Differential responses to allelopathic compounds released by the invasive Acacia dealbata Link (Mimosaceae) indicate stimulation of its own seed
Paula Lorenzo A , Eva Pazos-Malvido A , Manuel J. Reigosa A and Luís González A BA Departamento de Bioloxía Vexetal e Ciencia do Solo, Universidade de Vigo, 36310 Vigo, Spain.
B Corresponding author. Email: luis@uvigo.es
Australian Journal of Botany 58(7) 546-553 https://doi.org/10.1071/BT10094
Submitted: 20 April 2010 Accepted: 25 August 2010 Published: 27 October 2010
Abstract
Invasion by exotic species constitutes a major threat to natural ecosystems. One of the most invasive species of current concern in Europe is Acacia dealbata Link (Mimosaceae), the expansion of which is reducing populations of native species, and hence biodiversity. To investigate the potential involvement of allelopathic mechanisms in this process, we evaluated the germination and seedling growth performance of Lactuca sativa L. (Compositae), Zea mays L. (Gramineae), Dactylis glomerata L. (Gramineae), Arabidopsis thaliana (L.) Heynh. (Cruciferae) and A. dealbata, in the presence of mixtures of throughfall and litter leachate and of aqueous soil extracts collected under A. dealbata at different times of the year. Each test species responded differently to the solutions being assayed suggesting that A. dealbata allelochemicals may affect a variety of physiological growth parameters. In most cases the observed effects were stimulatory rather than inhibitory, which may have long-term deleterious effects on native plant populations since premature growth during periods of poor resources can be detrimental. Interestingly, increased radical growth of A. dealbata was detected with either extract suggesting a positive autoalleloapthy effect.
Acknowledgements
We would like to particularly thank the contribution of two anonymous reviewers who, with their comments, have enriched and improved the original manuscript. We thank the Xunta de Galicia for support of this work under projects PGIDIT05RAG31001PR and 08MDS033310PR and for a postgraduate grant to Paula Lorenzo, and the Spanish Ministry of Education and Science for a postgraduate grant to Eva Pazos-Malvido.
Bais HP,
Vepachedu R,
Gilroy S,
Callaway RM, Vivanco JM
(2003) Allelopathy and exotic plant invasion: from molecules and genes to species interactions. Science 301, 1377–1380.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
PubMed |
[Verified 28 August 2010]
Pennacchio M,
Jefferson LV, Havens K
(2005)
Arabidopsis thaliana: a new test species for phytotoxic bioassays. Journal of Chemical Ecology 31, 1877–1885.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
PubMed |
Pohlman CL,
Nicotra AB, Murray BR
(2005) Geographic range size, seedling ecophysiology and phenotypic plasticity in Australian Acacia species. Journal of Biogeography 32, 341–351.
| Crossref | GoogleScholarGoogle Scholar |
Ravotnov TA
(1974) On the allelopathy in the Phytocenoses. Izo Akad Nauk SSR Ser Biol 6, 811–820.
Reigosa MJ, Pazos-Malvido E
(2007) Phytotoxic effects of 21 plant secondary metabolites on Arabidopsis thaliana germination and root growth. Journal of Chemical Ecology 33, 1456–1466.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
PubMed |
Reigosa MJ,
Sánchez-Moreiras AM, González L
(1999a) Ecophysiological approach in allelopathy. Critical Reviews in Plant Sciences 18, 577–608.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
Reigosa MJ,
Souto XC, Gonzalez L
(1999b) Effect of phenolic compounds on the germination of six weeds species. Plant Growth Regulation 28, 83–88.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
Sheppard AW,
Shaw RH, Sforza R
(2006) Top 20 environmental weeds for classical biological control in Europe: a review of opportunities, regulations and other barriers to adoption. Weed Research 46, 93–117.
| Crossref | GoogleScholarGoogle Scholar |
Souto XC,
Chiapusio G, Pellissier F
(2000) Relationship between phenolics and soil microorganisms in spruce forest: singnificance for natural regeneration. Journal of Chemical Ecology 26, 2015–2023.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
Souto XC,
Bolano JC,
Gonzalez L, Reigosa MJ
(2001) Allelopathic effects of tree species on some soil microbial populations and herbaceous plants. Biologia Plantarum 44, 269–275.
| Crossref | GoogleScholarGoogle Scholar |
Vivanco JM,
Bais HP,
Stermitz FR,
Thelen GC, Callaway RM
(2004) Biogeographical variation in community response to root allelochemistry: novel weapons and exotic invasion. Ecology Letters 7, 285–292.
| Crossref | GoogleScholarGoogle Scholar |
Weir TL,
Park S-W, Vivanco JM
(2004) Biochemical and physiological mechanisms mediated by allelochemicals. Current Opinion in Plant Biology 7, 472–479.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
PubMed |