24
Views
20
CrossRef citations to date
0
Altmetric
Original Articles

The use of soil microcosms in evaluating bacteriophagic nematode responses to other organisms and effects on nutrient cycling

, , , &
Pages 175-182 | Received 18 Feb 1978, Published online: 24 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

WalterG. Whitford & LawrenceW. Parker. (1989) Contributions of soil fauna to decomposition and mineralization processes in semiarid and arid ecosystems. Arid Soil Research and Rehabilitation 3:2, pages 199-215.
Read now

Articles from other publishers (19)

Luisa Albarano, Maria Costantini, Valerio Zupo, Giusy Lofrano, Marco Guida & Giovanni Libralato. (2020) Marine sediment toxicity: A focus on micro- and mesocosms towards remediation. Science of The Total Environment 708, pages 134837.
Crossref
Joey Genevieve Martinez, Mark Anthony Torres, Giovanni dos Santos & Tom Moens. (2018) Influence of heavy metals on nematode community structure in deteriorated soil by gold mining activities in Sibutad, southern Philippines. Ecological Indicators 91, pages 712-721.
Crossref
David Buchan, Mesfin Tsegaye Gebremikael, Nele Ameloot, Steven Sleutel & Stefaan De Neve. (2013) The effect of free-living nematodes on nitrogen mineralisation in undisturbed and disturbed soil cores. Soil Biology and Biochemistry 60, pages 142-155.
Crossref
Usman Irshad, Cécile Villenave, Alain Brauman & Claude Plassard. (2011) Grazing by nematodes on rhizosphere bacteria enhances nitrate and phosphorus availability to Pinus pinaster seedlings. Soil Biology and Biochemistry 43:10, pages 2121-2126.
Crossref
K.-H. Wang, R. McSorley, A. Marshall & R.N. Gallaher. (2006) Influence of organic Crotalaria juncea hay and ammonium nitrate fertilizers on soil nematode communities. Applied Soil Ecology 31:3, pages 186-198.
Crossref
Slavka Georgieva, Søren Christensen & Karen Stevnbak. (2005) Nematode succession and microfauna–microorganism interactions during root residue decomposition. Soil Biology and Biochemistry 37:10, pages 1763-1774.
Crossref
Slavka Georgieva, Søren Christensen, Henning Petersen, Peter Gjelstrup & Kristian Thorup-Kristensen. (2005) Early decomposer assemblages of soil organisms in litterbags with vetch and rye roots. Soil Biology and Biochemistry 37:6, pages 1145-1155.
Crossref
Tibor Kmeť. (1996) Material recycling in a closed aquatic ecosystem. II. Bifurcation analysis of a simple food-chain model. Bulletin of Mathematical Biology 58:5, pages 983-1000.
Crossref
Jörn Alphei & Stefan Scheu. (1993) Effects of biocidal treatments on biological and nutritional properties of a mull-structured woodland soil. Geoderma 56:1-4, pages 435-448.
Crossref
Jörn Alphei & Stefan Scheu. 1993. Soil Structure/Soil Biota Interrelationships. Soil Structure/Soil Biota Interrelationships 435 448 .
A. Teuben & H.A. Verhoef. (1992) Relevance of micro- and mesocosm experiments for studying soil ecosystem processes. Soil Biology and Biochemistry 24:11, pages 1179-1183.
Crossref
P. Liebhard. (2008) Einfluß eines steigenden N‐Angebotes auf die Knöllchenbildung bei Erbse ( Pisum sativum L. ssp. sativum ) in Nährlösungskultur . Journal of Agronomy and Crop Science 162:5, pages 289-299.
Crossref
James W. Gillett. 1989. Ecotoxicology: Problems and Approaches. Ecotoxicology: Problems and Approaches 367 410 .
D. C. Coleman. 1985. Microfloral and faunal interactions in natural and agro-ecosystems. Microfloral and faunal interactions in natural and agro-ecosystems 317 348 .
D. W. Freckman, K. CromackJr.Jr. & J. A. Wallwork. 1986. Microfloral and faunal interactions in natural and agro-ecosystems. Microfloral and faunal interactions in natural and agro-ecosystems 399 442 .
Wasilewska Lucyna & Bieńkowski Piotr. (1985) Experimental study on the occurrence and activity of soil nematodes in decomposition of plant material. Pedobiologia 28:1, pages 41-57.
Crossref
L.E. Woods, C.V. Cole, E.T. Elliott, R.V. Anderson & D.C. Coleman. (1982) Nitrogen transformations in soil as affected by bacterial-microfaunal interactions. Soil Biology and Biochemistry 14:2, pages 93-98.
Crossref
R.V. Anderson, J.A. Trofymow, D.C. Coleman & C.P.P. Reid. (1982) Phosphorus mineralization by a soil pseudomonad in spent oil shale as affected by a rhabditid nematode. Soil Biology and Biochemistry 14:4, pages 365-371.
Crossref
F. J. Hingston & R. J. Raison. 1982. Cycling of Carbon, Nitrogen, Sulfur and Phosphorus in Terrestrial and Aquatic Ecosystems. Cycling of Carbon, Nitrogen, Sulfur and Phosphorus in Terrestrial and Aquatic Ecosystems 11 24 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.