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Mycorrhizae and sustainable soil solutions.
Pedosphere, 34, (2), 2024, 267-268.
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Mykorrhiza: Lohnt sich eine Impfung?
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Biotic homogenization, lower soil fungal diversity and fewer rare taxa in arable soils across Europe.
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Interaction effects of pH and land cover on soil microbial diversity are climate‐dependent.
Environmental Microbiology, 26, (2), 2024, Artikel e16572.
Peng Z., Qian X., Liu Y., Li X., Gao H., An Y., Qi J., Jiang L., Zhang Y., Chen S., Pan H., Chen B., Liang C., van der Heijden M., Wei G. und weitere
Land conversion to agriculture induces taxonomic homogenization of soil microbial communities globally.
Nature Communications, 15, 2024, Artikel 3624.
Martin F.M., van der Heijden M.
The mycorrhizal symbiosis: Research frontiers in genomics, ecology, and agricultural application.
New Phytologist, 242, (4), 2024, 1486-1506.
Lutz S., Bender S. F., Bodenhausen N., Schlaeppi K., van der Heijden M.
Mykorrhizapilze für einen gesunden Boden: Nützlinge nutzbar machen.
Der Pflanzenarzt, 1-2, 2024, 6-9.
Rog I., Hilman B., Fox H., Yalin D., Qubaja R., Klein T.
Increased belowground tree carbon allocation in a mature mixed forest in a dry versus a wet year.
Global Change Biology, 30, (2), 2024, Artikel e17172.
Wittwer R., Klaus V., Richter F., van der Heijden M.
Ökosystemleistungen und Multifunktionalität in der Landwirtschaft messen und bewerten.
Agroscope Science, 182, 2024.
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Oliveira E. M., Wittwer R., Hartmann M., Keller T., Buchmann N., van der Heijden M.
Effects of conventional, organic and conservation agriculture on soil physical properties, root growth and microbial habitats in a long-term field experiment.
Geoderma, 447, 2024, Artikel 116927.
Sun Q., Gilgen A.K., Wittwer R., von Arx G., van der Heijden M., Klaus V., Buchmann N.
Drought effects on trait space of winter wheat are independent of land management.
New Phytologist, 243, (2), 2024, 591-606.
Wittwer R., van der Heijden M.
Die Multifunktionalität von Ackerbausystemen bewerten.
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Mycorrhizas: Ondergrondse Schimmelnetwerken.
In: Gezond met microben. Hrsg. Ben Lugtenberg. 2024, 134-138.
Zhang C., de Pasquale S., Hartman K., Stanley C. E., Berendsen R. L., van der Heijden M.
The microbial contribution to litter decomposition and plant growth.
Environmental Microbiology Reports, 16, (1), 2024, 1-15.
Jia Y., van der Heijden M., Valzano A., Jocher M., Walder F.
Mycorrhizal fungi mitigate nitrogen losses of an experimental grassland by facilitating plant uptake and soil microbial immobilization.
Pedosphere, 34, (2), 2024, 399-410.
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Unsichtbare Netzwerke – Ein Blick in die komplexe Welt der Bodenorganismen.
ANG Fokus, 2023, 52-57.
Boussageon R., Serrano M., Formey D., Tromas A., Wipf D., Courty P.-E.
Knockdown of Lotus japonicus ROP3 alters the root symbiotic phenotype and alters the expression of genes involved in nutrient acquisition during both rhizobial and mycorrhizal symbioses.
Symbiosis, 91, 2023, 167-178.
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Het One Health Concept en Bodem-Microbiomen.
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Mit vergrabenen Unterhosen die Bodenfruchtbarkeit beurteilen.
Kartoffelbau, 74, (3), 2023, 1-4.
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The plant–mycorrhizal fungi collaboration gradient depends on plant functional group.
Functional Ecology, 37, (9), 2023, 2386-2398.
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Organic management and soil health promote nutrient use efficiency.
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Feng M., Varliero G., Qi W., Stierli B., Edwards A., Robinson S., van der Heijden M., Frey B.
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Environmental Microbiology, 25, (12), 2023, 3116-3138.
Lutz S., Bodenhausen N., Hess J., Valzano A., Waelchli J., Deslandes-Hérold G., Schlaeppi K., van der Heijden M.
Soil microbiome indicators can predict crop growth response to large-scale inoculation with arbuscular mycorrhizal fungi.
Nature Microbiology, 8, 2023, 2277-2289.
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Simplification of soil biota communities impairs nutrient recycling and enhances above‐ and belowground nitrogen losses.
New Phytologist, 240, (5), 2023, 1-15.
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Agricultural Systems, 211, 2023, 1-11.
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Mycorrhiza-mediated recruitment of complete denitrifying Pseudomonas reduces N2O emissions from soil.
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Soil microbial biodiversity promotes crop productivity and agro-ecosystem functioning in experimental microcosms.
Science of the Total Environment, 885, 2023, 1-10.
Labouyrie M., Ballabio C., Romero Blanch F., Panagos P., Jones A., Schmid A., Mikryukov V., Dulya O., Tedersoo L., Bahram M., Lugato E., van der Heijden M., Orgiazzi A.
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Nature Communications, 14, (3311), 2023, 1-21.
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Increasing the number of stressors reduces soil ecosystem services worldwide.
Nature Climate Change, 13, 2023, 478-483.
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Bodenhausen N., Hess J., Valzano A., Deslandes‐Hérold G., Waelchli J., Furrer R., van der Heijden M., Schlaeppi K.
Predicting soil fungal communities from chemical and physical properties.
