The effect of phosphorus addition, soil moisture, and plant type on soil nematode abundance and community composition

Purpose Environmental variables such as soil moisture and phosphorus (P) might influence above- and below-ground biodiversity. In this study, we investigated the rarely reported individual and interactive multifactor effects of soil moisture and phosphorus addition with the type of above-ground tree...

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Veröffentlicht in:Journal of soils and sediments 2019-03, Vol.19 (3), p.1139-1150
Hauptverfasser: Olatunji, Olusanya Abiodun, Gong, Shanxing, Tariq, Akash, Pan, Kaiwen, Sun, Xiaoming, Chen, Wenkai, Zhang, Lin, Dakhil, Mohammed A., Huang, Dan, Tan, Xue
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Sprache:eng
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Zusammenfassung:Purpose Environmental variables such as soil moisture and phosphorus (P) might influence above- and below-ground biodiversity. In this study, we investigated the rarely reported individual and interactive multifactor effects of soil moisture and phosphorus addition with the type of above-ground tree species (biological interactions) on the soil nematode community structure. Materials and methods We established a completely randomized experimental design with two plant types (N 2 -fixer and non-nitrogen fixer) and different combinations of water treatments and P additions (i.e., water with P addition, water only, drought with P addition, and drought only) in a greenhouse and investigated their effects on the soil chemical properties and nematode community. Soil samples were collected at the end of the experiment and were analyzed for soil moisture content (SM), available phosphorus (aP), nitrate nitrogen (NO 3 − –N), ammonium nitrogen (NH 4 + –N), dissolved organic carbon (DOC), dissolved organic nitrogen (DON), and nematode community. The following trophic groups were assigned to the nematodes: bacterivores (Ba), fungivores (Fu), omnivores–predators (Op), and plant parasites (PP). The channel index (CI), enrichment index (EI), maturity index (MI), genus richness (GR), and Simpson dominance (Ig) were adopted to indicate the indices of the nematode food web. Results and discussion Phosphorus addition and its interaction with water treatments had no statistically significant effects on the soil nematode community, but there were significant decreasing ( p  
ISSN:1439-0108
1614-7480
DOI:10.1007/s11368-018-2146-5