Population genetic analysis of variation at five neutral microsatellite loci for Mediterranean mussels () from 18 sites along the eastern Adriatic Sea revealed little or no spatial variation. In contrast, seascape genetics analysis revealed a pronounced locus-specific gradient in allelic and genotypic frequencies across the study region. At a sixth locus, MGE7, the frequencies of two alleles, MGE7 and MGE7, were strongly associated, negatively and positively, respectively, with a single environmental variable - minimum salinity (minSAL). The frequency of the MGE7 homozygous genotype was strongly negatively associated with minSAL, whereas the frequencies of the MGE7 and the MGE7 genotypes were strongly positively correlated with minSAL. Interpretation of these pronounced gradients is confounded by the fact that minSAL and another environmental variable, maximum sea surface temperature (maxSST), are highly correlated ( = -.911) and are therefore not necessarily acting independently. BLAST searches of the MGE7 locus against whole genome shotgun sequence returned an alignment with contig mg10_S01094 (accession UYJE01010330.1) and 7 predicted proteins VDI82194.1 - VDI82200.1. Conserved domain searches revealed a similar structure to the transcriptional regulator Msx2-interacting protein. The BLASTp search also returned significant alignments to Msx2-interacting proteins in , , and . The existence of the MGE7 gradient highlights the role that environmental variation may play in retarding gene flow among wild populations, and also how the success of collection of young mussels (spat) from one site and their transfer to another site (the farm) may be influenced by a single factor such as minSAL or maxSST on a localized scale.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9873513PMC
http://dx.doi.org/10.1002/ece3.9729DOI Listing

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