Light Pollution Changes the Toxicological Effects of Cadmium on Microbial Community Structure and Function Associated with Leaf Litter Decomposition
Artificial light at night (ALAN/A) can not only alter the behavior and communication of biological organisms, it can also interact with other stressors. Despite its widespread use and the numerous potential ecological effects, little is known about the impact of ALAN on plant litter decomposition un...
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Published in | International journal of molecular sciences Vol. 21; no. 2; p. 422 |
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Abstract | Artificial light at night (ALAN/A) can not only alter the behavior and communication of biological organisms, it can also interact with other stressors. Despite its widespread use and the numerous potential ecological effects, little is known about the impact of ALAN on plant litter decomposition under cadmium (Cd) pollution in aquatic ecosystems. In an indoor microcosm experiment, we tested single and combined effects of ALAN and Cd on the activities and community structure of fungi associated with plant litter. The results showed that ALAN and/or Cd can change both water and leaf litter characteristics. ALAN exposure not only altered fungal community structure and their correlations, but also increased the activities of alkaline phosphatase, β-glucosidase, and cellobiohydrolase. The leaf litter decomposition rate was 71% higher in the A-Cd treatment than that in the N-Cd treatment, indicating that the presence of ALAN weakened the negative impact of Cd on leaf litter decomposition. These results suggested that ALAN exposure mitigated the negative effect of Cd on leaf litter decomposition, contributing to the duel effect of ALAN on leaf litter decomposition. Overall, the results expand our understanding of ALAN on the environment and highlight the contribution of ALAN to Cd toxicity in aquatic ecosystems. |
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AbstractList | Artificial light at night (ALAN/A) can not only alter the behavior and communication of biological organisms, it can also interact with other stressors. Despite its widespread use and the numerous potential ecological effects, little is known about the impact of ALAN on plant litter decomposition under cadmium (Cd) pollution in aquatic ecosystems. In an indoor microcosm experiment, we tested single and combined effects of ALAN and Cd on the activities and community structure of fungi associated with plant litter. The results showed that ALAN and/or Cd can change both water and leaf litter characteristics. ALAN exposure not only altered fungal community structure and their correlations, but also increased the activities of alkaline phosphatase, β-glucosidase, and cellobiohydrolase. The leaf litter decomposition rate was 71% higher in the A-Cd treatment than that in the N-Cd treatment, indicating that the presence of ALAN weakened the negative impact of Cd on leaf litter decomposition. These results suggested that ALAN exposure mitigated the negative effect of Cd on leaf litter decomposition, contributing to the duel effect of ALAN on leaf litter decomposition. Overall, the results expand our understanding of ALAN on the environment and highlight the contribution of ALAN to Cd toxicity in aquatic ecosystems. Artificial light at night (ALAN/A) can not only alter the behavior and communication of biological organisms, it can also interact with other stressors. Despite its widespread use and the numerous potential ecological effects, little is known about the impact of ALAN on plant litter decomposition under cadmium (Cd) pollution in aquatic ecosystems. In an indoor microcosm experiment, we tested single and combined effects of ALAN and Cd on the activities and community structure of fungi associated with plant litter. The results showed that ALAN and/or Cd can change both water and leaf litter characteristics. ALAN exposure not only altered fungal community structure and their correlations, but also increased the activities of alkaline phosphatase, β-glucosidase, and cellobiohydrolase. The leaf litter decomposition rate was 71% higher in the A-Cd treatment than that in the N-Cd treatment, indicating that