Organellar genome analysis reveals endosymbiotic gene transfers in tomato.

PLoS One

Department of Horticultural Science, Kyungpook National University, Daegu, Korea.

Published: February 2019

AI Article Synopsis

  • The study focused on the complete mitochondrial genomes of two tomato species, Solanum lycopersicum and Solanum pennellii, revealing lengths between 423,596-446,257 bp and over 97% similarity despite rearrangements.
  • The researchers compared these mitogenomes with plastid and nuclear genomes, finding significant transfers of genetic material among the different DNA-containing organelles.
  • Notably, they identified numerous nuclear copies of mitochondrial (NUMTs) and plastid DNA (NUPTs), with variations in their locations between the two species, indicating frequent endosymbiotic gene transfers in tomato.

Article Abstract

We assembled three complete mitochondrial genomes (mitogenomes), two of Solanum lycopersicum and one of Solanum pennellii, and analyzed their intra- and interspecific variations. The mitogenomes were 423,596-446,257 bp in length. Despite numerous rearrangements between the S. lycopersicum and S. pennellii mitogenomes, over 97% of the mitogenomes were similar to each other. These mitogenomes were compared with plastid and nuclear genomes to investigate genetic material transfers among DNA-containing organelles in tomato. In all mitogenomes, 9,598 bp of plastome sequences were found. Numerous nuclear copies of mitochondrial DNA (NUMTs) and plastid DNA (NUPTs) were observed in the S. lycopersicum and S. pennellii nuclear genomes. Several long organellar DNA fragments were tightly clustered in the nuclear genome; however, the NUMT and NUPT locations differed between the two species. Our results demonstrate the recent occurrence of frequent endosymbiotic gene transfers in tomato genomes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6124701PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0202279PLOS

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