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Bai, W.-N.

Publications and source records attributed to Bai, W.-N..

2 recordsLinked to original sources

Uncovering the Genetic Basis of Heterodichogamy in Pterocarya and Cyclocarya Using a Low-Input Pan-Genomic Approach

The heterodichogamous mating system, characterized by two distinct mating types (protogyny and protandry), is rare among flowering plants, but it is present in nearly all species in Juglandaceae (the walnut family). Recent studies have identified distinct structural variations underlying heterodichogamy in Juglans and Carya. To verify the independent origins of this trait in Juglandaceae and investigate whether structural variations also drive heterodichogamy in Juglans closely related genera, we explored its genetic basis in Pterocarya and Cyclocarya. Using a pan-genome graph approach, we identified a structural variation region associated with mating types across the Pterocarya genus. This region includes 30 kb tandem repeats in the dominant allele and an insertion in the recessive allele, with shared polymorphisms spanning 78 kb from the 3'UTR of S12e, covering a FAF-like gene, to a Gypsy transposable element. Downstream analyses suggest that the specific expression of FAF-like gene and small RNAs uniquely expressed from the tandem repeats of dominant allele regulate heterodichogamy. Further investigation in Cyclocarya identified nine candidate loci associated with heterodichogamy, which are non-homologous regions with those found in Pterocarya, Juglans, and Carya. These findings provide novel evidence for the multiple independent originations of convergent genetic basis in regulating heterodichogamy in Juglandaceae and highlight the utility of pan-genome approaches in deciphering structural variation-associated traits.

evolutionary biology↗

Uncovering Ghost Introgression Through Genomic Analysis of a Distinct East Asian Hickory Species

Although the possibility of introgression from ghost lineages (all unsampled extant and extinct taxa) is now widely recognized, detecting and characterizing ghost introgression remains a challenge. Here, we propose a combined use of the popular D-statistic method, which tests for the presence of introgression, and the full-likelihood method BPP, which determines which of the possible gene-flow scenarios, including ghost introgression, is truly responsible. We illustrate the utility of this approach by investigating the reticulation and bifurcation history of the genus Carya (Juglandaceae), including the beaked hickory Carya sinensis. To achieve this goal, we generated two chromosome-level reference genomes respectively for C. sinensis and C. cathayensis. Furthermore, we re-sequenced the whole genomes of 43 individuals from C. sinensis and one individual from each of the 11 diploid species of Carya. The latter dataset with one individual per species is used to reconstruct the phylogenetic networks and estimate the divergence time of Carya. Our results unambiguously demonstrate the presence of ghost introgression from an extinct lineage into the beaked hickory, dispelling certain misconceptions about the phylogenetic history of C. sinensis. We also discuss the profound implications of ghost introgression into C. sinensis for the historical biogeography of hickory species. [BPP; Carya; D-statistic; gene flow; ghost introgression]

evolutionary biology↗