Genomic variation across landscapes: insights and applications.

New Phytol

Research School of Biology and Centre for Biodiversity Analysis, Australian National University, Canberra, ACT, 0200, Australia.

Published: September 2015

AI Article Synopsis

  • The distribution of genomic variation across landscapes reveals how environmental factors interact with genomes, influencing species distribution and adaptation.
  • Advancements in high throughput sequencing allow for deep insights into historical colonization, gene flow, and identifying specific genes linked to local adaptation.
  • The review highlights the significance of landscape genomics in studying model and nonmodel organisms, outlining methods for capturing adaptive variation and its application in addressing ecological challenges like restoration.

Article Abstract

The distribution of genomic variation across landscapes can provide insights into the complex interactions between the environment and the genome that influence the distribution of species, and mediate phenotypic adaptation to local conditions. High throughput sequencing technologies now offer unprecedented power to explore these interactions, allowing powerful inferences about historical processes of colonization, gene flow and divergence, as well as the identification of loci that mediate local adaptation. These 'landscape genomic' approaches have been validated in model species and are now being applied to nonmodel organisms, including foundation species that have substantial effects on ecosystem processes. Here we review the growing field of landscape genomics from a very broad perspective. In particular, we describe the inferential power that is gained by taking a genome-wide view of genetic variation, strategies for study design to best capture adaptive variation, and how to apply this information to practical challenges, such as restoration.

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Source
http://dx.doi.org/10.1111/nph.13410DOI Listing

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