- PII
- S26586339S0006813625010056-1
- DOI
- 10.7868/S2658633925010056
- Publication type
- Article
- Status
- Published
- Authors
- Volume/ Edition
- Volume 110 / Issue number 1
- Pages
- 91-106
- Abstract
- The pollen morphology of 14 species of the tribe Solaneae (Solanaceae) was studied by light and scanning electron microscopy, of which the pollen of 10 species was described for the first time. The pollen morphology of previously described species is compared with our data. The validity of the inclusion of the previously isolated genera Lycopersicon and Cyphomandra in the genus Solanum, as well as the genus Hebecladus in the genus Jaltomata, is confirmed on the basis of the morphological structure of their pollen grains. Typical pollen grains of the studied species are 3-colporate, spheroidal, medium-sized, the equatorial diameter does not exceed 35 µm. Colpi are long, narrow, and the structure of endoaptures is different. The sculpture of the pollen grain surface is echinate. Pollen grains of genus Solanum are characterized by a 3-lobate outline in polar view, strongly elongated endoapertures with clear equatorial edges, and high density of spinules on pollen grain surface. Pollen grains of the genus Jaltomata are always characterized by a strictly rounded shape in polar view, endoapertures are rounded and weakly pronounced, pollen sizes, structure of apertures and sculpture of pollen grain surface are individualizing features for some of the studied species.
- Keywords
- морфология пыльцы Solanum Jaltomata Solaneae Solanaceae сканирующая электронная микроскопия светооптическая микроскопия
- Date of publication
- 01.01.2025
- Year of publication
- 2025
- Number of purchasers
- 0
- Views
- 21
References
- 1. Adedeji O.O., Akinniyi T.A. 2015. Pollen morphology of some species in the family Solanaceae. — Advances in BioScience. 6(4): 124–128. https://journals.sospublication.co.in/ab/article/view/191
- 2. [Airapetyan] Айрапетян А.М. 1991. Апертурный полиморфизм пыльцы у вида Physalis maxima L. (Solanaceae). — Фл. раст. рес. Армении. 13: 107–115.
- 3. [Airapetyan] Айрапетян А.М. 2002. Палинологические данные к подсемейству Solanoideae (Solanaceae Juss.): триба Solaneae. — Фл. раст. рес. Армении. 14: 118–130.
- 4. Al-Quran S. 2004. Pollen Morphology of Solanaceae in Jordan. — Pakistan Journal of Biological Sciences. 7(6): 1586–1593.
- 5. Ashfaq S., Ahmad M., Zafar M., Sultana S., Bahadur S., Ahmed S.N., Gul S., Nazish M. 2020. Pollen morphology of family Solanaceae and its taxonomic significance. — An. Acad. Bras. Ciênc. 92(3): e20181221. https://doi.org/10.1590/0001-3765202020181221 PMID: 33331396.
- 6. Batista-Franklim C.P.R., Gonçalves-Esteves V. 2008. Palinologia de espécies de Solanum L. (Solanaceae A. Juss.) ocorrentes nas restingas do Estado do Rio de Janeiro, Brasil. — Acta Bot. Bras. 22(3): 782–793. https://doi.org/10.1590/S0102-33062008000300015
- 7. Bohs L. 2007. Phylogeny of the Cyphomandra clade of the genus Solanum (Solanaceae) based on ITS sequence data. — Taxon. 56(4): 1012–1026.
- 8. [Cole, Godin] Коул Т.К.Г., Годин В.Н. 2022. Филогения семейства Solanaceae (SolPP, Ru). https://doi.org/10/13140/RG/2.2.13094.68168/2
- 9. Davis T. 1980. The generic relationship of Saracha and Jaltomata (Solanaceae; Solaneae). — Rhodora. 82: 345–352.
- 10. D’Arcy W.G. 1991. The Solanaceae since 1976, with a review of its biogeography. — In: J.G. Hawkes, R.N. Lester, M. Nee, N. Estrada R. Solanaceae III. Taxonomy, Chemistry, Evolution. Richmond. P. 75–137.
- 11. Du T., Zhao C., Liu J. 2018. The pollen of Solanum L. and its systematic significance. — Palynology. 42(3): 291–310. https://doi.org/10.1080/01916122.2017.1346527
- 12. Edmonds J.M. 1984. Pollen morphology of Solanum L. section Solanum. — Bot. J. Linn. Soc. 88: 237–251.
- 13. Erdtman G. 1952. Pollen morphology and taxonomy. Angiosperms. Stockholm. 539 p.
- 14. Hunziker A.T. 2000. The tribe Solaneae (Solanaceae): key for its genera and description of Darcya gen. Nov. — Bol. Soc. Argent. Bot. 35(1–2): 163–169.