the presence of ALAN weakened the negative impact of Cd on leaf litter decomposition. These results suggested that ALAN exposure mitigated the negative effect of Cd on leaf litter decomposition, contributing to the duel effect of ALAN on leaf litter decomposition. Overall, the results expand our understanding of ALAN on the environment and highlight the contribution of ALAN to Cd toxicity in aquatic ecosystems.Artificial light at night (ALAN/A) can not only alter the behavior and communication of biological organisms, it can also interact with other stressors. Despite its widespread use and the numerous potential ecological effects, little is known about the impact of ALAN on plant litter decomposition under cadmium (Cd) pollution in aquatic ecosystems. In an indoor microcosm experiment, we tested single and combined effects of ALAN and Cd on the activities and community structure of fungi associated with plant litter. The results showed that ALAN and/or Cd can change both water and leaf litter characteristics. ALAN exposure not only altered fungal community structure and their correlations, but also increased the activities of alkaline phosphatase, β-glucosidase, and cellobiohydrolase. The leaf litter decomposition rate was 71% higher in the A-Cd treatment than that in the N-Cd treatment, indicating that the presence of ALAN weakened the negative impact of Cd on leaf litter decomposition. These results suggested that ALAN exposure mitigated the negative effect of Cd on leaf litter decomposition, contributing to the duel effect of ALAN on leaf litter decomposition. Overall, the results expand our understanding of ALAN on the environment and highlight the contribution of ALAN to Cd toxicity in aquatic ecosystems. |
Author | Ding, Rongcai Chen, Xiaxia Liu, Zhuangzhuang Pu, Gaozhong Lv, Yanna |
AuthorAffiliation | 2 Guangxi Key Laboratory of Plant Conservation and Restoration Ecology in Karst Terrain, Guangxi Institute of Botany, Guangxi Zhuang Autonomous Region and Chinese Academy of Sciences, Guilin 541006, China; chenxx7276@163.com 1 School of Pharmacy and Biological Sciences, Weifang Medical University, Weifang 261053, China; huanzjiep52@163.com (Z.L.); dingrc111@163.com (R.D.) |
AuthorAffiliation_xml | – name: 2 Guangxi Key Laboratory of Plant Conservation and Restoration Ecology in Karst Terrain, Guangxi Institute of Botany, Guangxi Zhuang Autonomous Region and Chinese Academy of Sciences, Guilin 541006, China; chenxx7276@163.com – name: 1 School of Pharmacy and Biological Sciences, Weifang Medical University, Weifang 261053, China; huanzjiep52@163.com (Z.L.); dingrc111@163.com (R.D.) |
Author_xml | – sequence: 1 givenname: Zhuangzhuang surname: Liu fullname: Liu, Zhuangzhuang – sequence: 2 givenname: Yanna surname: Lv fullname: Lv, Yanna – sequence: 3 givenname: Rongcai surname: Ding fullname: Ding, Rongcai – sequence: 4 givenname: Xiaxia surname: Chen fullname: Chen, Xiaxia – sequence: 5 givenname: Gaozhong surname: Pu fullname: Pu, Gaozhong |
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CitedBy_id | crossref_primary_10_1093_biosci_biad017 crossref_primary_10_3389_fnins_2020_602796 crossref_primary_10_3390_w12071917 crossref_primary_10_1002_wat2_1641 crossref_primary_10_3390_su14031107 crossref_primary_10_1016_j_scitotenv_2023_168836 crossref_primary_10_1098_rstb_2022_0366 crossref_primary_10_3390_metabo13020279 |
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Keywords | cadmium pollution litter decomposition Illumina Sequencing artificial light at night extracellular enzyme activities microbial biodiversity |
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StartPage | 422 |
SubjectTerms | Aquatic ecosystems Biomass Cadmium Decomposition Discriminant analysis Enzymes Fungi Light Metabolism Metals Pollutants Principal components analysis Stream water |
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Title | Light Pollution Changes the Toxicological Effects of Cadmium on Microbial Community Structure and Function Associated with Leaf Litter Decomposition |
URI | https://www.ncbi.nlm.nih.gov/pubmed/31936535 https://www.proquest.com/docview/2548681989 https://www.proquest.com/docview/2338988564 https://pubmed.ncbi.nlm.nih.gov/PMC7014219 |
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