with diploid sexual populations in ...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...
In Northern Europe, dandelion populations consist solely of triploid or higher polyploid apomicts. W...
Dandelions (genus Taraxacum) comprise a group of sexual diploids and apomictic polyploids with a com...
Dandelions (genus Taraxacum) comprise a group of sexual diploids and apomictic polyploids with a com...
<div><p>Dandelions (genus <em>Taraxacum</em>) comprise a group of sexual diploids and apomictic poly...
Abstract Weedy dandelions have a worldwide distribution and thrive in urban environments despite a l...
Microsatellite markers were developed in Taraxacum officinale to study gene flow between sexual and ...
Taraxacum officinale L. (dandelion) is a vigorous weed in Europe with diploid sexual populations in ...
Taraxacum officinale L. (dandelion) is a vigorous weed in Europe with diploid sexual populations in ...
Taraxacum officinale L. (dandelion) is a vigorous weed in Europe with diploid sexual populations in ...
Microsatellite markers were developed in Taraxacum officinale to study gene flow between sexual and ...
In asexual organisms, the clone constitutes a level above the individual. Most dandelions (Taraxacum...
Taraxacum officinale L. (dandelion) is a vigorous weed in Europe with diploid sexual populations in ...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...
In this study, we mapped the diplosporous chromosomal region in Taraxacum officinale, by using ampli...