Natural hybridization among three Rhododendron species (Ericaceae) revealed by morphological and genomic evidence.

BMC Plant Biol

CAS Key Laboratory for Plant Diversity and Biogeography of East Asia, Kunming Institute of Botany, Chinese Academy of Sciences, 650201, Kunming, Yunnan, China.

Published: November 2021

AI Article Synopsis

  • The study investigates a complex hybrid zone among three closely related Rhododendron species, focusing on how natural hybridization influences species diversity and adaptation.
  • Using a combination of morphological traits and genetic data, researchers found bi-directional hybridization between the species, leading to multiple hybrid classes and a significant number of first-generation hybrids.
  • The findings suggest that while natural hybridization is prevalent, the formation of hybrids varies among the species, which could lead to different evolutionary paths and insights into adaptive radiation in these plants.

Article Abstract

Background: Natural hybridization can influence the adaptive response to selection and accelerate species diversification. Understanding the composition and structure of hybrid zones may elucidate patterns of hybridization processes that are important to the formation and maintenance of species, especially for taxa that have experienced rapidly adaptive radiation. Here, we used morphological traits, ddRAD-seq and plastid DNA sequence data to investigate the structure of a Rhododendron hybrid zone and uncover the hybridization patterns among three sympatric and closely related species.

Results: Our results show that the hybrid zone is complex, where bi-directional hybridization takes place among the three sympatric parental species: R. spinuliferum, R. scabrifolium, and R. spiciferum. Hybrids between R. spinuliferum and R. spiciferum (R. ×duclouxii) comprise multiple hybrid classes and a high proportion of F generation hybrids, while a novel hybrid taxon between R. spinuliferum and R. scabrifolium dominated the F generation, but no backcross individuals were detected. The hybrid zone showed basically coincident patterns of population structure between genomic and morphological data.

Conclusions: Natural hybridization exists among the three Rhododendron species in the hybrid zone, although patterns of hybrid formation vary between hybrid taxa, which may result in different evolutionary outcomes. This study represents a unique opportunity to dissect the ecological and evolutionary mechanisms associated with adaptive radiation of Rhododendron species in a biodiversity hotspot.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8582147PMC
http://dx.doi.org/10.1186/s12870-021-03312-yDOI Listing

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