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A sectional classification of Diplazium Sw. (Athyriaceae), based on plastid genomic, nuclear ribosomal, and morphological evidence

2024/12/05 by Ran Wei, Michael Sundue, Jie Yang +1 · 5 citations
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · #Biology #Botany #Chloroplast #Clade #Evolutionary biology #Fern #Fern and Epiphyte Biology #Genetics #Genus #Phylogenetic tree #Plant Diversity and Evolution #Plant and Fungal Species Descriptions #Plastid #Ribosomal DNA #Subgenus

paper · pdf · doi:10.1002/tax.13281

published in Taxon 74(1), 13-38 (Wiley)

openalex publication_date 2024/12/05 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/23

Abstract

Abstract The twinsorus‐fern genus Diplazium represents one of the most diverse genera within the lady‐fern family Athyriaceae, encompassing over 300 species, with the highest species diversity concentrated in tropical Asia and the Neotropics. Despite recent progress in phylogenetic studies of Diplazium , the infrageneric classification of this fern group remains challenging, particularly in D. subg. Callipteris . In this study, we explored the phylogenetic relationships within Diplazium using plastid (plastome and amplicon sequences) and nuclear ribosomal data, based on an extensive species sampling. Our phylogenetic analyses, using plastid and nuclear ribosomal datasets, congruently support 4 major clades and 12 subclades. Although deep relationships along the backbone were consistently well resolved using plastomes, nuclear ribosomal genomes and three concatenated plastid markers, cyto‐nuclear discordance was detected within subclades of D. subg. Callipteris . Considering our phylogenetic framework, we propose a classification of Diplazium with a particular focus on sectional delimitation. This classification comprises 4 previously recognized subgenera, and introduces 12 newly established sections. Our infrageneric divisions receive additional support from non‐molecular evidence, including stipe scales, leaf architecture, pinna/pinnule shape, indument and venation patterns, sori and spore features, and geographical distributions.

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