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Evolutionary analysis of the Moringa oleifera genome reveals a recent burst of plastid to nucleus gene duplications.
Ojeda-López, José; Marczuk-Rojas, Juan Pablo; Polushkina, Oliver Aleksandrei; Purucker, Darius; Salinas, María; Carretero-Paulet, Lorenzo.
Afiliación
  • Ojeda-López J; Department of Biology and Geology, University of Almería, Ctra, Sacramento s/n, 04120, Almería, Spain.
  • Marczuk-Rojas JP; Department of Biology and Geology, University of Almería, Ctra, Sacramento s/n, 04120, Almería, Spain.
  • Polushkina OA; Department of Biology and Geology, University of Almería, Ctra, Sacramento s/n, 04120, Almería, Spain.
  • Purucker D; Department of Biology and Geology, University of Almería, Ctra, Sacramento s/n, 04120, Almería, Spain.
  • Salinas M; Department of Biology and Geology, University of Almería, Ctra, Sacramento s/n, 04120, Almería, Spain.
  • Carretero-Paulet L; Department of Biology and Geology, University of Almería, Ctra, Sacramento s/n, 04120, Almería, Spain. lpaulet@ual.es.
Sci Rep ; 10(1): 17646, 2020 10 19.
Article en En | MEDLINE | ID: mdl-33077763
ABSTRACT
It is necessary to identify suitable alternative crops to ensure the nutritional demands of a growing global population. The genome of Moringa oleifera, a fast-growing drought-tolerant orphan crop with highly valuable agronomical, nutritional and pharmaceutical properties, has recently been reported. We model here gene family evolution in Moringa as compared with ten other flowering plant species. Despite the reduced number of genes in the compact Moringa genome, 101 gene families, grouping 957 genes, were found as significantly expanded. Expanded families were highly enriched for chloroplastidic and photosynthetic functions. Indeed, almost half of the genes belonging to Moringa expanded families grouped with their Arabidopsis thaliana plastid encoded orthologs. Microsynteny analysis together with modeling the distribution of synonymous substitutions rates, supported most plastid duplicated genes originated recently through a burst of simultaneous insertions of large regions of plastid DNA into the nuclear genome. These, together with abundant short insertions of plastid DNA, contributed to the occurrence of massive amounts of plastid DNA in the Moringa nuclear genome, representing 4.71%, the largest reported so far. Our study provides key genetic resources for future breeding programs and highlights the potential of plastid DNA to impact the structure and function of nuclear genes and genomes.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Plastidios / Genoma de Planta / Duplicación de Gen / Moringa oleifera Idioma: En Revista: Sci Rep Año: 2020 Tipo del documento: Article País de afiliación: España

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Plastidios / Genoma de Planta / Duplicación de Gen / Moringa oleifera Idioma: En Revista: Sci Rep Año: 2020 Tipo del documento: Article País de afiliación: España
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