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  5. Plastid and nuclear phylogenomics of Cyphostemma (Vitaceae) provide new insights into genome size evolution across sub‐Saharan Africa.

Plastid and nuclear phylogenomics of Cyphostemma (Vitaceae) provide new insights into genome size evolution across sub‐Saharan Africa.

Resource type
Journal article
Creator (person)
Ranaivoson, Rindra M.
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Rabarijaona, Romer N.
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Yu, Jin‐Ren
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You, Yi‐Chen
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Barrett, Russell L.
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more
Date published
January 8, 2026
Abstract

Genome size, the total amount of DNA content in the cell nucleus, varies greatly among flowering plants. One factor underlying this variation is the environment under which plants evolve. Given this premise, harsh environmental conditions in arid regions may profoundly influence genome evolution. However, the specific impact of aridification on genome size evolution, particularly for African lineages, remains largely unexplored. Here, we investigate linkages between genome size evolution and ecological adaptation using the genus in the grape family (Vitaceae) as a model. species exhibit genome size expansion and remarkable morphological traits in arid environments, including succulent stems or leaves and loss of tendrils. Our biogeographic reconstruction, based on substantial taxon sampling (112 of 200 species), reveals that originated in continental Africa during the late Eocene to Oligocene and has undergone rapid radiation since the middle Miocene, coinciding with intensified aridification and geological activity in eastern Africa. Incorporating extensive data on traits, habitats, genome size, and chromosome numbers, we show that species with the largest genomes are succulent polyploids restricted to nutrient‐rich limestone outcrops. Broad‐scale analyses across eudicots further confirm that larger genomes are significantly associated with both succulence and arid habitats. Our findings reveal a strong association between genome size expansion, polyploidy, and adaptive traits, indicating that genome size is a hitherto neglected trait associated with the radiation of succulent plants during the African aridification in the Cenozoic.

Organisational unit
Science
Project(s)
Priority 2: Trait Diversity and Function
Funder
Funder nameISNIAwards
National Natural Science Foundation of China, China
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32221001 - 32270230
National Key Research and Development Program of China, China
2022YFC2601200 - 2023YFF0805800
International Partnership Program, Chinese Academy of Sciences, China
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063GJHZ2024053FN - 151853KYSB20190027
Youth Innovation Promotion Association, Chinese Academy of Sciences, China
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2020080
Sino-Africa Joint Research Center, Chinese Academy of Sciences, China
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SAJC202527ZD01
Chinese Academy of Sciences, China
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International Fellowship Initiative - President's Fellowship for International Ph.D. Students
Vetenskapsrådet, Sweden
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2024-04303
Stiftelsen för Miljöstrategisk Forskning, Sweden
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Project BioPath
Kew Foundation, Royal Botanic Gardens, Kew, United Kingdom
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The World Academy of Sciences, Italy
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President's Fellowship for International Ph.D. Students
Journal title
Journal of Integrative Plant Biology
Article number
jipb.70111
Publisher
Wiley
ISSN
1672-9072
eISSN
1744-7909
Date accepted
November 20, 2025
Official URL
https://doi.org/10.1111/jipb.70111
Rights statement
In Copyright
DOI
10.1111/jipb.70111
Alternate identifier
jipb.70111
Keywords
Aridification
Ecological adaptation
Genome size
Diversification
Sub-Saharan Africa
Cyphostemma
Additional information
IF = 9.3 (2024)
Managed by the British Library and supported by the AHRC

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