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Molecular Ecology · 2024 · Vol. 33 · Issue 24 · Wiley
Chromosomal inversions have been identified in many natural populations and can be responsible for novel traits and rapid adaptation. In zebra finch, a large region on the Z chromosome has been subject to multiple inversions, which have pleiotropic effects on multiple traits but especially on sperm phenotypes, such as midpiece and flagellum length. To understand the effect, the Z inversion has on these traits, we examined test...
Journal of Fish Biology · 2021 · Vol. 99 · Issue 2 · Wiley
In externally fertilizing species, the gametes of both males and females are exposed to the influences of the environment into which they are released. Sperm are sensitive to abiotic factors such as salinity, but they are also affected by biotic factors such as sperm competition. In this study, the authors compared the performance of sperm of three goby species, the painted goby, Pomatoschistus pictus , the two‐spotted goby, P...
Molecular Ecology · 2017 · Vol. 26 · Issue 15 · Wiley
Gene expression changes potentially play an important role in adaptive evolution under human‐induced selection pressures, but this has been challenging to demonstrate in natural populations. Fishing exhibits strong selection pressure against large body size, thus potentially inducing evolutionary changes in life history and other traits that may be slowly reversible once fishing ceases. However, there is a lack of convincing e...
Molecular Ecology · 2015 · Vol. 24 · Issue 1 · Wiley
A common challenge in phylogenetic reconstruction is to find enough suitable genomic markers to reliably trace splitting events with short internodes. Here, we present phylogenetic analyses based on genomewide single‐nucleotide polymorphisms ( SNP s) of an enigmatic avian radiation, the subspecies complex of Afrocanarian blue tits ( Cyanistes teneriffae ). The two sister species, the Eurasian blue tit ( Cyanistes caeruleus ) a...
Molecular Ecology · 2014 · Vol. 23 · Issue 13 · Wiley
Phenotypic plasticity is predicted to facilitate individual survival and/or evolve in response to novel environments. Plasticity that facilitates survival should both permit colonization and act as a buffer against further evolution, with contemporary and derived forms predicted to be similarly plastic for a suite of traits. On the other hand, given the importance of plasticity in maintaining internal homeostasis, derived popu...
Molecular Ecology · 2012 · Vol. 21 · Issue 23 · Wiley
The genetic theory of morphological evolution postulates that form evolves largely by changing the expression proteins that are functionally conserved. It follows that understanding the function of proteins during different phases of development as well as the mechanisms by which the functions are modified is a prerequisite for understanding evolutionary change. Male pied flycatchers exhibit marked phenotypic variation in thei...