Ancient noeggerathialean reveals the seed plant sister group diversified alongside the primary seed plant radiation

Author:

Wang JunORCID,Hilton JasonORCID,Pfefferkorn Hermann W.ORCID,Wang ShijunORCID,Zhang YiORCID,Bek JiriORCID,Pšenička JosefORCID,Seyfullah Leyla J.ORCID,Dilcher DavidORCID

Abstract

Noeggerathiales are enigmatic plants that existed during Carboniferous and Permian times, ∼323 to 252 Mya. Although their morphology, diversity, and distribution are well known, their systematic affinity remained enigmatic because their anatomy was unknown. Here, we report from a 298-My-old volcanic ash deposit, an in situ, complete, anatomically preserved noeggerathialean. The plant resolves the group’s affinity and places it in a key evolutionary position within the seed plant sister group. Paratingia wuhaia sp. nov. is a small tree producing gymnospermous wood with a crown of pinnate, compound megaphyllous leaves and fertile shoots each with Ω-shaped vascular bundles. The heterosporous (containing both microspores and megaspores), bisporangiate fertile shoots appear cylindrical and cone-like, but their bilateral vasculature demonstrates that they are complex, three-dimensional sporophylls, representing leaf homologs that are unique to Noeggerathiales. The combination of heterospory and gymnospermous wood confirms that Paratingia, and thus the Noeggerathiales, are progymnosperms. Progymnosperms constitute the seed plant stem group, and Paratingia extends their range 60 My, to the end of the Permian. Cladistic analysis resolves the position of the Noeggerathiales as the most derived members of a heterosporous progymnosperm clade that are the seed plant sister group, altering our understanding of the relationships within the seed plant stem lineage and the transition from pteridophytic spore-based reproduction to the seed. Permian Noeggerathiales show that the heterosporous progymnosperm sister group to seed plants diversified alongside the primary radiation of seed plants for ∼110 My, independently evolving sophisticated cone-like fertile organs from modified leaves.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

Reference37 articles.

1. HETEROSPORY: THE MOST ITERATIVE KEY INNOVATION IN THE EVOLUTIONARY HISTORY OF THE PLANT KINGDOM

2. EARLY EVOLUTION OF LAND PLANTS: Phylogeny, Physiology, and Ecology of the Primary Terrestrial Radiation

3. T. N. Taylor , E. L. Taylor , M. Krings , Palaeobotany: The Biology and Evolution of Fossil Plants (Academic Press, 2007).

4. C. B. Beck , D. C. Wight , “Progymnosperms” in Origin and Evolution of Gymnosperms, C. Beck , Ed. (Columbia University Press, 1998), pp. 1–84.

5. Cecropsis luculentum gen. et spec. nov.: Evidence for heterosporous progymnosperms in the Upper Pennsylvanian of North America;Stubblefield;Am. J. Bot.,1989

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