4.7 Article

A new reference genome for Sorghum bicolor reveals high levels of sequence similarity between sweet and grain genotypes: implications for the genetics of sugar metabolism

Journal

BMC GENOMICS
Volume 20, Issue -, Pages -

Publisher

BMC
DOI: 10.1186/s12864-019-5734-x

Keywords

Sorghum; Sugar metabolism; Sugar transport; Genomics; Gene expression

Funding

  1. Office of Science of the U.S. Department of Energy [DE-AC02-05CH11231]
  2. U.S. Department of Energy's Advanced Research Projects Agency (Energy) [DE-AR0000595]
  3. Office of Science (Biological and Environmental Research), US Department of Energy [DE-FG02-07ER64458]

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BackgroundThe process of crop domestication often consists of two stages: initial domestication, where the wild species is first cultivated by humans, followed by diversification, when the domesticated species are subsequently adapted to more environments and specialized uses. Selective pressure to increase sugar accumulation in certain varieties of the cereal crop Sorghum bicolor is an excellent example of the latter; this has resulted in pronounced phenotypic divergence between sweet and grain-type sorghums, but the genetic mechanisms underlying these differences remain poorly understood.ResultsHere we present a new reference genome based on an archetypal sweet sorghum line and compare it to the current grain sorghum reference, revealing a high rate of nonsynonymous and potential loss of function mutations, but few changes in gene content or overall genome structure. We also use comparative transcriptomics to highlight changes in gene expression correlated with high stalk sugar content and show that changes in the activity and possibly localization of transporters, along with the timing of sugar metabolism play a critical role in the sweet phenotype.ConclusionsThe high level of genomic similarity between sweet and grain sorghum reflects their historical relatedness, rather than their current phenotypic differences, but we find key changes in signaling molecules and transcriptional regulators that represent new candidates for understanding and improving sugar metabolism in this important crop.

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