- 15. Kayani S., Hussain M., Ahmad M., Zafar M., Sultana S., Butt M.A., Ali S., Shah G.M., Mir S. 2019. Scanning Electron Microscopy (SEM) and Light Microscopy (LM)-based Palyno-morphological views of Solanaceae in Western Himalaya. — Microsc. Res. Tech. 82 (2): 63–74. https://doi.org/10.1002/jemt.23097
- 16. Komarova N.Y., Grimm G.W., Hemleden V., Volkov R.A. 2008. Molecular evolution of 35S rDNA and taxonomic status of Lycopersicon within Solanum sect. Petota. — Plant Syst. Evol. 276: 59–71.
- 17. [Kupriyanova, Aleshina] Куприянова Л.А., Алешина Л.А. 1967. Палинологическая терминология покрытосеменных растений. Л. 84 с.
- 18. [Kupriyanova, Aleshina] Куприянова Л.А., Алешина Л.А. 1972. Пыльца и споры растений флоры Европейской части СССР. Т. 1. Л. 172 с.
- 19. [Kupriyanova, Aleshina] Куприянова Л.А., Алешина Л.А. 1978. Пыльца двудольных растений флоры Европейской части СССР. Л. 184 с.
- 20. Miller R.J., Mione T., Phan H-L., Olmstead R.G. 2011. Color by numbers: nuclear gene phylogeny of Jaltomata (Solanaceae), sister genus to Solanum, Supports three clades differing in fruit color. — Systematic Botany 36(1): 153–162.
- 21. Mione T. 1997. A new Peruvian species of Jaltomata (Solanaceae) with blood-red floral nectar. — Rhodora. 99(900): 283–286.
- 22. Mione T., Olmstead R.C., Jansen R.K., Anderson G.J. 1994. Systematic Implications of chloroplast DNA variation in Jaltomata and selected physaloid genera (Solanaceae). — Am.J. Bot. 81 (7): 912–918.
- 23. Nesbitt T.C., Tanksley S.D. 2002. Comparative Sequencing in the Genus Lycopersicon: Implications for the Evolution of Fruit Size in the Domestication of Cultivated Tomatoes. — Genetics. 162(1): 365–379. https://doi.org/10.1093/genetics/162.1.365
- 24. Olmstead R.G., Bohs L., Migid H.A., Santiago-Valentin E., Garcia V.F., Collier S.M. 2008. A molecular phylogeny of the Solanaceae. — Taxon. 57(4): 1159–1181.
- 25. Paria N.D., Kundu P., Roy B., Mundhra A. 2010. Pollen morphology of the tribe Solaneae (Solanaceae) in relation to taxonomy. — J. Botan. Soc. Bengal. 64(I): 17–28.
- 26. Perveen A., Qaiser M. 2007. Pollen morphology of family Solanaceae from Pakistan. — Pak. J. Bot. 2243–2256.
- 27. Pozhidaev A.E. 1993. Polymorphism of pollen in the genus Acer (Aceraceae). Isomorphism of deviant forms of Angiosperm pollen. — Grana. 32(2): 79–85.
- 28. Pozhidaev A.E. 1995. Pollen morphology of the genus Aesculus (Hippocastanaceae). Patterns in the variety of morphological characteristics. — Grana. 34(1): 10–20. https://doi.org/10.1080/00173139509429028
- 29. Rao V.N.M., Rauoof A.A. 1970. Pollen and pollination studies in tree tomato (Cyphomandra betacea Sendt.). — J. Palynology. 6: 70–72.
- 30. Schishova M., Puzanskiy R., Gavrilova O., Kurbanniazov Sh., Demchenko K., Yemelyanov V., Pendinen G., Shavarda A., Gavrilenko T. 2019. Metabolic alterations in male-sterile potato as compared to male-fertile. — Metabolites. 9(2). https://doi.org/10.3390/metabo9020024
- 31. [Tarasevich et al.] Тарасевич В.Ф., Григорьева В.В., Пожидаев А.Е., Гаврилова О.А., Брицкий Д.А., Свенторжецкая О.Ю., Леунова В.М. 2011. Особенности морфологии пыльцы семейства Solanaceae. — В сб.: Проблемы современной палинологии: Материалы XIII Российской палинологической конференции. Т. 1. Сыктывкар. С. 59–67.
- 32. Vitorino da Cruz-Barros M.A., Silva E.L., Gasparino E.C., Souza L.N., de Oliveira A.C. 2011. Flora Polínica da Reserva do Parque Estadual das Fontes do Ipiranga (São Paulo, Brasil). — Hoehnea. 38(4): 661–685.
- 33. Zhang Z., Lu A.M. 1995. Pollen morphology of Physalis (Solanaceae) in China and its systematic significance. — Cathaya. 7: 63–74.