Literature DB >> 26404423

Differential responses of two wetland graminoids to high ammonium at different pH values.

J M H van Diggelen1,2, A J P Smolders1,2, E J W Visser3, S Hicks1, J G M Roelofs2, L P M Lamers2.   

Abstract

Enhanced soil ammonium (NH4+) concentrations in wetlands often lead to graminoid dominance, but species composition is highly variable. Although NH4+ is readily taken up as a nutrient, several wetland species are known to be sensitive to high NH4+ concentrations or even suffer toxicity, particularly at low soil pH. More knowledge about differential graminoid responses to high NH4+ availability in relation to soil pH can help to better understand vegetation changes. The responses of two wetland graminoids, Juncus acutiflorus and Carex disticha, to high (2 mmol·l(-1) ) versus control (20 μmol·l(-1) ) NH4+ concentrations were tested in a controlled hydroponic set up, at two pH values (4 and 6). A high NH4+ concentration did not change total biomass for these species at either pH, but increased C allocation to shoots and increased P uptake, leading to K and Ca limitation, depending on pH treatment. More than 50% of N taken up by C. disticha was invested in N-rich amino acids with decreasing C:N ratio, but only 10% for J. acutiflorus. Although both species appeared to be well adapted to high NH4+ loadings in the short term, C. disticha showed higher classic detoxifying responses that are early warning indicators for decreased tolerance in the long term. In general, the efficient aboveground biomass allocation, P uptake and N detoxification explain the competitive strength of wetland graminoids at the expense of overall biodiversity at high NH4+ loading. In addition, differential responses to enhanced NH4+ affect interspecific competition among graminoids and lead to a shift in vegetation composition.
© 2015 German Botanical Society and The Royal Botanical Society of the Netherlands.

Entities:  

Keywords:  Amino acids; ammonium toxicity; carbon allocation; graminoid dominance; nitrogen availability; pH; stress responses; wetlands

Mesh:

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Year:  2015        PMID: 26404423     DOI: 10.1111/plb.12398

Source DB:  PubMed          Journal:  Plant Biol (Stuttg)        ISSN: 1435-8603            Impact factor:   3.081


  2 in total

1.  Linking Nitrogen Load to the Structure and Function of Wetland Soil and Rhizosphere Microbial Communities.

Authors:  Eric R Hester; Sarah F Harpenslager; Josepha M H van Diggelen; Leon L Lamers; Mike S M Jetten; Claudia Lüke; Sebastian Lücker; Cornelia U Welte
Journal:  mSystems       Date:  2018-01-30       Impact factor: 6.496

2.  Effects of High Ammonium Loading on Two Submersed Macrophytes of Different Growth Form Based on an 18-Month Pond Experiment.

Authors:  Qing Yu; Haijun Wang; Hongzhu Wang; Chao Xu; Miao Liu; Yu Ma; Yan Li; Shuonan Ma; David P Hamilton; Erik Jeppesen
Journal:  Front Plant Sci       Date:  2022-07-14       Impact factor: 6.627

  2 in total

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