Cover crop-driven shifts in soil microbial communities could modulate early tomato biomass via plant-soil feedbacks

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作者
Micaela Tosi
John Drummelsmith
Dasiel Obregón
Inderjot Chahal
Laura L. Van Eerd
Kari E. Dunfield
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[1] University of Guelph,School of Environmental Sciences
[2] University of Guelph,School of Environmental Sciences
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Sustainable agricultural practices such as cover crops (CCs) and residue retention are increasingly applied to counteract detrimental consequences on natural resources. Since agriculture affects soil properties partly via microbial communities, it is critical to understand how these respond to different management practices. Our study analyzed five CC treatments (oat, rye, radish, rye-radish mixture and no-CC) and two crop residue managements (retention/R+ or removal/R−) in an 8-year diverse horticultural crop rotation trial from ON, Canada. CC effects were small but stronger than those of residue management. Radish-based CCs tended to be the most beneficial for both microbial abundance and richness, yet detrimental for fungal evenness. CC species, in particular radish, also shaped fungal and, to a lesser extent, prokaryotic community composition. Crop residues modulated CC effects on bacterial abundance and fungal evenness (i.e., more sensitive in R− than R+), as well as microbial taxa. Several microbial structure features (e.g., composition, taxa within Actinobacteria, Firmicutes and Ascomycota), some affected by CCs, were correlated with early biomass production of the following tomato crop. Our study suggests that, whereas mid-term CC effects were small, they need to be better understood as they could be influencing cash crop productivity via plant-soil feedbacks.
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  • [1] Cover crop-driven shifts in soil microbial communities could modulate early tomato biomass via plant-soil feedbacks (vol 12, 9140, 2022)
    Tosi, Micaela
    Drummelsmith, John
    Obregon, Dasiel
    Chahal, Inderjot
    Van Eerd, Laura L.
    Dunfield, Kari E.
    [J]. SCIENTIFIC REPORTS, 2022, 12 (01)
  • [2] Using plant-soil feedbacks to predict plant biomass in diverse communities
    Kulmatiski, Andrew
    Beard, Karen H.
    Grenzer, Josephine
    Forero, Leslie
    Heavilin, Justin
    [J]. ECOLOGY, 2016, 97 (08) : 2064 - 2073
  • [3] Effects of between-site variation in soil microbial communities and plant-soil feedbacks on the productivity and composition of plant communities
    Bauer, Jonathan T.
    Blumenthal, Noah
    Miller, Anna J.
    Ferguson, Julia K.
    Reynolds, Heather L.
    [J]. JOURNAL OF APPLIED ECOLOGY, 2017, 54 (04) : 1028 - 1039
  • [4] Climate change-driven shifts in plant-soil feedbacks: a meta-analysis
    Hassan, Kamrul
    Dastogeer, K. M. Golam
    Carrillo, Yolima
    Nielsen, Uffe N.
    [J]. ECOLOGICAL PROCESSES, 2022, 11 (01)
  • [5] Number of global change factors alters plant-soil feedbacks via its effect on soil fungal communities
    Xue, Wei
    Huang, Lin
    Bever, James D.
    Du, Cheng
    Yuan, Hao-Ming
    He, Lin-Xuan
    Zhang, Xiao-Mei
    Yu, Fei-Hai
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2024, 194
  • [6] Positive plant-soil feedbacks of the invasive Impatiens glandulifera and their effects on above-ground microbial communities
    Pattison, Z.
    Rumble, H.
    Tanner, R. A.
    Jin, L.
    Gange, A. C.
    [J]. WEED RESEARCH, 2016, 56 (03) : 198 - 207
  • [7] Native and non-native grasses generate common types of plant-soil feedbacks by altering soil nutrients and microbial communities
    Perkins, Lora B.
    Nowak, Robert S.
    [J]. OIKOS, 2013, 122 (02) : 199 - 208
  • [8] Plant-driven changes in soil microbial communities influence seed germination through negative feedbacks
    Miller, Elizabeth C.
    Perron, Gabriel G.
    Collins, Cathy D.
    [J]. ECOLOGY AND EVOLUTION, 2019, 9 (16): : 9298 - 9311
  • [9] Crop resistance traits modify the effects of an aboveground herbivore, brown planthopper, on soil microbial biomass and nematode community via changes to plant performance
    Huang, Jinghua
    Liu, Manqiang
    Chen, Fajun
    Griffiths, Bryan S.
    Chen, Xiaoyun
    Johnson, Scott N.
    Hu, Feng
    [J]. SOIL BIOLOGY & BIOCHEMISTRY, 2012, 49 : 157 - 166