IDEAS home Printed from https://ideas.repec.org/a/plo/pone00/0099871.html
   My bibliography  Save this article

Species Divergence and Phylogenetic Variation of Ecophysiological Traits in Lianas and Trees

Author

Listed:
  • Rodrigo S Rios
  • Cristian Salgado-Luarte
  • Ernesto Gianoli

Abstract

The climbing habit is an evolutionary key innovation in plants because it is associated with enhanced clade diversification. We tested whether patterns of species divergence and variation of three ecophysiological traits that are fundamental for plant adaptation to light environments (maximum photosynthetic rate [Amax], dark respiration rate [Rd], and specific leaf area [SLA]) are consistent with this key innovation. Using data reported from four tropical forests and three temperate forests, we compared phylogenetic distance among species as well as the evolutionary rate, phylogenetic distance and phylogenetic signal of those traits in lianas and trees. Estimates of evolutionary rates showed that Rd evolved faster in lianas, while SLA evolved faster in trees. The mean phylogenetic distance was 1.2 times greater among liana species than among tree species. Likewise, estimates of phylogenetic distance indicated that lianas were less related than by chance alone (phylogenetic evenness across 63 species), and trees were more related than expected by chance (phylogenetic clustering across 71 species). Lianas showed evenness for Rd, while trees showed phylogenetic clustering for this trait. In contrast, for SLA, lianas exhibited phylogenetic clustering and trees showed phylogenetic evenness. Lianas and trees showed patterns of ecophysiological trait variation among species that were independent of phylogenetic relatedness. We found support for the expected pattern of greater species divergence in lianas, but did not find consistent patterns regarding ecophysiological trait evolution and divergence. Rd followed the species-level pattern, i.e., greater divergence/evolution in lianas compared to trees, while the opposite occurred for SLA and no pattern was detected for Amax. Rd may have driven lianas' divergence across forest environments, and might contribute to diversification in climber clades.

Suggested Citation

  • Rodrigo S Rios & Cristian Salgado-Luarte & Ernesto Gianoli, 2014. "Species Divergence and Phylogenetic Variation of Ecophysiological Traits in Lianas and Trees," PLOS ONE, Public Library of Science, vol. 9(6), pages 1-10, June.
  • Handle: RePEc:plo:pone00:0099871
    DOI: 10.1371/journal.pone.0099871
    as

    Download full text from publisher

    File URL: https://journals.plos.org/plosone/article?id=10.1371/journal.pone.0099871
    Download Restriction: no

    File URL: https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0099871&type=printable
    Download Restriction: no

    File URL: https://libkey.io/10.1371/journal.pone.0099871?utm_source=ideas
    LibKey link: if access is restricted and if your library uses this service, LibKey will redirect you to where you can use your library subscription to access this item
    ---><---

    References listed on IDEAS

    as
    1. Mark Pagel, 1999. "Inferring the historical patterns of biological evolution," Nature, Nature, vol. 401(6756), pages 877-884, October.
    2. Oliver L. Phillips & Rodolfo Vásquez Martínez & Luzmila Arroyo & Timothy R. Baker & Timothy Killeen & Simon L. Lewis & Yadvinder Malhi & Abel Monteagudo Mendoza & David Neill & Percy Núñez Vargas & Mi, 2002. "Increasing dominance of large lianas in Amazonian forests," Nature, Nature, vol. 418(6899), pages 770-774, August.
    3. Robert Lanfear & Simon Y. W. Ho & T. Jonathan Davies & Angela T. Moles & Lonnie Aarssen & Nathan G. Swenson & Laura Warman & Amy E. Zanne & Andrew P. Allen, 2013. "Taller plants have lower rates of molecular evolution," Nature Communications, Nature, vol. 4(1), pages 1-7, October.
    Full references (including those not matched with items on IDEAS)

