Several Italian and Chinese temperate lakes with soluble reactive phosphorus concentrations <0.015 mg L-1 were studied to estimate nitrogen and phosphorus regeneration mediated by microbial decomposition and possible different mechanisms driven by prevailing oligo- or eu-trophic conditions. Leucine aminopeptidase-LAP, beta-glucosidase-GLU and alkaline phosphatase-AP, algal and bacterial biomass were related to trophic and environmental variables. In the eutrophic lakes, high algal and particulate organic carbon concentrations stimulated bacterial respiration (>20 ?g C L-1h-1) and could favor the release of inorganic phosphorus. High extracellular enzyme activities and phosphorus solubilizing bacteria abundance in sediments accelerated nutrient regeneration. In these conditions, the positive GLU-AP relationship suggested the coupling of carbon and phosphorus regeneration; an efficient phosphorus regeneration and high nitrogen levels (up to 0.067 and 0.059 mg L-1 NH4 and NO3 in Italy; 0.631 and 1.496 mg L-1 NH4 and NO3 in China) led to chlorophyll a peaks of 14.9 and 258.4 µg L-1 in Italy and China, respectively, and a typical algal composition. Conversely, in the oligo-mesotrophic lakes, very low nitrogen levels (in Italy, 0.001 and 0.005 mg L-1 NH4, and NO3, respectively, versus 0.053 and 0.371 mg L-1 in China) induced high LAP, while low phosphorus (33.6 and 46.3 µg L-1 total P in Italy and China, respectively) led to high AP. In these lakes nitrogen and phosphorus regeneration were coupled, as shown by positive LAP-AP relationship; however the nutrient demand could not be completely met without the supply from sediments, due to low enzymatic activity and phosphorus solubilizing bacteria found in this compartment.

Different pathways of nitrogen and phosphorus regeneration mediated by extracellular enzymes in temperate lakes under various trophic state

Azzaro M;Monticelli LS;Leonardi M;La Ferla R;Caruso G
2018

Abstract

Several Italian and Chinese temperate lakes with soluble reactive phosphorus concentrations <0.015 mg L-1 were studied to estimate nitrogen and phosphorus regeneration mediated by microbial decomposition and possible different mechanisms driven by prevailing oligo- or eu-trophic conditions. Leucine aminopeptidase-LAP, beta-glucosidase-GLU and alkaline phosphatase-AP, algal and bacterial biomass were related to trophic and environmental variables. In the eutrophic lakes, high algal and particulate organic carbon concentrations stimulated bacterial respiration (>20 ?g C L-1h-1) and could favor the release of inorganic phosphorus. High extracellular enzyme activities and phosphorus solubilizing bacteria abundance in sediments accelerated nutrient regeneration. In these conditions, the positive GLU-AP relationship suggested the coupling of carbon and phosphorus regeneration; an efficient phosphorus regeneration and high nitrogen levels (up to 0.067 and 0.059 mg L-1 NH4 and NO3 in Italy; 0.631 and 1.496 mg L-1 NH4 and NO3 in China) led to chlorophyll a peaks of 14.9 and 258.4 µg L-1 in Italy and China, respectively, and a typical algal composition. Conversely, in the oligo-mesotrophic lakes, very low nitrogen levels (in Italy, 0.001 and 0.005 mg L-1 NH4, and NO3, respectively, versus 0.053 and 0.371 mg L-1 in China) induced high LAP, while low phosphorus (33.6 and 46.3 µg L-1 total P in Italy and China, respectively) led to high AP. In these lakes nitrogen and phosphorus regeneration were coupled, as shown by positive LAP-AP relationship; however the nutrient demand could not be completely met without the supply from sediments, due to low enzymatic activity and phosphorus solubilizing bacteria found in this compartment.
2018
Istituto per l'Ambiente Marino Costiero - IAMC - Sede Napoli
Inglese
25
31
31603
31615
13
Sì, ma tipo non specificato
Nutrient regeneration
extracellular enzyme activity
phosphorus solubilizing bacteria
bacterial respiration
phytoplankton
lakes
trophic status
This work was supported by the National Natural Science Foundation of China (41230748; 41573110; 41263006), and State Key Laboratory of Freshwater Ecology and Biotechnology (2016FBZ07) as well as the CNR-CAS 2008-2010 Joint Project "Understanding expression and regulation of microbial enzymes involved in organic matter decomposition (Carbon and Phosphorus cycles) and the interrelationship between alkaline phosphatase and eutrophication in Italian and Chinese water bodies at different trophic levels" under grant number 0038575 (May 19, 2008) CNR Direzione Generale Ufficio Paesi Emergenti ed. in Transizione.
5
info:eu-repo/semantics/article
262
Song C.; Cao X.; Zhou Y.; Azzaro M.; Monticelli L.S.; Leonardi M.; La Ferla R.; Caruso G.
01 Contributo su Rivista::01.01 Articolo in rivista
none
File in questo prodotto:
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/370151
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 20
  • ???jsp.display-item.citation.isi??? ND
social impact