Published September 8, 2016 | Version v1

Data from: Seascape genomics provides evidence for thermal adaptation and current-mediated population structure in American lobster (Homarus americanus)

  • 1. Université Laval
  • 2. University of New Brunswick
  • 3. University of Prince Edward Island

Description

Investigating how environmental features shape the genetic structure of populations is crucial for understanding how they are potentially adapted to their habitats, as well as for sound management. In this study, we assessed the relative importance of spatial distribution, ocean currents and sea surface temperature (SST) on patterns of putatively neutral and adaptive genetic variation among American lobster from 19 locations using population differentiation (PD) approaches combined with environmental association (EA) analyses. First, PD approaches (using bayescan, arlequin and outflank) found 28 outlier SNPs putatively under divergent selection and 9770 neutral SNPs in common. Redundancy analysis revealed that spatial distribution, ocean current-mediated larval connectivity and SST explained 31.7% of the neutral genetic differentiation, with ocean currents driving the majority of this relationship (21.0%). After removing the influence of spatial distribution, no SST were significant for putatively neutral genetic variation whereas minimum annual SST still had a significant impact and explained 8.1% of the putatively adaptive genetic variation. Second, EA analyses (using Pearson correlation tests, bayescenv and lfmm) jointly identified seven SNPs as candidates for thermal adaptation. Covariation at these SNPs was assessed with a spatial multivariate analysis that highlighted a significant temperature association, after accounting for the influence of spatial distribution. Among the 505 candidate SNPs detected by at least one of the three approaches, we discovered three polymorphisms located in genes previously shown to play a role in thermal adaptation. Our results have implications for the management of the American lobster and provide a foundation on which to predict how this species will cope with climate change.

Notes

Files

aem-19pop.txt

Files (161.4 MB)

Name Size Download all
md5:8c00454b360784f9ac6a5fd5a9afcba2
112.2 MB Download
md5:cc7b6fce75ff2e5a0b823c64ce2d3497
15.9 kB Download
md5:32097df8f007d125d0aadea830a0f24a
790.2 kB Download
md5:8161f579b12b3b36eaef47347e4e29da
5.6 MB Download
md5:b21ab9902d454ce389452fd7be8596a9
1.1 kB Preview Download
md5:b241eca11adecac51f5368446c0784e5
5.9 kB Preview Download
md5:7dc1cbd1a49f6d40c832b3b522a5d1ba
30.8 MB Download
md5:2845dd3737c2c274fcdacaa4187138bb
4.6 MB Download
md5:f3893d2bc1913f55a9d9bde924fdbce7
872 Bytes Preview Download
md5:e5f2996fe1bca96074cd7c05a3e7797d
7.4 MB Preview Download
md5:bc6de6f41556f5d44f7223f1f3513e18
452 Bytes Preview Download
md5:85ac2f25b4ee94941bf07da77b649b52
12.9 kB Download
md5:b044ba540bed08d9c335e52f6a7106e5
8.1 kB Download
md5:d1d7bc05c95ab82210acbaf55945b320
2.5 kB Download
md5:86ff3a32634e6df3f318fd804b16fc70
2.0 kB Download
md5:6245891a26f09cc87f5f3b8f3888e3ca
3.7 kB Download

Additional details

Related works

Is cited by
10.1111/mec.13811 (DOI)