Cluster root-bearing Proteaceae species show a competitive advantage over non-cluster root-bearing species.
Embothrium coccineum
Gevuina avellana
Nothofagus
Competition
Patagonia
facilitation
leaf Mn
plant community diversity
plant–plant interactions
Journal
Annals of botany
ISSN: 1095-8290
Titre abrégé: Ann Bot
Pays: England
ID NLM: 0372347
Informations de publication
Date de publication:
27 11 2019
27 11 2019
Historique:
received:
10
05
2019
accepted:
22
07
2019
pubmed:
25
7
2019
medline:
19
3
2020
entrez:
24
7
2019
Statut:
ppublish
Résumé
Cluster roots (CRs) constitute a special root adaptation that enables plants to take up nutrients, especially phosphorus (P), from soils with low nutrient availability, including recent volcanic deposits. It is unclear, however, how CR species interact with non-cluster root-bearing (NCR) species, and how substrates' fertility modulates potential interactions. We experimentally assessed the net interaction between CR and NCR species using two substrates of contrasting fertility: nutrient-rich nursery mix and tephra (low P availability). We planted seedlings of two southern South American (SSA) Proteaceae, CR species and two NCR Nothofagus species in pairs (conspecifics and heterospecifics) and as singles. We analysed the effect of seedling neighbours on survival, growth performance (e.g. total biomass and leaf area) and leaf and substrate nutrient concentrations (including manganese, a proxy for P-acquisition efficiency through CR activity) using the relative interaction index. After three growing seasons, we found that (1) Proteaceae species had fewer CRs and lower CR biomass and grew less in the tephra than in the nursery substrate; (2) Nothofagus species did not improve their survival and growth in the presence of Proteaceae species in any substrate; (3) contrary to Nothofagus, Proteaceae species improved their growth more when planted with any neighbour (including conspecifics) than when planted alone, which was accompanied by a significant accretion of leaf P; and (4) the presence of a neighbour increased the final nitrogen and P concentrations in the nursery substrate, regardless of species identity. CRs provide Proteaceae a competitive advantage over NCR species at the seedling stage, which may have important consequences for species coexistence and community structuring. The investigated SSA Proteaceae, which have not evolved in nutrient-impoverished soils, as have their relatives in south-western Australia and South Africa, improve their growth when cultivated in pairs, especially in nutrient-rich substrates.
Sections du résumé
BACKGROUND AND AIMS
Cluster roots (CRs) constitute a special root adaptation that enables plants to take up nutrients, especially phosphorus (P), from soils with low nutrient availability, including recent volcanic deposits. It is unclear, however, how CR species interact with non-cluster root-bearing (NCR) species, and how substrates' fertility modulates potential interactions.
METHODS
We experimentally assessed the net interaction between CR and NCR species using two substrates of contrasting fertility: nutrient-rich nursery mix and tephra (low P availability). We planted seedlings of two southern South American (SSA) Proteaceae, CR species and two NCR Nothofagus species in pairs (conspecifics and heterospecifics) and as singles. We analysed the effect of seedling neighbours on survival, growth performance (e.g. total biomass and leaf area) and leaf and substrate nutrient concentrations (including manganese, a proxy for P-acquisition efficiency through CR activity) using the relative interaction index.
KEY RESULTS
After three growing seasons, we found that (1) Proteaceae species had fewer CRs and lower CR biomass and grew less in the tephra than in the nursery substrate; (2) Nothofagus species did not improve their survival and growth in the presence of Proteaceae species in any substrate; (3) contrary to Nothofagus, Proteaceae species improved their growth more when planted with any neighbour (including conspecifics) than when planted alone, which was accompanied by a significant accretion of leaf P; and (4) the presence of a neighbour increased the final nitrogen and P concentrations in the nursery substrate, regardless of species identity.
CONCLUSIONS
CRs provide Proteaceae a competitive advantage over NCR species at the seedling stage, which may have important consequences for species coexistence and community structuring. The investigated SSA Proteaceae, which have not evolved in nutrient-impoverished soils, as have their relatives in south-western Australia and South Africa, improve their growth when cultivated in pairs, especially in nutrient-rich substrates.
Identifiants
pubmed: 31332426
pii: 5537069
doi: 10.1093/aob/mcz128
pmc: PMC7145645
doi:
Substances chimiques
Soil
0
Phosphorus
27YLU75U4W
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
1121-1131Informations de copyright
© The Author(s) 2019. Published by Oxford University Press on behalf of the Annals of Botany Company. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.
Références
Oecologia. 2014 Jan;174(1):23-31
pubmed: 23934064
Oecologia. 2007 Mar;151(2):190-205
pubmed: 17048010
Biol Rev Camb Philos Soc. 2013 Aug;88(3):701-44
pubmed: 23506298
Am J Bot. 2015 Feb;102(2):208-16
pubmed: 25667073
Ecol Lett. 2009 Dec;12(12):1357-66
pubmed: 19807773
New Phytol. 2014 Jan;201(2):403-16
pubmed: 24102266
Ann Bot. 2016 Jan;117(1):67-77
pubmed: 26420205
Trends Ecol Evol. 2019 Mar;34(3):193-199
pubmed: 30447938
Am Nat. 2011 Jul;178(1):88-97
pubmed: 21670580
Science. 2016 Apr 15;352(6283):342-4
pubmed: 27081070
Am J Bot. 2013 Dec;100(12):2328-38
pubmed: 24249789
Ann Bot. 2012 Jul;110(2):329-48
pubmed: 22700940
Trends Plant Sci. 2015 Feb;20(2):83-90
pubmed: 25466977