Literature DB >> 29698583

Tree leaf trade-offs are stronger for sub-canopy trees: leaf traits reveal little about growth rates in canopy trees.

Jarrah Wills1,2, John Herbohn3,4, Jing Hu3, Shawkat Sohel3, Jack Baynes4, Jennifer Firn4,5.   

Abstract

Can morphological plant functional traits predict demographic rates (e.g., growth) within plant communities as diverse as tropical forests? This is one of the most important next-step questions in trait-based ecology and particularly for global reforestation efforts. Due to the diversity of tropical tree species and their longevity, it is difficult to predict their performance prior to reforestation efforts. In this study, we investigate if simple leaf traits are predictors of the more complex ecological process of plant growth in regenerating selectively logged natural forest within the Wet Tropics (WTs) bioregion of Australia. This study used a rich historical data set to quantify tree growth within plots located at Danbulla National Park and State Forest on the Atherton Tableland. Leaf traits were collected from trees that have exhibited fast or slow growth over the last ~50 yr of measurement. Leaf traits were found to be poor predictors of tree growth for trees that have entered the canopy; however, for sub-canopy trees, leaf traits had a stronger association with growth rates. Leaf phosphorus concentrations were the strongest predictor of Periodic Annual Increment (PAI) for trees growing within the sub-canopy, with trees with higher leaf phosphorus levels showing a higher PAI. Sub-canopy tree leaves also exhibited stronger trade-offs between leaf traits and adhere to theoretical predictions more so than for canopy trees. We suggest that, in order for leaf traits to be more applicable to reforestation, size dependence of traits and growth relationships need to be more carefully considered, particularly when reforestation practitioners assign mean trait values to tropical tree species from multiple canopy strata.
© 2018 by the Ecological Society of America.

Entities:  

Keywords:  Wet Tropics; functional trait ecology; growth rates; leaf functional traits; permanent sample plots; specific leaf area

Mesh:

Year:  2018        PMID: 29698583     DOI: 10.1002/eap.1715

Source DB:  PubMed          Journal:  Ecol Appl        ISSN: 1051-0761            Impact factor:   4.657


  2 in total

1.  Leaf:wood allometry and functional traits together explain substantial growth rate variation in rainforest trees.

Authors:  E F Gray; I J Wright; D S Falster; A S D Eller; C E R Lehmann; M G Bradford; L A Cernusak
Journal:  AoB Plants       Date:  2019-04-16       Impact factor: 3.276

2.  AusTraits, a curated plant trait database for the Australian flora.

Authors:  Daniel Falster; Rachael Gallagher; Elizabeth H Wenk; Ian J Wright; Dony Indiarto; Samuel C Andrew; Caitlan Baxter; James Lawson; Stuart Allen; Anne Fuchs; Anna Monro; Fonti Kar; Mark A Adams; Collin W Ahrens; Matthew Alfonzetti; Tara Angevin; Deborah M G Apgaua; Stefan Arndt; Owen K Atkin; Joe Atkinson; Tony Auld; Andrew Baker; Maria von Balthazar; Anthony Bean; Chris J Blackman; Keith Bloomfield; David M J S Bowman; Jason Bragg; Timothy J Brodribb; Genevieve Buckton; Geoff Burrows; Elizabeth Caldwell; James Camac; Raymond Carpenter; Jane A Catford; Gregory R Cawthray; Lucas A Cernusak; Gregory Chandler; Alex R Chapman; David Cheal; Alexander W Cheesman; Si-Chong Chen; Brendan Choat; Brook Clinton; Peta L Clode; Helen Coleman; William K Cornwell; Meredith Cosgrove; Michael Crisp; Erika Cross; Kristine Y Crous; Saul Cunningham; Timothy Curran; Ellen Curtis; Matthew I Daws; Jane L DeGabriel; Matthew D Denton; Ning Dong; Pengzhen Du; Honglang Duan; David H Duncan; Richard P Duncan; Marco Duretto; John M Dwyer; Cheryl Edwards; Manuel Esperon-Rodriguez; John R Evans; Susan E Everingham; Claire Farrell; Jennifer Firn; Carlos Roberto Fonseca; Ben J French; Doug Frood; Jennifer L Funk; Sonya R Geange; Oula Ghannoum; Sean M Gleason; Carl R Gosper; Emma Gray; Philip K Groom; Saskia Grootemaat; Caroline Gross; Greg Guerin; Lydia Guja; Amy K Hahs; Matthew Tom Harrison; Patrick E Hayes; Martin Henery; Dieter Hochuli; Jocelyn Howell; Guomin Huang; Lesley Hughes; John Huisman; Jugoslav Ilic; Ashika Jagdish; Daniel Jin; Gregory Jordan; Enrique Jurado; John Kanowski; Sabine Kasel; Jürgen Kellermann; Belinda Kenny; Michele Kohout; Robert M Kooyman; Martyna M Kotowska; Hao Ran Lai; Etienne Laliberté; Hans Lambers; Byron B Lamont; Robert Lanfear; Frank van Langevelde; Daniel C Laughlin; Bree-Anne Laugier-Kitchener; Susan Laurance; Caroline E R Lehmann; Andrea Leigh; Michelle R Leishman; Tanja Lenz; Brendan Lepschi; James D Lewis; Felix Lim; Udayangani Liu; Janice Lord; Christopher H Lusk; Cate Macinnis-Ng; Hannah McPherson; Susana Magallón; Anthony Manea; Andrea López-Martinez; Margaret Mayfield; James K McCarthy; Trevor Meers; Marlien van der Merwe; Daniel J Metcalfe; Per Milberg; Karel Mokany; Angela T Moles; Ben D Moore; Nicholas Moore; John W Morgan; William Morris; Annette Muir; Samantha Munroe; Áine Nicholson; Dean Nicolle; Adrienne B Nicotra; Ülo Niinemets; Tom North; Andrew O'Reilly-Nugent; Odhran S O'Sullivan; Brad Oberle; Yusuke Onoda; Mark K J Ooi; Colin P Osborne; Grazyna Paczkowska; Burak Pekin; Caio Guilherme Pereira; Catherine Pickering; Melinda Pickup; Laura J Pollock; Pieter Poot; Jeff R Powell; Sally A Power; Iain Colin Prentice; Lynda Prior; Suzanne M Prober; Jennifer Read; Victoria Reynolds; Anna E Richards; Ben Richardson; Michael L Roderick; Julieta A Rosell; Maurizio Rossetto; Barbara Rye; Paul D Rymer; Michael A Sams; Gordon Sanson; Hervé Sauquet; Susanne Schmidt; Jürg Schönenberger; Ernst-Detlef Schulze; Kerrie Sendall; Steve Sinclair; Benjamin Smith; Renee Smith; Fiona Soper; Ben Sparrow; Rachel J Standish; Timothy L Staples; Ruby Stephens; Christopher Szota; Guy Taseski; Elizabeth Tasker; Freya Thomas; David T Tissue; Mark G Tjoelker; David Yue Phin Tng; Félix de Tombeur; Kyle Tomlinson; Neil C Turner; Erik J Veneklaas; Susanna Venn; Peter Vesk; Carolyn Vlasveld; Maria S Vorontsova; Charles A Warren; Nigel Warwick; Lasantha K Weerasinghe; Jessie Wells; Mark Westoby; Matthew White; Nicholas S G Williams; Jarrah Wills; Peter G Wilson; Colin Yates; Amy E Zanne; Graham Zemunik; Kasia Ziemińska
Journal:  Sci Data       Date:  2021-09-30       Impact factor: 6.444

  2 in total

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