Literature DB >> 34292602

Structural diversity and tree density drives variation in the biodiversity-ecosystem function relationship of woodlands and savannas.

John L Godlee1, Casey M Ryan1, David Bauman2,3, Samuel J Bowers1, Joao M B Carreiras4, Antonio Valter Chisingui5, Joris P G M Cromsigt6,7,8, Dave J Druce9,10, Manfred Finckh11, Francisco Maiato Gonçalves5, Ricardo M Holdo12, Steve Makungwa13, Iain M McNicol1, Edward T A Mitchard1, Anderson Muchawona14, Rasmus Revermann11,15, Natasha Sofia Ribeiro16, Abel Siampale17, Stephen Syampungani18, José João Tchamba5, Hemant G Tripathi19, Johannes Wallenfang11, Mariska Te Beest20,21,22, Mathew Williams1, Kyle G Dexter1,23.   

Abstract

Positive biodiversity-ecosystem function relationships (BEFRs) have been widely documented, but it is unclear if BEFRs should be expected in disturbance-driven systems. Disturbance may limit competition and niche differentiation, which are frequently posited to underlie BEFRs. We provide the first exploration of the relationship between tree species diversity and biomass, one measure of ecosystem function, across southern African woodlands and savannas, an ecological system rife with disturbance from fire, herbivores and humans. We used >1000 vegetation plots distributed across 10 southern African countries, and structural equation modelling, to determine the relationship between tree species diversity and aboveground woody biomass, accounting for interacting effects of resource availability, disturbance by fire, tree stem density and vegetation type. We found positive effects of tree species diversity on aboveground biomass, operating via increased structural diversity. The observed BEFR was highly dependent on organismal density, with a minimum threshold of c. 180 mature stems ha-1 . We found that water availability mainly affects biomass indirectly, via increasing species diversity. The study underlines the close association between tree diversity, ecosystem structure, environment and function in highly disturbed savannas and woodlands. We suggest that tree diversity is an under-appreciated determinant of wooded ecosystem structure and function. This article is protected by copyright. All rights reserved.

Entities:  

Keywords:  biodiversity; biomass; ecosystem function; forest structure; miombo; savanna; structural equation modelling; woodland

Year:  2021        PMID: 34292602     DOI: 10.1111/nph.17639

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  1 in total

1.  Evaluating the productivity of ancient Pu'er tea trees (Camellia sinensis var. assamica): a multivariate modeling approach.

Authors:  Shuqiao Zhang; Wendou Liu; Xinmeng Cheng; Zizhi Wang; Fengjun Yuan; Wengui Wu; Shengxi Liao
Journal:  Plant Methods       Date:  2022-07-27       Impact factor: 5.827

  1 in total

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