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Sunayama, S.

Publications and source records attributed to Sunayama, S..

2 recordsLinked to original sources

Molecular evolutionary evidence for coexistence within oak hybrid zones.

Resource allocation trade-offs in seedlings have been widely proposed to facilitate the coexistence of tree species; however, whether selection can maintain the underlying genetic variation under gene flow remains insufficiently investigated. Using a natural hybrid zone between two East Asian oaks, we evaluated whether loci associated with allocation trade-offs showed signatures of selection despite hybridisation. Acorns collected across the zone were cultivated in a common garden, where we quantified 25 seedling growth and functional traits, and analysed whole-genome variation. We identified trade-offs between leaf function and plant architecture. Trait-associated genomic regions demonstrated strong inter-chromosomal linkage disequilibrium in the hybrids, consistent with genetic coupling, and exhibited elevated interspecific differentiation and more pronounced genetic clines. These results indicate that multilocus selection counteracts gene flow through the development of genetic coupling, thereby maintaining resource allocation trade-offs that may contribute to tree coexistence.

evolutionary biology↗

LeafContourEFD: a reproducible workflow for elliptic Fourier analysis with orientation normalization and lateral asymmetry

PremiseElliptic Fourier analysis is widely used to quantify leaf shape variation, but inconsistent normalization and orientation alignment can introduce biologically irrelevant variation. In addition, a reproducible workflow from raw images to normalized elliptic Fourier descriptors (EFDs) is still lacking. Methods and ResultsWe developed LeafContourEFD, a GUI application for reproducible leaf morphometrics. It integrates image segmentation, contour extraction, EFD calculation, and an extended normalization framework, termed oriented true EFD normalization, based on a user-defined biological reference axis. Analyses of Quercus serrata, Q. crispula, and Triadica sebifera showed that existing normalization methods can introduce orientation-related variance when the first-harmonic major axis does not match the leaf base-to-tip axis. In contrast, oriented true normalization removed these artifacts, yielding clearer shape transitions along principal components allowing shape variation among leaves to be captured while preserving biologically meaningful lateral asymmetry. ConclusionsLeafContourEFD improves interpretability and reproducibility in outline-based morphometrics and provides transparent outputs and metadata for data sharing and cross-study comparisons.

plant biology↗