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Reticulate Evolution and Plastome Restructuring Shape Asian Passiflora Diversification

Preprint Created on 29 Sep 2026 bioRxiv

Asian Passifloraceae occupy a distinctive evolutionary and ecological position within the family despite their relatively low species diversity compared with the Neotropics. Many Asian representatives are highly localized, small and often ephemeral climbers that persist seasonally through rhizomes, tuberous stems or dormant seeds, while considerable morphological plasticity may obscure species limits and evolutionary relationships. Xishuangbanna, southwestern China, lies at the convergence of Southeast Asian, Indian-Himalayan and southern Chinese floristic elements and represents an important regional centre of Passifloraceae diversity, with two species of Adenia and five species of Passiflora, including the recently described P. xishuangbannaensis and P. menghaiensis. We investigate the evolutionary relationships, plastome evolution and population genomics of these taxa using complete plastome assemblies, a concatenated dataset of 68 selected plastid protein-coding genes, 356 reconstructed nuclear Coding Sequences (CDS), and Genotyping-By-Sequencing (GBS) across the known wild distribution of P. xishuangbannaensis. Plastid, concatenated nuclear and nuclear coalescent phylogenies were strongly incongruent and differed from published classifications based on morphology and earlier phylogenies (ITS, ncpGS, ctyGS, ndhF and trnL-F). Gene-tree discordance and phylogenetic-network inference indicated widespread incomplete lineage sorting together with introgression. The two statistically best-supported network models placed P. menghaiensis, which showed high genetic similarity to the Indian P. napalensis, as a sister lineage involved in independent reticulation events associated with P. altebilobata, P. xishuangbannaensis and P. sumatrana. A pronounced biogeographic pattern was evident within Passiflora supersection Disemma, particularly in the P. siamica-P. cochinchinensis lineage across the Hua Line, whereas relationships among other Asian Passiflora blurred this boundary. This pattern suggests that diversification and reticulation within the Asian lineage may have overlapped temporally with the development of the biogeographic divide represented by the Hua Line. The concentration of early-diverging lineages around Xishuangbanna and the eastern Himalayan-Indian region further points to this area as an important centre in the early diversification of Asian Passiflora. Within this context, the highly localized P. xishuangbannaensis may represent either a relictual of an early Asian lineage or the surviving product of an ancient reticulate complex, contrasting with lineages such as P. siamica that subsequently expanded farther across Southeast Asia. Comparative plastome analyses revealed extensive structural and gene-content evolution within subgenus Decaloba, including pseudogenization, gene and intron losses, and repeated Inverted-Repeat (IR) expansions and contractions; substantial plastome modification also characterized supersection Disemma. Passiflora sumatrana exhibited a particularly distinctive IR expansion extending into the accD-pafII region, potentially characterizing this lineage. Adenia plastomes were generally more structurally conservative, although A. penangiana displayed an IR-boundary contraction involving the rps19-rpl2 region. Mitochondrial CDS and non-coding regions provided the best-resolved phylogenetic signal and revealed strong discordance with the chloroplast phylogeny, consistent with maternal mitochondrial inheritance and variable plastid transmission, potentially involving paternal or biparental inheritance and heteroplasmy. GBS analyses of P. xishuangbannaensis using complementary distant-reference, de novo and closely related-reference approaches showed that mapping to P. organensis provided the clearest SNP distribution and population resolution. ADMIXTURE, PCA and FST analyses revealed two strongly geographically structured populations with additional substructure and substantial differentiation (FST = 0.112). Linkage disequilibrium based demographic reconstruction using GONE2 indicated declining effective population size (Ne) toward the present in both populations, with a particularly abrupt recent decline in Pop1 and a more gradual decline in Pop2. Few candidate Self-Incompatibility (SI) genes could be confidently reconstructed, including limited recovery of highly variable docking regions. However, the intracellular region of an S-locus Receptor Kinases (SRK) contained a distinctive non-synonymous substitution predicted to alter protein configuration without major disruption of overall folding, potentially contributing to compatibility differences between populations. Together, these results reveal a complex evolutionary history combining historical dispersal, incomplete lineage sorting, reticulation, morphological plasticity, plastome structural evolution and strong population differentiation. The narrow distributions and recent demographic decline of these newly recognized Xishuangbanna taxa emphasize their conservation importance, while broader Asian taxon sampling and deeper genomic sequencing will be essential to resolve the evolutionary history of this discreet and poorly known Passifloraceae radiation.

Zhou, Z. Y., Low, S. L., Niu, H. B., Song, S. J., Wu, F. C., Shen, J. Y., Dong, H., Jiang, Q. Y., Landrein, S.

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