Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Smits, Mark M.
Herrmann, Anke M.
Duane, Michael
Duckworth, Owen W.
Bonneville, Steeve
Benning, Liane G.
and
Lundström, Ulla
2009.
The fungal–mineral interface: challenges and considerations of micro-analytical developments.
Fungal Biology Reviews,
Vol. 23,
Issue. 4,
p.
122.
TAYLOR, L. L.
LEAKE, J. R.
QUIRK, J.
HARDY, K.
BANWART, S. A.
and
BEERLING, D. J.
2009.
Biological weathering and the long‐term carbon cycle: integrating mycorrhizal evolution and function into the current paradigm.
Geobiology,
Vol. 7,
Issue. 2,
p.
171.
Smits, Mark M.
2009.
Scale matters? Exploring the effect of scale on fungal–mineral interactions.
Fungal Biology Reviews,
Vol. 23,
Issue. 4,
p.
132.
Finlay, Roger
Wallander, Hakan
Smits, Mark
Holmstrom, Sara
van Hees, Patrick
Lian, Bin
and
Rosling, Anna
2009.
The role of fungi in biogenic weathering in boreal forest soils.
Fungal Biology Reviews,
Vol. 23,
Issue. 4,
p.
101.
PLASSARD, C.
and
DELL, B.
2010.
Phosphorus nutrition of mycorrhizal trees.
Tree Physiology,
Vol. 30,
Issue. 9,
p.
1129.
Martino, Elena
and
Perotto, Silvia
2010.
Mineral Transformations by Mycorrhizal Fungi.
Geomicrobiology Journal,
Vol. 27,
Issue. 6-7,
p.
609.
Bonneville, Steeve
Morgan, Daniel J.
Schmalenberger, Achim
Bray, Andrew
Brown, Andrew
Banwart, Steven A.
and
Benning, Liane G.
2011.
Tree-mycorrhiza symbiosis accelerate mineral weathering: Evidences from nanometer-scale elemental fluxes at the hypha–mineral interface.
Geochimica et Cosmochimica Acta,
Vol. 75,
Issue. 22,
p.
6988.
Jansa, Jan
Finlay, Roger
Wallander, Håkan
Smith, F. Andrew
and
Smith, Sally E.
2011.
Phosphorus in Action.
Vol. 26,
Issue. ,
p.
137.
Beerling, David J.
Taylor, Lyla L.
Bradshaw, Catherine D. C.
Lunt, Daniel J.
Valdes, Paul J.
Banwart, Steven A.
Pagani, Mark
and
Leake, Jonathan R.
2012.
Ecosystem CO2 starvation and terrestrial silicate weathering: mechanisms and global‐scale quantification during the late Miocene.
Journal of Ecology,
Vol. 100,
Issue. 1,
p.
31.
Rennert, Thilo
Totsche, Kai U.
Heister, Katja
Kersten, Michael
and
Thieme, Jürgen
2012.
Advanced spectroscopic, microscopic, and tomographic characterization techniques to study biogeochemical interfaces in soil.
Journal of Soils and Sediments,
Vol. 12,
Issue. 1,
p.
3.
Reverchon, Frédérique
Ortega-Larrocea, María del Pilar
and
Pérez-Moreno, Jesús
2012.
Soil factors influencing ectomycorrhizal sporome distribution in neotropical forests dominated by Pinus montezumae, Mexico.
Mycoscience,
Vol. 53,
Issue. 3,
p.
203.
Smits, M. M.
Bonneville, S.
Benning, L. G.
Banwart, S. A.
and
Leake, J. R.
2012.
Plant‐driven weathering of apatite – the role of an ectomycorrhizal fungus.
Geobiology,
Vol. 10,
Issue. 5,
p.
445.
Agerer, R.
Hartmann, A.
Pritsch, K.
Raidl, S.
Schloter, M.
Verma, R.
and
Weigt, R.
2012.
Growth and Defence in Plants.
Vol. 220,
Issue. ,
p.
213.
Smits, Mark M.
Johansson, Leif
and
Wallander, Håkan
2014.
Soil fungi appear to have a retarding rather than a stimulating role on soil apatite weathering.
Plant and Soil,
Vol. 385,
Issue. 1-2,
p.
217.
2015.
Fossil Fungi.
p.
297.
Bonneville, Steeve
Bray, Andrew W.
and
Benning, Liane G.
2016.
Structural Fe(II) Oxidation in Biotite by an Ectomycorrhizal Fungi Drives Mechanical Forcing.
Environmental Science & Technology,
Vol. 50,
Issue. 11,
p.
5589.
Finlay, R.D.
and
Clemmensen, K.E.
2017.
Mycorrhizal Mediation of Soil.
p.
413.
Tripathi, Swati
Mishra, Siddhartha Kumar
and
Varma, Ajit
2017.
Mycorrhiza - Nutrient Uptake, Biocontrol, Ecorestoration.
p.
161.
Balogh-Brunstad, Zsuzsanna
Keller, C.
Shi, Zhenqing
Wallander, Håkan
and
Stipp, Susan
2017.
Ectomycorrhizal Fungi and Mineral Interactions in the Rhizosphere of Scots and Red Pine Seedlings.
Soils,
Vol. 1,
Issue. 1,
p.
5.
Cecchi, Grazia
Di Piazza, Simone
Marescotti, Pietro
and
Zotti, Mirca
2019.
Evidence of pyrite dissolution by Telephora terrestris Ehrh in the Libiola mine (Sestri Levante, Liguria, Italy).
Heliyon,
Vol. 5,
Issue. 8,
p.
e02210.