    Most related items

    These are the items that most often cite the same works as this one and are cited by the same works as this one.
    1. Aris Katzourakis & Gkikas Magiorkinis & Aaron G Lim & Sunetra Gupta & Robert Belshaw & Robert Gifford, 2014. "Larger Mammalian Body Size Leads to Lower Retroviral Activity," PLOS Pathogens, Public Library of Science, vol. 10(7), pages 1-11, July.
    2. Jonas Eberle & Renier Myburgh & Dirk Ahrens, 2014. "The Evolution of Morphospace in Phytophagous Scarab Chafers: No Competition - No Divergence?," PLOS ONE, Public Library of Science, vol. 9(5), pages 1-16, May.
    3. Mark C Mainwaring & Jenő Nagy & Mark E Hauber, 2021. "Sex-specific contributions to nest building in birds," Behavioral Ecology, International Society for Behavioral Ecology, vol. 32(6), pages 1075-1085.
    4. Ya-Mei Ding & Xiao-Xu Pang & Yu Cao & Wei-Ping Zhang & Susanne S. Renner & Da-Yong Zhang & Wei-Ning Bai, 2023. "Genome structure-based Juglandaceae phylogenies contradict alignment-based phylogenies and substitution rates vary with DNA repair genes," Nature Communications, Nature, vol. 14(1), pages 1-13, December.
    5. Annie Bissonnette & Mathias Franz & Oliver Schülke & Julia Ostner, 2014. "Socioecology, but not cognition, predicts male coalitions across primates," Behavioral Ecology, International Society for Behavioral Ecology, vol. 25(4), pages 794-801.
    6. Elspeth Kenny & Tim R. Birkhead & Jonathan P. Green, 2017. "Allopreening in birds is associated with parental cooperation over offspring care and stable pair bonds across years," Behavioral Ecology, International Society for Behavioral Ecology, vol. 28(4), pages 1142-1148.
    7. Fernandes, Heitor B.F. & Peñaherrera-Aguirre, Mateo & Woodley of Menie, Michael A. & Figueredo, Aurelio José, 2020. "Macroevolutionary patterns and selection modes for general intelligence (G) and for commonly used neuroanatomical volume measures in primates," Intelligence, Elsevier, vol. 80(C).
    8. L. M. Diele-Viegas & R. T. Figueroa & B. Vilela & C. F. D. Rocha, 2020. "Are reptiles toast? A worldwide evaluation of Lepidosauria vulnerability to climate change," Climatic Change, Springer, vol. 159(4), pages 581-599, April.
    9. Ricarda Laumeier & Martin Brändle & Mark-Oliver Rödel & Stefan Brunzel & Roland Brandl & Stefan Pinkert, 2023. "The global importance and interplay of colour-based protective and thermoregulatory functions in frogs," Nature Communications, Nature, vol. 14(1), pages 1-11, December.
    10. Anders Pape Møller & László Zsolt Garamszegi, 2012. "Between individual variation in risk-taking behavior and its life history consequences," Behavioral Ecology, International Society for Behavioral Ecology, vol. 23(4), pages 843-853.
    11. Brandon C. Wheeler & Clara J. Scarry & Andreas Koenig, 2013. "Rates of agonism among female primates: a cross-taxon perspective," Behavioral Ecology, International Society for Behavioral Ecology, vol. 24(6), pages 1369-1380.
    12. Aleksandar Stanojković & Svatopluk Skoupý & Hanna Johannesson & Petr Dvořák, 2024. "The global speciation continuum of the cyanobacterium Microcoleus," Nature Communications, Nature, vol. 15(1), pages 1-15, December.
    13. Alyson F Brokaw & Michael Smotherman, 2020. "Role of ecology in shaping external nasal morphology in bats and implications for olfactory tracking," PLOS ONE, Public Library of Science, vol. 15(1), pages 1-22, January.
    14. Jørgen S Søraker & Jonathan Wright & Fredrik Øglænd Hanslin & Michael Le Pepke, 2023. "The evolution of extra-pair paternity and paternal care in birds," Behavioral Ecology, International Society for Behavioral Ecology, vol. 34(5), pages 780-789.
    15. Cinar, Ozan & Nakagawa, Shinichi & Viechtbauer, Wolfgang, 2020. "Phylogenetic multilevel meta-analysis: A simulation study on the importance of modeling the phylogeny," EcoEvoRxiv su4zv, Center for Open Science.
    16. Chave, Jérôme & Norden, Natalia, 2007. "Changes of species diversity in a simulated fragmented neutral landscape," Ecological Modelling, Elsevier, vol. 207(1), pages 3-10.
    17. Vall-llosera, Miquel & Cassey, Phillip, 2017. "Physical attractiveness, constraints to the trade and handling requirements drive the variation in species availability in the Australian cagebird trade," Ecological Economics, Elsevier, vol. 131(C), pages 407-413.
    18. Woodley of Menie, Michael A. & Peñaherrera-Aguirre, Mateo & Jurgensen, JohnMichael, 2022. "Using macroevolutionary patterns to distinguish primary from secondary cognitive modules in primate cross-species performance data on five cognitive ability measures," Intelligence, Elsevier, vol. 92(C).
    19. Daniel S. Maynard & Lalasia Bialic-Murphy & Constantin M. Zohner & Colin Averill & Johan Hoogen & Haozhi Ma & Lidong Mo & Gabriel Reuben Smith & Alicia T. R. Acosta & Isabelle Aubin & Erika Berenguer , 2022. "Global relationships in tree functional traits," Nature Communications, Nature, vol. 13(1), pages 1-12, December.
    20. Eva Maria Griebeler & Jan Werner, 2018. "Formal comment on: Myhrvold (2016) Dinosaur metabolism and the allometry of maximum growth rate. PLoS ONE; 11(11): e0163205," PLOS ONE, Public Library of Science, vol. 13(2), pages 1-18, February.

    More about this item

    Statistics

    Access and download statistics

    Corrections

    All material on this site has been provided by the respective publishers and authors. You can help correct errors and omissions. When requesting a correction, please mention this item's handle: RePEc:plo:pone00:0099871. See general information about how to correct material in RePEc.

    If you have authored this item and are not yet registered with RePEc, we encourage you to do it here. This allows to link your profile to this item. It also allows you to accept potential citations to this item that we are uncertain about.

    If CitEc recognized a bibliographic reference but did not link an item in RePEc to it, you can help with this form .

    If you know of missing items citing this one, you can help us creating those links by adding the relevant references in the same way as above, for each refering item. If you are a registered author of this item, you may also want to check the "citations" tab in your RePEc Author Service profile, as there may be some citations waiting for confirmation.

    For technical questions regarding this item, or to correct its authors, title, abstract, bibliographic or download information, contact: plosone (email available below). General contact details of provider: https://journals.plos.org/plosone/ .

    Please note that corrections may take a couple of weeks to filter through the various RePEc services.

    IDEAS is a RePEc service. RePEc uses bibliographic data supplied by the respective publishers.