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Genetic architecture behind developmental and seasonal control of tree growth and wood properties in Norway spruce. | LitMetric

AI Article Synopsis

  • - Genetic factors influencing tree growth and wood formation change with the tree's age and the season, as shown by comprehensive genome-wide association studies (GWAS) on Norway spruce.
  • - The research involved analyzing a large set of SNPs and found that a multi-locus approach identified more genetic links to wood traits compared to simpler models, revealing unique patterns based on tree age and season.
  • - Significant SNPs were discovered linked to known genes for wood formation, as well as novel candidate genes, providing insights that could aid in future breeding and functional studies for Norway spruce.

Article Abstract

Genetic control of tree growth and wood formation varies depending on the age of the tree and the time of the year. Single-locus, multi-locus, and multi-trait genome-wide association studies (GWAS) were conducted on 34 growth and wood property traits in 1,303 Norway spruce individuals using exome capture to cover ~130K single-nucleotide polymorphisms (SNPs). GWAS identified associations to the different wood traits in a total of 85 gene models, and several of these were validated in a progenitor population. A multi-locus GWAS model identified more SNPs associated with the studied traits than single-locus or multivariate models. Changes in tree age and annual season influenced the genetic architecture of growth and wood properties in unique ways, manifested by non-overlapping SNP loci. In addition to completely novel candidate genes, SNPs were located in genes previously associated with wood formation, such as cellulose synthases and a NAC transcription factor, but that have not been earlier linked to seasonal or age-dependent regulation of wood properties. Interestingly, SNPs associated with the width of the year rings were identified in homologs of BARELY ANY MERISTEM 1 and rice BIG GRAIN 1, which have been previously shown to control cell division and biomass production. The results provide tools for future Norway spruce breeding and functional studies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9396349PMC
http://dx.doi.org/10.3389/fpls.2022.927673DOI Listing

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