Ecological interactions among microbial functional guilds in the plant-soil system and implications for ecosystem function
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Soil Science
Link
https://link.springer.com/content/pdf/10.1007/s11104-022-05479-1.pdf
Reference104 articles.
1. Abdullah AS, Moffat CS, Lopez-Ruiz FJ et al (2017) Host–multi-pathogen warfare: pathogen interactions in co-infected plants. Front Plant Sci 8:1–12
2. Aguilar-Trigueros CA, Powell JR, Anderson IC, Antonovics J, Rillig MC (2014) Ecological understanding of root-infecting fungi using trait-based approaches. Trends Plant Sci 19:432–438
3. Albornoz FE, Lambers H, Turner BL et al (2016) Shifts in symbiotic associations in plants capable of forming multiple root symbioses across a long-term soil chronosequence. Ecol Evol 6:2368–2377
4. Albornoz FE, Burgess TI, Lambers H et al (2017) Native soilborne pathogens equalize differences in competitive ability between plants of contrasting nutrient-acquisition strategies. J Ecol 105:549–557
5. Albornoz FE, Ryan MH, Bending GD, Hilton S, Dickie IA, Gleeson DB, Standish RJ (2022) Agricultural land-use favours Mucoromycotinian, but not Glomeromycotinian, arbuscular mycorrhizal fungi across ten biomes. New Phytol 233:1369–1382
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