4.7 Article

Ultra-sculpturing of seed morphotypes in selected species of genus Salvia L. and their taxonomic significance

Journal

PLANT BIOLOGY
Volume 25, Issue 1, Pages 96-106

Publisher

WILEY
DOI: 10.1111/plb.13473

Keywords

Cluster analysis; micromorphology; Salvia; SEM; surface sculpturing

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The taxonomic importance of macromorphological and micromorphological seed characteristics was investigated using SEM in ten Salvia species from Pakistan. The results revealed that SEM could aid in taxon identification, especially at the genus and species levels.
The taxonomic importance of macromorphological and micromorphological seed characteristics was investigated using SEM of ten species of the Salvia genus from Pakistan. The aim was to identify diagnostic seed ultrastructural features that could aid in species delimitation, correct identification and phylogenetic position. The ultrastructure of Salvia varies greatly, and a wide range of unique micromorphological features have been observed. Seed micromorphological features were explored by SEM, including seed shape, colour, texture, cell outline, surface sculpturing, epidermal cell arrangement, anticlinal, and periclinal wall pattern. Seed shapes were categorized as obovate, spherical, spheroid, broadly elliptic, elliptic and oblong, mostly with a terminal hilum. Seed colours were black, light brown, dark brown, brown and yellow. Exo-morphological characters, i.e. epidermal cell arrangements, included irregular, wavy pentagonal-hexagonal, regular pentagonal-hexagonal. Cluster analysis was used to assess similar and distinct species within Salvia with a feasible explanation. Taxonomic keys were made based on micromorphological qualitative features that help to delimit species and identify them quickly within the Salvia genus. Seed morphology of ten Salvia species was described and investigated, and the diagnostic significance of features evaluated using SEM. This study analysed seed features, especially at the species level, which might provide much new taxonomic information. The results revealed that, in seed morphology, using SEM can help with taxon identification, especially at the genus and species levels.

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