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Nitrogen isotopes reveal independent origins of N2-fixing symbiosis in extant cycad lineages.

Publication ,  Journal Article
Kipp, MA; Stüeken, EE; Strömberg, CAE; Brightly, WH; Arbour, VM; Erdei, B; Hill, RS; Johnson, KR; Kvaček, J; McElwain, JC; Miller, IM ...
Published in: Nature ecology & evolution
January 2024

Cycads are ancient seed plants (gymnosperms) that emerged by the early Permian. Although they were common understory flora and food for dinosaurs in the Mesozoic, their abundance declined markedly in the Cenozoic. Extant cycads persist in restricted populations in tropical and subtropical habitats and, with their conserved morphology, are often called 'living fossils.' All surviving taxa receive nitrogen from symbiotic N2-fixing cyanobacteria living in modified roots, suggesting an ancestral origin of this symbiosis. However, such an ancient acquisition is discordant with the abundance of cycads in Mesozoic fossil assemblages, as modern N2-fixing symbioses typically occur only in nutrient-poor habitats where advantageous for survival. Here, we use foliar nitrogen isotope ratios-a proxy for N2 fixation in modern plants-to probe the antiquity of the cycad-cyanobacterial symbiosis. We find that fossilized cycad leaves from two Cenozoic representatives of extant genera have nitrogen isotopic compositions consistent with microbial N2 fixation. In contrast, all extinct cycad genera have nitrogen isotope ratios that are indistinguishable from co-existing non-cycad plants and generally inconsistent with microbial N2 fixation, pointing to nitrogen assimilation from soils and not through symbiosis. This pattern indicates that, rather than being ancestral within cycads, N2-fixing symbiosis arose independently in the lineages leading to living cycads during or after the Jurassic. The preferential survival of these lineages may therefore reflect the effects of competition with angiosperms and Cenozoic climatic change.

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Published In

Nature ecology & evolution

DOI

EISSN

2397-334X

ISSN

2397-334X

Publication Date

January 2024

Volume

8

Issue

1

Start / End Page

57 / 69

Related Subject Headings

  • Symbiosis
  • Nitrogen Isotopes
  • Nitrogen
  • Fossils
  • Cycadopsida
  • Cyanobacteria
  • 4104 Environmental management
  • 3104 Evolutionary biology
  • 3103 Ecology
 

Citation

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Kipp, M. A., Stüeken, E. E., Strömberg, C. A. E., Brightly, W. H., Arbour, V. M., Erdei, B., … Buick, R. (2024). Nitrogen isotopes reveal independent origins of N2-fixing symbiosis in extant cycad lineages. Nature Ecology & Evolution, 8(1), 57–69. https://doi.org/10.1038/s41559-023-02251-1
Kipp, Michael A., Eva E. Stüeken, Caroline A. E. Strömberg, William H. Brightly, Victoria M. Arbour, Boglárka Erdei, Robert S. Hill, et al. “Nitrogen isotopes reveal independent origins of N2-fixing symbiosis in extant cycad lineages.Nature Ecology & Evolution 8, no. 1 (January 2024): 57–69. https://doi.org/10.1038/s41559-023-02251-1.
Kipp MA, Stüeken EE, Strömberg CAE, Brightly WH, Arbour VM, Erdei B, et al. Nitrogen isotopes reveal independent origins of N2-fixing symbiosis in extant cycad lineages. Nature ecology & evolution. 2024 Jan;8(1):57–69.
Kipp, Michael A., et al. “Nitrogen isotopes reveal independent origins of N2-fixing symbiosis in extant cycad lineages.Nature Ecology & Evolution, vol. 8, no. 1, Jan. 2024, pp. 57–69. Epmc, doi:10.1038/s41559-023-02251-1.
Kipp MA, Stüeken EE, Strömberg CAE, Brightly WH, Arbour VM, Erdei B, Hill RS, Johnson KR, Kvaček J, McElwain JC, Miller IM, Slodownik M, Vajda V, Buick R. Nitrogen isotopes reveal independent origins of N2-fixing symbiosis in extant cycad lineages. Nature ecology & evolution. 2024 Jan;8(1):57–69.

Published In

Nature ecology & evolution

DOI

EISSN

2397-334X

ISSN

2397-334X

Publication Date

January 2024

Volume

8

Issue

1

Start / End Page

57 / 69

Related Subject Headings

  • Symbiosis
  • Nitrogen Isotopes
  • Nitrogen
  • Fossils
  • Cycadopsida
  • Cyanobacteria
  • 4104 Environmental management
  • 3104 Evolutionary biology
  • 3103 Ecology