Javascript must be enabled to continue!
An evolutionary perspective on contemporary genetic load in threatened species to inform future conservation efforts
View through CrossRef
In theory, genomic erosion can be reduced in fragile “recipient”
populations by translocating individuals from genetically diverse
“donor” populations. However, recent simulation studies have argued
that such translocations can, in principle, serve as a conduit for new
deleterious mutations to enter recipient populations. A reduction in
evolutionary fitness is associated with a higher load of deleterious
mutations and thus, a better understanding of evolutionary processes
driving the empirical distribution of deleterious mutations is crucial.
Here, we show that genetic load is evolutionarily dynamic in nature and
that demographic history greatly influences the distribution of
deleterious mutations over time. Our analyses, based on both
demographically explicit simulations as well as whole genome sequences
of potential donor-recipient pairs of Montezuma Quail (Cyrtonyx
montezumae) populations, indicate that all populations tend to lose
deleterious mutations during bottlenecks, but that genetic purging is
pronounced in smaller populations with stronger bottlenecks. Despite
carrying relatively fewer deleterious mutations, we demonstrate how
small, isolated populations are more likely to suffer inbreeding
depression as deleterious mutations that escape purging are homogenized
due to drift, inbreeding, and ineffective purifying selection. We apply
a population genomics framework to showcase how the phylogeography and
historical demography of a given species can enlighten genetic rescue
efforts. Our data suggest that small, inbred populations should benefit
the most when assisted gene flow stems from genetically diverse donor
populations that have the lowest proportion of deleterious mutations.
Title: An evolutionary perspective on contemporary genetic load in threatened species to inform future conservation efforts
Description:
In theory, genomic erosion can be reduced in fragile “recipient”
populations by translocating individuals from genetically diverse
“donor” populations.
However, recent simulation studies have argued
that such translocations can, in principle, serve as a conduit for new
deleterious mutations to enter recipient populations.
A reduction in
evolutionary fitness is associated with a higher load of deleterious
mutations and thus, a better understanding of evolutionary processes
driving the empirical distribution of deleterious mutations is crucial.
Here, we show that genetic load is evolutionarily dynamic in nature and
that demographic history greatly influences the distribution of
deleterious mutations over time.
Our analyses, based on both
demographically explicit simulations as well as whole genome sequences
of potential donor-recipient pairs of Montezuma Quail (Cyrtonyx
montezumae) populations, indicate that all populations tend to lose
deleterious mutations during bottlenecks, but that genetic purging is
pronounced in smaller populations with stronger bottlenecks.
Despite
carrying relatively fewer deleterious mutations, we demonstrate how
small, isolated populations are more likely to suffer inbreeding
depression as deleterious mutations that escape purging are homogenized
due to drift, inbreeding, and ineffective purifying selection.
We apply
a population genomics framework to showcase how the phylogeography and
historical demography of a given species can enlighten genetic rescue
efforts.
Our data suggest that small, inbred populations should benefit
the most when assisted gene flow stems from genetically diverse donor
populations that have the lowest proportion of deleterious mutations.
Related Results
The utility of transcriptomics in the conservation of sensitive and economically important species
The utility of transcriptomics in the conservation of sensitive and economically important species
The connection between the central dogma of biology [DNA --(Transcription)---› RNA –(Translation)--› Protein] and the 'omics' resources obtained from each molecule are now being ex...
Aligning functional network constraint to evolutionary outcomes
Aligning functional network constraint to evolutionary outcomes
Summary
It is likely that there are constraints on how evolution can progress, and well-known evolutionary phenomena such as convergent evolution, rapid adaptation,...
Spatial Pattern Analysis and Conservation Assessment of Apiaceae in Mongolia
Spatial Pattern Analysis and Conservation Assessment of Apiaceae in Mongolia
The family Apiaceae, distributed throughout the Northern Hemisphere, is the largest family of angiosperms. However, little is known about the conservation status, diversity, and di...
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 ...
The Two Faces of Introgression in Conservation Biology
The Two Faces of Introgression in Conservation Biology
ABSTRACT
Introgression is an important biological process that has a major impact on the evolutionary potential of species. Admixed offspring from parental indivi...
Population Genomics of New Zealand Kaimoana Species at Various Spatial Scales
Population Genomics of New Zealand Kaimoana Species at Various Spatial Scales
<p dir="ltr"><b>Understanding the genetic connectivity and genetic structure of valuable New Zealand kaimoana (seafood) species, such as the green-lipped mussel (Perna ...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract
A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
Amphibians and Reptiles of Ethiopia—Biogeography, Conservation Priority Areas, and Potentials for “One Plan Approach” Conservation Measures
Amphibians and Reptiles of Ethiopia—Biogeography, Conservation Priority Areas, and Potentials for “One Plan Approach” Conservation Measures
ABSTRACT
Ethiopia, as one of 36 global hotspots of biodiversity, provides diverse habitats for a variety of species, but little research about the herpetofauna of...

