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Secondary compounds of Pinus massoniana alter decomposers' effects on Quercus variabilis litter decomposition.

Authors :
Lin, Hong
Zhao, Yunxia
Muyidong, Numaimaiti
Tian, Kai
He, Zaihua
Kong, Xiangshi
Sun, Shucun
Tian, Xingjun
Source :
Ecology & Evolution (20457758). Sep2018, Vol. 8 Issue 18, p9439-9450. 12p.
Publication Year :
2018

Abstract

A major gap to understand the effects of plant secondary compounds on litter decomposition in the brown food web is lack of information about how these secondary compounds modify the activities of soil decomposers. To address this question, we conducted an experiment where aqueous extracts and tannins prepared from Pinus massoniana needles were added to soils collected either from P. massoniana (pine soil) or Quercus variabilis (oak soil). Our objective was to investigate the cascading effects of the two compounds on isopod (Armadillidium vulgare) activity and subsequent change in Q. variabilis litter decomposition. We found that in pine soil, both aqueous extracts and tannins (especially at high concentrations) had positive effects on litter decomposition rates when isopods were present. While without isopods, litter decomposition was enhanced only by high concentrations of aqueous extracts, and tannins had no significant effect on decomposition. In oak soil, high concentrations of aqueous extracts and tannins inhibited litter decomposition and soil microbial biomass, regardless of whether isopods were present or not. Low concentrations of aqueous extracts increased litter decomposition rates and soil microbial biomass in oak soil in the absence of isopods. Based on our results, we suggest that the high concentration of secondary compounds in P. massoniana is a key factor influencing the effects of decomposers on litter decomposition rates, and tannins form a major part of secondary compounds. These funding particularly provide insight into formā€ and concentrationā€oriented effects of secondary compounds and promote our understanding of litter decomposition and soil nutrient cycling in forest ecosystem. Aqueous extracts of P. massoniana accelerate isopod effect on litter decomposition in soils beneath conifer. Tannins inhibit litter decomposition in soils beneath broadleaf but not conifer. Soil organisms in soils beneath conifer can well adapt to the adverse effect of tannins. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20457758
Volume :
8
Issue :
18
Database :
Academic Search Index
Journal :
Ecology & Evolution (20457758)
Publication Type :
Academic Journal
Accession number :
132482201
Full Text :
https://doi.org/10.1002/ece3.4433