Javascript must be enabled to continue!
Rise and Persistence of Animal Polyploidy: Evolutionary Constraints and Potential
View through CrossRef
The past decade has witnessed a tremendous increase in interest in polyploidy, which may partly be related to the development of new powerful genetic and genomic tools. These have provided numerous insights into mainly genetic and genomic consequences of polyploidy, dramatically improving our understanding of the dynamics of the polyploidization process and its importance as a mechanism in animal evolution. In contrast, several other aspects of polyploidization, such as physiology, ecology and development, have received considerably less attention. Our aim is not to make an exhaustive review of current knowledge about animal polyploidy, but rather to thoroughly elaborate on some very fundamental questions which still remain open or even neglected. In particular, we show that properties of new polyploid lineages largely depend upon the proximate way in which they arose, but the evolutionary pathways to polyploidy are often unresolved. To help researchers orientate amongst the number of pathways to polyploidy, we provide an extensive review of particular scenarios proposed in distinct animal taxa. We discuss how polyploidy relates to hybridization, particularly with respect to asexuality, and elaborate on whether clonal triploids may help to overcome the constraints of aneuploidy, thereby serving as a triploid bridge towards the establishment of new polyploid species. We further show that in most animal asexual complexes clonal lineages may become established only under one ploidy level (usually either di- or triploidy), and that it is rather rare to see the coexistence of successful clones of different ploidies. We discuss why the rate of polyploidization is higher in some taxa than in others, and what tools we have to evaluate the rate of polyploidization. Finally, we review some of the immediate physiological and developmental effects of polyploidy which are related to the genome size/cell size relation and show how studies of polyploidy may enhance the study of macroecology and developmental biology. See also the sister article focusing on plants by Weiss-Schneeweiss et al. in this themed issue.
Title: Rise and Persistence of Animal Polyploidy: Evolutionary Constraints and Potential
Description:
The past decade has witnessed a tremendous increase in interest in polyploidy, which may partly be related to the development of new powerful genetic and genomic tools.
These have provided numerous insights into mainly genetic and genomic consequences of polyploidy, dramatically improving our understanding of the dynamics of the polyploidization process and its importance as a mechanism in animal evolution.
In contrast, several other aspects of polyploidization, such as physiology, ecology and development, have received considerably less attention.
Our aim is not to make an exhaustive review of current knowledge about animal polyploidy, but rather to thoroughly elaborate on some very fundamental questions which still remain open or even neglected.
In particular, we show that properties of new polyploid lineages largely depend upon the proximate way in which they arose, but the evolutionary pathways to polyploidy are often unresolved.
To help researchers orientate amongst the number of pathways to polyploidy, we provide an extensive review of particular scenarios proposed in distinct animal taxa.
We discuss how polyploidy relates to hybridization, particularly with respect to asexuality, and elaborate on whether clonal triploids may help to overcome the constraints of aneuploidy, thereby serving as a triploid bridge towards the establishment of new polyploid species.
We further show that in most animal asexual complexes clonal lineages may become established only under one ploidy level (usually either di- or triploidy), and that it is rather rare to see the coexistence of successful clones of different ploidies.
We discuss why the rate of polyploidization is higher in some taxa than in others, and what tools we have to evaluate the rate of polyploidization.
Finally, we review some of the immediate physiological and developmental effects of polyploidy which are related to the genome size/cell size relation and show how studies of polyploidy may enhance the study of macroecology and developmental biology.
See also the sister article focusing on plants by Weiss-Schneeweiss et al.
in this themed issue.
Related Results
Polyploidy and its implications in plants breeding – A review
Polyploidy and its implications in plants breeding – A review
Polyploidy is a prominent force of shaping the evolution of in most of ferns and flowering plants. Polyploidy has tremendous contribution in plants improvement program. It is the p...
Importance of polyploidization for diversification of hyperdiverse
Euphorbia
subgen.
Esula
: polyploidy is positively correlated with increasing latitude, but negatively with
Importance of polyploidization for diversification of hyperdiverse
Euphorbia
subgen.
Esula
: polyploidy is positively correlated with increasing latitude, but negatively with
Abstract
Background and Aims
Polyploidy is one of the most important evolutionary pathways in flowering plants, significa...
Evolution and the cell
Evolution and the cell
Genotype to phenotype, and back again
Evolution is intimately linked to biology at the cellular scale- evolutionary processes act on the very genetic material that is carried and ...
Synthetic polyploidy in spice crops: A review
Synthetic polyploidy in spice crops: A review
AbstractSpice crops comprise diverse, economically valuable crops with numerous applications ranging from culinary to pharmaceutical industries. Spices are an integral part of cuis...
Evolutionary Consequences, Constraints and Potential of Polyploidy in Plants
Evolutionary Consequences, Constraints and Potential of Polyploidy in Plants
Polyploidy, the possession of more than 2 complete genomes, is a major force in plant evolution known to affect the genetic and genomic constitution and the phenotype of an organis...
Polyploidization in Orchids: From Cellular Changes to Breeding Applications
Polyploidization in Orchids: From Cellular Changes to Breeding Applications
Polyploidy occurs naturally in plants through cell division errors or can artificially be induced by antimitotic agents and has ecological effects on species adaptation, evolution,...
Polyploidy Phenomenon as a Cause of Early Miscarriages in Abortion Materials
Polyploidy Phenomenon as a Cause of Early Miscarriages in Abortion Materials
Abstract
Objectives
Chromosomal abnormalities are an important cause of especially early miscarriages. The aim of this st...
Gene-tree reconciliation with MUL-trees to resolve polyploidy events
Gene-tree reconciliation with MUL-trees to resolve polyploidy events
Abstract
Polyploidy can have a huge impact on the evolution of species, and it is a common occurrence, especially in plants. The two types of polyploids - autopolyp...

