Literature DB >> 29332147

Phosphorus allocation and phosphatase activity in grasses with different growth rates.

Leandro Bittencourt de Oliveira1, Anderson Cesar Ramos Marques2, Fernando Luiz Ferreira de Quadros1, Júlia Gomes Farias3, Rogério Piccin4, Gustavo Brunetto4, Fernando Teixeira Nicoloso3.   

Abstract

Different growth rates of grasses from South American natural grasslands are adaptations to soils of low fertility. Grasses with fast growth rate are species with an accumulation of nutrients in soluble forms, with a high metabolic rate. This work aimed to study whether grasses with different growth rates have different phosphorus (P) uptake and efficiency of P use with high and low P availability in soil, as well as whether phosphatase activity is related to the species growth rate and variations in P biochemical forms in the tissues. Three native grasses (Axonopus affinis, Paspalum notatum, and Andropogon lateralis) were grown in pots with soil. Along plant growth, biomass production and its structural components were measured, as well as leaf acid phosphatase activity and leaf P chemical fractions. At 40 days of growth, leaf acid phosphatase activity declined by about 20-30% with an increase of P availability in soil for A. affinis and P. notatum, respectively. Under both soil P levels, P. notatum showed the highest plant total biomass, leaf dry weight and highest P use efficiency. A. affinis presented the higher P uptake efficiency and soluble organic P concentration in the leaf tissues. A. lateralis showed P-Lipid concentration 1.6 and 1.3 times higher than A. affinis and P. notatum, respectively. In conclusion, acid phosphatase activity in grass of higher growth rate is related to higher remobilization of P due to higher demand, as in A. affinis, and higher growth rates are associated with higher P uptake efficiency.

Entities:  

Keywords:  Leaf traits; Nutrient use efficiency; P biochemical form; P remobilization; South American grasslands

Mesh:

Substances:

Year:  2018        PMID: 29332147     DOI: 10.1007/s00442-018-4059-9

Source DB:  PubMed          Journal:  Oecologia        ISSN: 0029-8549            Impact factor:   3.225


  9 in total

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Review 2.  Opportunities for improving phosphorus-use efficiency in crop plants.

Authors:  Erik J Veneklaas; Hans Lambers; Jason Bragg; Patrick M Finnegan; Catherine E Lovelock; William C Plaxton; Charles A Price; Wolf-Rüdiger Scheible; Michael W Shane; Philip J White; John A Raven
Journal:  New Phytol       Date:  2012-06-12       Impact factor: 10.151

3.  A method for the determination of desoxyribonucleic acid, ribonucleic acid, and phosphoproteins in animal tissues.

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Review 4.  Root structure and functioning for efficient acquisition of phosphorus: Matching morphological and physiological traits.

Authors:  Hans Lambers; Michael W Shane; Michael D Cramer; Stuart J Pearse; Erik J Veneklaas
Journal:  Ann Bot       Date:  2006-06-12       Impact factor: 4.357

5.  Assessing the effects of land-use change on plant traits, communities and ecosystem functioning in grasslands: a standardized methodology and lessons from an application to 11 European sites.

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Review 7.  Phosphorus-mobilization ecosystem engineering: the roles of cluster roots and carboxylate exudation in young P-limited ecosystems.

Authors:  Hans Lambers; John G Bishop; Stephen D Hopper; Etienne Laliberté; Alejandra Zúñiga-Feest
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Review 8.  Phosphate starvation signaling: a threesome controls systemic P(i) homeostasis.

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Journal:  Curr Opin Plant Biol       Date:  2008-07-07       Impact factor: 7.834

9.  Banksia species (Proteaceae) from severely phosphorus-impoverished soils exhibit extreme efficiency in the use and re-mobilization of phosphorus.

Authors:  Matthew D Denton; Erik J Veneklaas; Florian M Freimoser; Hans Lambers
Journal:  Plant Cell Environ       Date:  2007-10-17       Impact factor: 7.228

  9 in total
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  2 in total

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