Literature DB >> 34674075

Hybridization and polyploidization effects on LTR-retrotransposon activation in potato genome.

Magdalena Gantuz1, Andrés Morales2, María Victoria Bertoldi3, Verónica Noé Ibañez3, Paola Fernanda Duarte3, Carlos Federico Marfil3, Ricardo Williams Masuelli4.   

Abstract

Hybridization and polyploidization are major forces in plant evolution and potatoes are not an exception. It is proposed that the proliferation of Long Terminal Repeat-retrotransposons (LTR-RT) is related to genome reorganization caused by hybridization and/or polyploidization. The main purpose of the present work was to evaluate the effect of interspecific hybridization and polyploidization on the activation of LTR-RT. We evaluated the proliferation of putative active LTR-RT in a diploid hybrid between the cultivated potato Solanum tuberosum and the wild diploid potato species S. kurtzianum, allotetraploid lines derived from this interspecific hybrid and S. kurtzianum autotetraploid lines (ktz-autotetraploid) using the S-SAP (sequence-specific amplified polymorphism) technique and normalized copy number determination by qPCR. Twenty-nine LTR-RT copies were activated in the hybrid and present in the allotetraploid lines. Major LTR-RT activity was detected in Copia-27, Copia-12, Copia-14 and, Gypsy-22. According to our results, LTR-RT copies were activated principally in the hybrid, there was no activation in allotetraploid lines and only one copy was activated in the autotetraploid.
© 2021. The Botanical Society of Japan.

Entities:  

Keywords:  Allotetraploid; Autotetraploid; Hybridization; Long terminal repeat retrotransposons; Solanum kurtzianum; Solanum tuberosum

Mesh:

Substances:

Year:  2021        PMID: 34674075     DOI: 10.1007/s10265-021-01354-9

Source DB:  PubMed          Journal:  J Plant Res        ISSN: 0918-9440            Impact factor:   2.629


  41 in total

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