Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.

Naphthalene has been widely used to test the functional roles of soil fauna, but its nontarget effects remain uncertain in various soils. To determine whether there is a potential nontarget effect on soil biochemical properties in subalpine forest soil, soils in a subalpine forest on the western Qin...

Full description

Bibliographic Details
Main Authors: Bo Tan, Fan Yang, Liying Lan, Chengming You, Jian Zhang, Zhenfeng Xu, Yang Liu, Li Zhang, Han Li
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0217178
id doaj-e9e5ca3c7f794c2897f8230820fcf824
record_format Article
spelling doaj-e9e5ca3c7f794c2897f8230820fcf8242021-03-03T20:40:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01145e021717810.1371/journal.pone.0217178Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.Bo TanFan YangLiying LanChengming YouJian ZhangZhenfeng XuYang LiuLi ZhangHan LiNaphthalene has been widely used to test the functional roles of soil fauna, but its nontarget effects remain uncertain in various soils. To determine whether there is a potential nontarget effect on soil biochemical properties in subalpine forest soil, soils in a subalpine forest on the western Qinghai-Tibet Plateau were treated by naphthalene in microcosms. The responses of soil microbial activity and nutrients to naphthalene were studied following 52 days of incubation. The results showed that the naphthalene application obviously decreased the microbial respiration rate in the first 10 days of the incubation and then increased the rate in the following days of the incubation. Moreover, the naphthalene application did not significantly affect the microbial activities overall, measured as soil microbial phospholipid fatty acid (PLFA) abundances and biomasses, or most enzyme activities (invertase, nitrate reductase and nitrite reductase) during the whole incubation period. However, naphthalene suppressed increases in the DON, NH4+-N and NO3--N contents and urease activity and led to the net mineralization of inorganic N (NH4+-N + NO3--N), in contrast to the net immobilization result in the controls. These results suggest that naphthalene can exert direct nontarget effects on soil microbial respiration and N mineralization processes in subalpine soils. Caution should be taken when using naphthalene to repel soil animals in field experiments.https://doi.org/10.1371/journal.pone.0217178
collection DOAJ
language English
format Article
sources DOAJ
author Bo Tan
Fan Yang
Liying Lan
Chengming You
Jian Zhang
Zhenfeng Xu
Yang Liu
Li Zhang
Han Li
spellingShingle Bo Tan
Fan Yang
Liying Lan
Chengming You
Jian Zhang
Zhenfeng Xu
Yang Liu
Li Zhang
Han Li
Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.
PLoS ONE
author_facet Bo Tan
Fan Yang
Liying Lan
Chengming You
Jian Zhang
Zhenfeng Xu
Yang Liu
Li Zhang
Han Li
author_sort Bo Tan
title Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.
title_short Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.
title_full Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.
title_fullStr Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.
title_full_unstemmed Naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: A microcosm study.
title_sort naphthalene exerts substantial nontarget effects on soil nitrogen mineralization processes in a subalpine forest soil: a microcosm study.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description Naphthalene has been widely used to test the functional roles of soil fauna, but its nontarget effects remain uncertain in various soils. To determine whether there is a potential nontarget effect on soil biochemical properties in subalpine forest soil, soils in a subalpine forest on the western Qinghai-Tibet Plateau were treated by naphthalene in microcosms. The responses of soil microbial activity and nutrients to naphthalene were studied following 52 days of incubation. The results showed that the naphthalene application obviously decreased the microbial respiration rate in the first 10 days of the incubation and then increased the rate in the following days of the incubation. Moreover, the naphthalene application did not significantly affect the microbial activities overall, measured as soil microbial phospholipid fatty acid (PLFA) abundances and biomasses, or most enzyme activities (invertase, nitrate reductase and nitrite reductase) during the whole incubation period. However, naphthalene suppressed increases in the DON, NH4+-N and NO3--N contents and urease activity and led to the net mineralization of inorganic N (NH4+-N + NO3--N), in contrast to the net immobilization result in the controls. These results suggest that naphthalene can exert direct nontarget effects on soil microbial respiration and N mineralization processes in subalpine soils. Caution should be taken when using naphthalene to repel soil animals in field experiments.
url https://doi.org/10.1371/journal.pone.0217178
work_keys_str_mv AT botan naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
AT fanyang naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
AT liyinglan naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
AT chengmingyou naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
AT jianzhang naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
AT zhenfengxu naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
AT yangliu naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
AT lizhang naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
AT hanli naphthaleneexertssubstantialnontargeteffectsonsoilnitrogenmineralizationprocessesinasubalpineforestsoilamicrocosmstudy
_version_ 1714821216165953536