625098a5754b78180705fda2f68626e2 kaiser_et_al_2015_social_dynamics_in_microbes.pdf e644440d64da3fb0aaab83848690e7309824304f kaiser_et_al_2015_social_dynamics_in_microbes.pdf 2d9fa05242ef86b728a23e9792ee978b3ba0a26b243f8f15d1fc3dc33aeb6986 kaiser_et_al_2015_social_dynamics_in_microbes.pdf Title: Social dynamics within decomposer communities lead to nitrogen retention and organic matter build-up in soils Subject: Nature Communications 6, (2015). doi:10.1038/ncomms9960 Author: Oskar Franklin Creator: Arbortext Advanced Print Publisher 9.0.226/W Producer: Acrobat Distiller 8.1.0 (Windows) CreationDate: Mon Nov 23 07:08:08 2015 ModDate: Tue Nov 24 23:40:51 2015 Tagged: no Pages: 10 Encrypted: no Page size: 595.276 x 782.362 pts File size: 1423412 bytes Optimized: yes PDF version: 1.6 name type emb sub uni object ID ------------------------------------ ----------------- --- --- --- --------- AAPFOH+AdvOTea1a7398 Type 1C yes yes yes 367 0 AAPFPH+AdvOTcb88df00 Type 1C yes yes yes 375 0 AAPGDH+Arial-BoldMT Type 1C yes yes no 376 0 AAPGGH+AdvOTf23bb480 Type 1C yes yes yes 377 0 AAPGNF+AdvTTda6f6cb8.B Type 1C yes yes yes 387 0 AAPHBF+AdvOT125c650c Type 1C yes yes yes 184 0 AAPHBG+AdvOT1ef757c0 Type 1C yes yes yes 185 0 AAPHCG+AdvPi1 Type 1C yes yes no 186 0 AAPNKP+Helvetica Type 1C yes yes no 188 0 AAPOMJ+AdvOTb65e897d.B Type 1C yes yes yes 196 0 ABAJJI+AdvP4C4E74 Type 1C yes yes yes 197 0 ABALGO+AdvOT7d6df7ab.I Type 1C yes yes yes 201 0 ABBPDF+Helvetica-Oblique Type 1C yes yes no 206 0 ABCNJO+AdvP4C4E51 Type 1C yes yes yes 209 0 ABCNKO+AdvOT9bd21c25.I Type 1C yes yes yes 214 0 ABCNKP+AdvEls-ent2 Type 1C yes yes no 215 0 Jhove (Rel. 1.6, 2011-01-04) Date: 2016-02-05 01:02:18 GMT+01:00 RepresentationInformation: kaiser_et_al_2015_social_dynamics_in_microbes.pdf ReportingModule: PDF-hul, Rel. 1.8 (2009-05-22) LastModified: 2016-01-25 12:03:52 GMT+01:00 Size: 1423412 Format: PDF Version: 1.6 Status: Well-Formed and valid SignatureMatches: PDF-hul MIMEtype: application/pdf Profile: Linearized PDF PDFMetadata: Objects: 410 FreeObjects: 1 IncrementalUpdates: 1 DocumentCatalog: PageLayout: SinglePage PageMode: UseNone Outlines: Item: Title: title_link Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@77827284 Children: Item: Title: Figure™1Social dynamics among microbial decomposers affect C and N turnover rates.Effect of microbial cheaters on (a) decay rates, (b) community carbon use efficiency (both time-averaged over model runs until 60percnt C loss), (c) C in microbial products Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@152c7568 Item: Title: Results Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@19d009b4 Children: Item: Title: Social interactions slow down decay rates Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@292d15a9 Item: Title: Cheaters alter spatial dynamics Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@4ee91f5d Item: Title: Social interactions increase N and C accumulation Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@2b0a3b24 Item: Title: Figure™2Spatial distributions of microbes and substrate in litter decomposition.Distributions with and without microbial cheaters. ’Community distributionCloseCurlyQuote: each blue or green pixel depicts a model microsite occupied by microbes of a certain Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@2cb0ce8f Children: Item: Title: Underlying mechanism Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@bc92535 Item: Title: Social dynamics buffer extracellular enzyme reaction rates Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@42a9c09e Item: Title: Figure™3Nitrogen dynamics in model communities with and without microbial cheaters.(a,c) Temporal dynamics of N pools during litter decomposition. The two dashed lines indicate the times when 60percnt of C is decomposed. (b) Distributions of N in the rema Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@16a4e743 Item: Title: Discussion Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@244aeb52 Item: Title: Figure™4Effects of social regulation on microbial organic matter decomposition.