Journal of Sustainable Agriculture and Environment, 2, (3), 2023, 225-237.
Edlinger A., Garland G., Banerjee S., Degrune F., Garcia-Palacios P., Herzog C., Pescador D.S., Romdhane S., Ryo M., Saghaï A., Hallin S., Maestre F. T., Philippot L., Rillig M., van der Heijden M.
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Produkte aus Vergärung + Kompostierung: Qualitätsrichtlinie der Branche 2022.
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Frontiers in soil ecology: Insights from the World Biodiversity Forum 2022.
Journal of Sustainable Agriculture and Environment, 1, (4), 2022, 245-261.
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Establishing a quality management framework for commercial inoculants containing arbuscular mycorrhizal fungi.
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The effect of environmental parameters and fertilization practices on yield and soil microbial diversity in a Kenyan paddy rice field.
Applied Soil Ecology, 176, 2022, 1-12.
Romdhane S., Spor A., Breuil M. C., Bru D., Chabbi A., Hallin S., van der Heijden M., Saghai A., Philippot L.
Land-use intensification differentially affects bacterial, fungal and protist communities and decreases microbiome network complexity.
Environmental Microbiome, 17, (1), 2022, 1-15.
Sun Q., Klaus V., Wittwer R., Liu Y., van der Heijden M., Gilgen A., Buchmann N.
Water uptake patterns of pea and barley responded to drought but not to cropping systems.
Biogeosciences, 19, 2022, 1853-1869.
Liu S., Garcia-Palacios P., Tedersoo L., Guirado E., van der Heijden M., Wagg C., Chen D., Wang Q., Wang J., Singh B., Delgado-Baquerizo M.
Phylotype diversity within soil fungal functional groups drives ecosystem stability.
Nature Ecology & Evolution, 6, 2022, 900-909.
Gutiérrez-Cánovas C., Arias-Real R., Bruno D., Cabrerizo M. J., González-Olalla J. M., Picazo F., Romero Blanch F., Sánchez-Fernández D., Pallarés S.
Multiple-stressors effects on Iberian freshwaters: A review of current knowledge and future research priorities.
Limnetica, 41, (2), 2022, 245-268.
Sahu J., Vaishnav A., Singh H. B.
Plant-microbe interactions harnessing next-generation molecular technologies for sustainable agriculture.
CRC Press. 2022, 304 S.
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New and Future Developments in Microbial Biotechnology and Bioengineering Sustainable Agriculture: Revisiting Green Chemicals.
Elsevier. 2022, 564 S.
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Salt-tolerant PGPR strain Priestia endophytica SK1 promotes fenugreek growth under salt stress by inducing nitrogen assimilation and secondary metabolites.
Journal of Applied Microbiology, 133, (5), 2022, 2802-2813.
Anand U., Vaishnav A., Sharma S. K., Sahu J., Ahmad S., Sunita K., Suresh S., Dey A., Bontempi E., Singh A. K., Prockow J., Shukla A.K.
Current advances and research prospects for agricultural and industrial uses of microbial strains available in world collections.
Science of the Total Environment, 842, 2022, 1-22.
Bender S. F., van der Heijden M.
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RURAL 21, 56, (2), 2022, 10-12.
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Pulling the strings from underground? Soil biota and plant growth–defense tradeoffs.
New Phytologist, 233, (3), 2022, 1015-1017.
Edlinger A., Garland G., Hartman K., Banerjee S., Degrune F., Garcia-Palacios P., Hallin S., Valzano-Held A., Herzog C., Jansa J., Kost E., Maestre F. T., Pescador D. S., Philippot L., Rillig M. C. und weitere
Agricultural management and pesticide use reduce the functioning of beneficial plant symbionts.
Nature Ecology & Evolution, 6, 2022, 1145-1154.
Bender S. F., Peter N., van der Heijden M.
Gesunde Böden durch biologische Vielfalt: Böden schützen, Bodenlebewesen fördern und Vorteile für die Pflanzenproduktion nutzen.
Agroscope, Zürich-Reckenholz. Merkblatt Nr. 158, August, 2022, 4 S.
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Singh HB, Vaishnav A.
New and future developments in microbial biotechnology and bioengineering: Sustainable Agriculture: Advances in microbe based bisotimulants.
Harikesh Bahadur Singh, Anukool Vaishnav, Elsevier. February 3, 2022, 486 S.
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New and Future Developments in Microbial Biotechnology and Bioengineering: Sustainable Agriculture: Revitalization Through Organic Products.
Harikesh Bahadur Singh, Anukool Vaishnav, Elsevier. 11. Februar, 2022, 26 S.
De Gruyter J., Weedon J.T., Elst E.M., Geisen S., van der Heijden M., Verbruggen E.
Arbuscular mycorrhizal inoculation and plant response strongly shape bacterial and eukaryotic soil community trajectories.
Soil Biology and Biochemistry, (165), 2022, 1-12.
Vaishnav A., Kumar R., Singh H.B., Sarma B.K.
Extending the benefits of PGPR to bioremediation of nitrile pollution in crop lands for enhancing crop productivity.
Science of the Total Environment, (826), 2022, 1-11.
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Pfluglos primär für die Bodenqualität.
Landwirt bio, 1, 2022, 52-57.
Cadot S., Gfeller V., Hu L., Singh N., Sánchez-Vallet A., Glauser G., Croll D., Erb M., van der Heijden M., Schläppi K.
Soil composition and plant genotype determine benzoxazinoidmediated plant–soil feedbacks in cereals.
Plant, Cell & Environment, 44, (12), 2021, 1-13.