Abstract
AbstractBackgroundIntergenomic gene transfer (IGT) between nuclear and organellar genomes is a common phenomenon during plant evolution.Gossypiumis a useful model to evaluate the genomic consequences of IGT for both diploid and polyploid species. Here, we explore IGT among nuclear, mitochondrial, and plastid genomes of four cotton species, including two allopolyploids and their model diploid progenitors (genome donors,G. arboreum: A2andG. raimondii: D5).ResultsExtensive IGT events exist for both diploid and allotetraploid cotton (Gossypium) species, with the nuclear genome being the predominant recipient of transferred DNA followed by the mitochondrial genome. The nuclear genome has integrated 100 times more foreign sequences than the mitochondrial genome has in total length. In the nucleus, the integrated length of chloroplast DNA (cpDNA) was between 1.87 times (in diploids) to nearly four times (in allopolyploids) greater than that of mitochondrial DNA (mtDNA). In the mitochondrion, the length of nuclear DNA (nuDNA) was typically three times than that of cpDNA.Gossypiummitochondrial genomes integrated three nuclear retrotransposons and eight chloroplast tRNA genes, and incorporated chloroplast DNA prior to divergence between the diploids and allopolyploid formation. For mitochondrial chloroplast-tRNA genes, there were 2-6 bp conserved microhomologies flanking their insertion sites across distantly related genera, which increased to 10 bp microhomologies for the four cotton species studied. For organellar DNA sequences, there are source hotspots, e.g., theatp6-trnWintergenic region in the mitochondrion and the inverted repeat region in the chloroplast. Organellar DNAs in the nucleus were rarely expressed, and at low levels. Surprisingly, there was asymmetry in the survivorship of ancestral insertions following allopolyploidy, with mostnumts(nuclear mitochondrial insertions) decaying or being lost whereas mostnupts(nuclear plastidial insertions) were retained.ConclusionsThis study characterized and compared intracellular transfer among nuclear and organellar genomes within two cultivated allopolyploids and their ancestral diploid cotton species. A striking asymmetry in the fate of IGTs in allopolyploid cotton was discovered, withnumtsbeing preferentially lost relative tonupts.Our results connect intergenomic gene transfer with allotetraploidy and provide new insight into intracellular genome evolution.
Funder
National Natural Science Foundation of China
National Key R & D Program for Crop Breeding
Publisher
Springer Science and Business Media LLC
Cited by
20 articles.
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