(a) Without social regulation (all microbes produce enzymes), turnover rates are high due to a direct positive feedback of enzyme production on microbial growth. The accumulati Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@329f671b Item: Title: Figure™5Microbial social dynamics buffer decay rates at varying levels of extracellular enzyme efficiency.(a,c) Decay rates derived from model scenarios with varying mean lifetimes of extracellular enzymes or varying levels of catalytic efficiency (100per Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@7f2a3793 Item: Title: Methods Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@2ca6d51e Children: Item: Title: Individual-based and spatially explicit model Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@7cf1bb78 Item: Title: Complex compounds Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@624b035d Item: Title: Extracellular enzyme activity Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@2aca0115 Item: Title: C and N uptake and processing by microbes Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@340d1fa5 Item: Title: Waste metabolism Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@4998a455 Item: Title: Diffusion Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@444cee32 Item: Title: Microbial dispersal and turnover Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@16aa37a6 Item: Title: Initial values and model inputs Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@12b7eea Item: Title: Table 1 Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@4e99353f Children: Item: Title: Community carbon use efficiency Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@2c76e369 Item: Title: Model scenarios Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@314c194d Item: Title: SchimelJ. P.SchaefferS. M.Microbial control over carbon cycling in soilFront. Microbiol.33482012SchmidtM. W. I.Persistence of soil organic matter as an ecosystem propertyNature47849562011DavidsonE. A.JanssensI. A.Temperature sensitivity of soil carbon dec Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@7b112783 Item: Title: We thank Sarah E. Evans for thoughtful comments on an earlier version of this manuscript. Two anonymous reviewers provided valuable comments that helped to improve the manuscript. C.K. was funded by a Postdoctoral Research Fellowship of the International Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@23394894 Item: Title: ACKNOWLEDGEMENTS Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@54bb7759 Item: Title: Author contributions Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@5f989f84 Item: Title: Additional information Destination: edu.harvard.hul.ois.jhove.module.pdf.PdfSimpleObject@1d10c424 Info: Title: Social dynamics within decomposer communities lead to nitrogen retention and organic matter build-up in soils Author: Oskar Franklin Subject: Nature Communications 6, (2015). doi:10.1038/ncomms9960 Creator: Arbortext Advanced Print Publisher 9.0.226/W Producer: Acrobat Distiller 8.1.0 (Windows) CreationDate: Mon Nov 23 08:08:08 GMT+01:00 2015 ModDate: Tue Nov 24 19:40:51 GMT+01:00 2015 ID: 0x1389199382065b40bff7d4d45dff96c7, 0xec9db8f9a20f7b4a9ad8990b408e3446 Filters: FilterPipeline: FlateDecode 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FontBBox: -135, -250, 1010, 854 FontFile3: true EncodingDictionary: Differences: true ToUnicode: true XMP: application/pdf doi:10.1038/ncomms9960 Oskar Franklin Andreas Richter Ulf Dieckmann Christina Kaiser Nature Communications 6, (2015). doi:10.1038/ncomms9960 Nature Publishing Group © 2015 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. Social dynamics within decomposer communities lead to nitrogen retention and organic matter build-up in soils Acrobat Distiller 8.1.0 (Windows) © 2015 Nature Publishing Group, a division of Macmillan Publishers Limited. 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