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II.—On the Structure of Calymmatotheca kidstoni Calder (emended) and Genomosperma latens gen. et sp. nov. from the Calciferous Sandstone Series of Berwickshire*

Published online by Cambridge University Press:  30 May 2017

Albert G. Long*
Affiliation:
Berwickshire High School, Duns

Synopsis

The Lower Carboniferous fossil Calymmatotheca kidstoni Calder is shown to be a simple seed and is redescribed under the new name Genomosperma kidstoni. A second species G. latens is also described. Genomosperma gen. nov. is of interest in possessing a free nucellus with a lagenostome and short salpinx. The nucellus is surrounded by an integument of about eight lobes which are free from one another and from the nucellus from near the base of the seed. The vascular details of t h e seeds have been studied and in each species pollen has been observed in the pollen chamber.

Genomosperma is compared with various Pteridosperm seeds.

Type
Research Article
Copyright
Copyright © Royal Society of Edinburgh 1960

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Footnotes

*

This paper was assisted in publication by a grant from the Carnegie Trust for the Universities of Scotland. Trans. Roy. Soc. Edin., Vol. LXIV, No. 2, 1958–59

References

References to Literature

Beck, C. B., 1958. “ Levicaulis arranensis, gen. et sp. nov., A Lycopsid Axis from the Lower Carboniferous of Scotland”, Trans. Roy. Soc. Edin., 63, 445457.Google Scholar
Calder, M. G., 1934. “Notes on the Kidston Collection of Fossil Plant Slides: No. VI, On the Structure of Two Lepidodendroid Stems from the Carboniferous Flora of Berwickshire”, Trans. Roy. Soc. Edin., 58, 118124.Google Scholar
Calder, M. G., 1938. “On some Undescribed Species from the Lower Carboniferous Flora of Berwickshire; together with a note on the Genus Stenomyelon Kidston”, Trans. Roy. Soc. Edin., 59, 309331.Google Scholar
Jongmans, W. J., 1930. “On the fructification of Sphenopteris hœninghausi and its Relations with Lyginodendron oldhamium and Crossotheca schatzlarensis ”, Jversl. Geol. Bur. Heerlen, 1929, 7781.Google Scholar
Joy, K. W., Willis, A. J., and Lacey, W. S., 1956. “A rapid cellulose peel technique in palæobotany”, Ann. Bot., 20, 635637.Google Scholar
Kidston, R., 1901. “Notes on Carboniferous Plants from Berwickshire”, Summ. Progr. Geol. Surv. Lond., 1900, 174175.Google Scholar
Kidston, R., 1902. “Report on Fossil Plants from the Calciferous Sandstones of the Berwickshire Border”, Summ. Progr. Geol. Surv. Lond., 1901, 179180.Google Scholar
Oliver, F. W., and Scott, D. H., 1904. “On the Structure of the Palæozoic Seed Lagenostoma lomaxi, etc.”, Phil. Trans., B, 197, 193247.Google Scholar
Stevenson, W., 1845. “On the Geology of Cockburnlaw and the Adjoining District of Berwickshire”, Trans. Roy. Soc. Edin., 16, 3346.Google Scholar
Stue, D., 1877. Die Culm-Flora. Heft II. Wien.Google Scholar
Zeiller, M. R., 1883. “Fructifications de Fougeres du Terrain Houiller”, Ann. Sci. Nat.(Bot.), 16, 182 (footnote).Google Scholar