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MOESM2 of Soil domestication by rice cultivation results in plant-soil feedback through shifts in soil microbiota

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Figshare2019-10-24 更新2026-04-29 收录
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Additional file 2 : Table S1. Soil chemistry profiles from domesticated and uncultivated soils used in the domestication experiment. Table S2. Permanova statistics on Bray-Curtis dissimilarities of the soil domestication study. Table S3. Permanova statistics on weighted and unweighted unifrac dissimilarity metrics for soil domestication study. Table S4. Betadispersion estimates for the soil domestication study. Table S5. Results of testing for differential abundance in each compartment between domesticated and uncultivated soils. Table S6. Differentially abundant OTUs between Domesticated and Uncultivated soils. Table S7. Permanova statistics on Bray-Curtis dissimilarities for the native plants study. Table S8. Permanova on weighted and unweighted Unifrac dissimilarity metrics for the native plants study. Table S9. Tukey HSD results for testing dissimilarity metrics for the rhizosphere microbiome of each plant species to bulk soil. Rice show significantly less distance to bulk soil than other plant species. Table S10. Tests for differential abundance to rice microbiota for each compartment and each plant host species. Table S11. Taxa that belong to the rice core enriched and rice core depleted microbes. Table S12. Overlapping OTUs enriched in domesticated soil microbiota and rice core enriched microbiota. Table S13. Post hoc tests comparing seedling vigor traits between soil inoculum types. Table S14. Permanova statistics on Bray-Curtis dissimilarities from the seedling vigor experiments. Table S15. OTUs showing significant correlations with seedling height in Seedling Vigor Experiment 1.
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2019-10-24
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