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  5. Repeatome evolution across space and time: Unravelling repeats dynamics in the plant genus Erythrostemon Klotzsch (Leguminosae Juss).

Repeatome evolution across space and time: Unravelling repeats dynamics in the plant genus Erythrostemon Klotzsch (Leguminosae Juss).

Resource type
Journal article
Creator (person)
Castro, Natália
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Vilela, Bruno
Mata‐Sucre, Yennifer
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Marques, André
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Gagnon, Edeline
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Lewis, Gwilym P.
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Costa, Lucas
Souza, Gustavo
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Date published
September 9, 2024
Abstract
Fluctuations in genomic repetitive fractions (repeatome) are known to impact several facets of evolution, such as ecological adaptation and speciation processes. Therefore, investigating the divergence of repetitive elements can provide insights into an important evolutionary force. However, it is not clear how the different repetitive element clades are impacted by the different factors such as ecological changes and/or phylogeny. To discuss this, we used the Neotropical legume genus (Caesalpinioideae) as a model, given its ancient origin (~33 Mya), lineage‐specific niche conservatism, macroecological heterogeneity, and disjunct distribution in Meso‐ and South American (MA and SA respectively) lineages. We performed a comparative repeatomic analysis of 18 species to test the impact of environmental variables over repeats diversification. Overall, repeatome composition was diverse, with high abundances of satDNAs and Ty3/gypsy‐Tekay transposable elements, predominantly in the MA and SA lineages respectively. However, unexpected repeatome profiles unrelated to the phylogeny/biogeography were found in a few MA ( , and ) and SA ( ) species, related to reticulate evolution and incongruence between nuclear and plastid topology, suggesting ancient hybridizations. The plesiomorphic Tekay and satDNA pattern was altered in the MA‐sensu stricto subclade with a striking genomic differentiation (expansion of satDNA and retraction of Tekay) associated with the colonization of a new environment in Central America around 20 Mya. Our data reveal that the current species‐specific Tekay pool was the result of two bursts of amplification probably in the Miocene, with distinct patterns for the MA and SA repeatomes. This suggests a strong role of the Tekay elements as modulators of the genome–environment interaction in , providing macroevolutionary insights about mechanisms of repeatome differentiation and plant diversification across space and time.
Funder
Funder nameAwards
Conselho Nacional de Desenvolvimento Científico e Tecnológico, Brazil
PQ‐312852/2021‐5
Fundação de Amparo à Ciência e Tecnologia do Estado de Pernambuco, Brazil
APQ-0970-2.03/15 - IBPG-1762-2.03/21
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Brazil
Estágio Pós Doutoral 88881.119479/2016‐01
Journal title
Molecular Ecology
Article number
e17510
Publisher
John Wiley & Sons Ltd.
Place of publication
UK
ISSN
0962-1083
eISSN
1365-294X
Date accepted
July 22, 2024
Official URL
https://doi.org/10.1111/mec.17510
Rights statement
In Copyright
DOI
10.1111/mec.17510
Keywords
Ecological variables
satDNA
Erythrostemon
Transposable elements
Caesalpinieae
Fabaceae
Genome ecology
Additional information
IF = 6.622 (2023-2024)
Managed by the British Library and supported by the AHRC

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